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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Nabil. K. Abd-Elrahman; Nuha Al-Harbi; Noor M. Basfer; Yas Al-Hadeethi; +2 Authors

    Microbial fuel cells (MFCs) are an environmentally friendly technology and a source of renewable energy. It is used to generate electrical energy from organic waste using bacteria, which is an effective technology in wastewater treatment. The anode and the cathode electrodes and proton exchange membranes (PEM) are important components affecting the performance and operation of MFC. Conventional materials used in the manufacture of electrodes and membranes are insufficient to improve the efficiency of MFC. The use of nanomaterials in the manufacture of the anode had a prominent effect in improving the performance in terms of increasing the surface area, increasing the transfer of electrons from the anode to the cathode, biocompatibility, and biofilm formation and improving the oxidation reactions of organic waste using bacteria. The use of nanomaterials in the manufacture of the cathode also showed the improvement of cathode reactions or oxygen reduction reactions (ORR). The PEM has a prominent role in separating the anode and the cathode in the MFC, transferring protons from the anode chamber to the cathode chamber while preventing the transfer of oxygen. Nanomaterials have been used in the manufacture of membrane components, which led to improving the chemical and physical properties of the membranes and increasing the transfer rates of protons, thus improving the performance and efficiency of MFC in generating electrical energy and improving wastewater treatment.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Moleculesarrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Molecules
    Article . 2022 . Peer-reviewed
    License: CC BY
    Data sources: Crossref
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Molecules
    Article . 2022
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    PubMed Central
    Other literature type . 2022
    License: CC BY
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    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Molecules
    Article . 2022
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Moleculesarrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      Molecules
      Article . 2022 . Peer-reviewed
      License: CC BY
      Data sources: Crossref
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      Molecules
      Article . 2022
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      PubMed Central
      Other literature type . 2022
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      Molecules
      Article . 2022
      Data sources: DOAJ
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Nabil. K. Abd-Elrahman; Nuha Al-Harbi; Noor M. Basfer; Yas Al-Hadeethi; +2 Authors

    Microbial fuel cells (MFCs) are an environmentally friendly technology and a source of renewable energy. It is used to generate electrical energy from organic waste using bacteria, which is an effective technology in wastewater treatment. The anode and the cathode electrodes and proton exchange membranes (PEM) are important components affecting the performance and operation of MFC. Conventional materials used in the manufacture of electrodes and membranes are insufficient to improve the efficiency of MFC. The use of nanomaterials in the manufacture of the anode had a prominent effect in improving the performance in terms of increasing the surface area, increasing the transfer of electrons from the anode to the cathode, biocompatibility, and biofilm formation and improving the oxidation reactions of organic waste using bacteria. The use of nanomaterials in the manufacture of the cathode also showed the improvement of cathode reactions or oxygen reduction reactions (ORR). The PEM has a prominent role in separating the anode and the cathode in the MFC, transferring protons from the anode chamber to the cathode chamber while preventing the transfer of oxygen. Nanomaterials have been used in the manufacture of membrane components, which led to improving the chemical and physical properties of the membranes and increasing the transfer rates of protons, thus improving the performance and efficiency of MFC in generating electrical energy and improving wastewater treatment.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Moleculesarrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Molecules
    Article . 2022 . Peer-reviewed
    License: CC BY
    Data sources: Crossref
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Molecules
    Article . 2022
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    PubMed Central
    Other literature type . 2022
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    Molecules
    Article . 2022
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Moleculesarrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      Molecules
      Article . 2022 . Peer-reviewed
      License: CC BY
      Data sources: Crossref
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      Molecules
      Article . 2022
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      PubMed Central
      Other literature type . 2022
      License: CC BY
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      Molecules
      Article . 2022
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Dena Z. Khater; R. S. Amin; Amani E. Fetohi; Mohamed Mahmoud; +1 Authors

    AbstractHexavalent chromium [Cr(VI)] is one of the most carcinogenic and mutagenic toxins, and is commonly released into the environemt from different industries, including leather tanning, pulp and paper manufacturing, and metal finishing. This study aimed to investigate the performance of dual chamber microbial fuel cells (DMFCs) equipped with a biocathode as alternative promising remediation approaches for the biological reduction of hexavalent chromium [Cr(VI)] with instantaneous power generation. A succession batch under preliminary diverse concentrations of Cr(VI) (from 5 to 60 mg L−1) was conducted to investigate the reduction mechanism of DMFCs. Compared to abiotic-cathode DMFC, biotic-cathode DMFC exhibited a much higher power density, Cr(VI) reduction, and coulombic efficiency over a wide range of Cr(VI) concentrations (i.e., 5–60 mg L−1). Furthermore, the X-ray photoelectron spectroscopy (XPS) revealed that the chemical functional groups on the surface of biotic cathode DMFC were mainly trivalent chromium (Cr(III)). Additionally, high throughput sequencing showed that the predominant anodic bacterial phyla were Firmicutes, Proteobacteria, and Deinococcota with the dominance of Clostridiumsensu strict 1, Enterobacter, Pseudomonas, Clostridiumsensu strict 11 and Lysinibacillus in the cathodic microbial community. Collectively, our results showed that the Cr(VI) removal occurred through two different mechanisms: biosorption and bioelectrochemical reduction. These findings confirmed that the DMFC could be used as a bioremediation approach for the removal of Cr(VI) commonly found in different industrial wastewater, such as tannery effluents. with simultaneous bioenergy production.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Scientific Reportsarrow_drop_down
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    Scientific Reports
    Article . 2023 . Peer-reviewed
    License: CC BY
    Data sources: Crossref
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    PubMed Central
    Other literature type . 2023
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    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Scientific Reports
    Article . 2023
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      Scientific Reports
      Article . 2023 . Peer-reviewed
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
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      Scientific Reports
      Article . 2023
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Dena Z. Khater; R. S. Amin; Amani E. Fetohi; Mohamed Mahmoud; +1 Authors

    AbstractHexavalent chromium [Cr(VI)] is one of the most carcinogenic and mutagenic toxins, and is commonly released into the environemt from different industries, including leather tanning, pulp and paper manufacturing, and metal finishing. This study aimed to investigate the performance of dual chamber microbial fuel cells (DMFCs) equipped with a biocathode as alternative promising remediation approaches for the biological reduction of hexavalent chromium [Cr(VI)] with instantaneous power generation. A succession batch under preliminary diverse concentrations of Cr(VI) (from 5 to 60 mg L−1) was conducted to investigate the reduction mechanism of DMFCs. Compared to abiotic-cathode DMFC, biotic-cathode DMFC exhibited a much higher power density, Cr(VI) reduction, and coulombic efficiency over a wide range of Cr(VI) concentrations (i.e., 5–60 mg L−1). Furthermore, the X-ray photoelectron spectroscopy (XPS) revealed that the chemical functional groups on the surface of biotic cathode DMFC were mainly trivalent chromium (Cr(III)). Additionally, high throughput sequencing showed that the predominant anodic bacterial phyla were Firmicutes, Proteobacteria, and Deinococcota with the dominance of Clostridiumsensu strict 1, Enterobacter, Pseudomonas, Clostridiumsensu strict 11 and Lysinibacillus in the cathodic microbial community. Collectively, our results showed that the Cr(VI) removal occurred through two different mechanisms: biosorption and bioelectrochemical reduction. These findings confirmed that the DMFC could be used as a bioremediation approach for the removal of Cr(VI) commonly found in different industrial wastewater, such as tannery effluents. with simultaneous bioenergy production.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Scientific Reportsarrow_drop_down
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    Scientific Reports
    Article . 2023 . Peer-reviewed
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      Scientific Reports
      Article . 2023 . Peer-reviewed
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      PubMed Central
      Other literature type . 2023
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      Scientific Reports
      Article . 2023
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    Authors: Naglaa Elshafey; Samy Selim; Asmaa H. Mohammed; Nashwa Hagagy; +10 Authors

    The haloarchaeal diversity of four hypersaline alkaline lakes from the Wadi El-Natrun depression (Northern Egypt) was investigated using culture-independent polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) of 16S rRNA gene phylotypes, which was combined with remote sensing and geographic information system (GIS) data to highlight the distribution pattern of the microbial diversity in water and sediment samples. The majority of archaeal sequences identified in all four lakes belonged to the phyla Euryarchaeota and Crenarchaeota. Sediment samples from Beida Lake and water samples from El-Hamra Lake showed the highest levels of archaeal diversity. Sequence similarities ≥ 95% were found between six of the acquired clones and uncultured Halorhabdus, Euryarchaeota, and archaeon clones. In addition, two clones shared a high level of sequence similarity (97%) with unclassified archaea, while other nine clones exhibited 96% to 99% sequence similarity with uncultured archaeon clones, and only one clone showed 97% identity with an uncultured Crenarchaeota. Likewise, 7 DGGE bands presented a sequence similarity of 90 to 98% to Halogranum sp., Halalkalicoccus tibetensis, Halalkalicoccus jeotgali, uncultured Halorubrum, Halobacteriaceae sp., or uncultured haloarchaeon. In conclusion, while the variety of alkaliphilic haloarchaea in the examined soda lakes was restricted, the possibility of uncovering novel species for biotechnological applications from these extreme habitats remains promising.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Fermentationarrow_drop_down
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    Fermentation
    Article . 2022 . Peer-reviewed
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    Recolector de Ciencia Abierta, RECOLECTA
    Article . 2022 . Peer-reviewed
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      Recolector de Ciencia Abierta, RECOLECTA
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    Authors: Naglaa Elshafey; Samy Selim; Asmaa H. Mohammed; Nashwa Hagagy; +10 Authors

    The haloarchaeal diversity of four hypersaline alkaline lakes from the Wadi El-Natrun depression (Northern Egypt) was investigated using culture-independent polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) of 16S rRNA gene phylotypes, which was combined with remote sensing and geographic information system (GIS) data to highlight the distribution pattern of the microbial diversity in water and sediment samples. The majority of archaeal sequences identified in all four lakes belonged to the phyla Euryarchaeota and Crenarchaeota. Sediment samples from Beida Lake and water samples from El-Hamra Lake showed the highest levels of archaeal diversity. Sequence similarities ≥ 95% were found between six of the acquired clones and uncultured Halorhabdus, Euryarchaeota, and archaeon clones. In addition, two clones shared a high level of sequence similarity (97%) with unclassified archaea, while other nine clones exhibited 96% to 99% sequence similarity with uncultured archaeon clones, and only one clone showed 97% identity with an uncultured Crenarchaeota. Likewise, 7 DGGE bands presented a sequence similarity of 90 to 98% to Halogranum sp., Halalkalicoccus tibetensis, Halalkalicoccus jeotgali, uncultured Halorubrum, Halobacteriaceae sp., or uncultured haloarchaeon. In conclusion, while the variety of alkaliphilic haloarchaea in the examined soda lakes was restricted, the possibility of uncovering novel species for biotechnological applications from these extreme habitats remains promising.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Fermentationarrow_drop_down
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    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Fermentation
    Article . 2022 . Peer-reviewed
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    Recolector de Ciencia Abierta, RECOLECTA
    Article . 2022 . Peer-reviewed
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    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
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      Fermentation
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      Recolector de Ciencia Abierta, RECOLECTA
      Article . 2022 . Peer-reviewed
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    Authors: Askalany A.; Olkis C.; Bramanti E.; Lapshin D.; +4 Authors

    This work investigates the application of novel sorption materials to heat-powered desalination systems. Two ionic liquids 1-ethyl-3-methylimidazolium acetate (Emim-Ac) and 1-ethyl-3-methylimidazolium methanesulfonate (Emim-Oms) were impregnated in two silica supports, namely, Syloid AL-1FP and Syloid 72FP. Emim-Ac and Emim-Oms composite sorbents have been compared on morphology, water vapor sorption equilibrium, and heat of sorption. Fourier-transform infrared spectroscopy shows that the ionic liquid partly self-organizes on the silica surface. When used in a sorption desalination process powered by low grade heat at 60 °C, these composites have exceptionally high theoretical working capacities ranging from 1 to 1.7 gwater gsorbent-1. Experimental tests on a lab scale desalinator show that Emim-Ac/Syloid 72FP in real operating conditions can produce 25 kgwater kgsorbent-1 day-1. To date, this yield is 2.5 times higher than the best achieved with silica gel.

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    ACS Applied Materials & Interfaces
    Article . 2019 . Peer-reviewed
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      ACS Applied Materials & Interfaces
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    Authors: Askalany A.; Olkis C.; Bramanti E.; Lapshin D.; +4 Authors

    This work investigates the application of novel sorption materials to heat-powered desalination systems. Two ionic liquids 1-ethyl-3-methylimidazolium acetate (Emim-Ac) and 1-ethyl-3-methylimidazolium methanesulfonate (Emim-Oms) were impregnated in two silica supports, namely, Syloid AL-1FP and Syloid 72FP. Emim-Ac and Emim-Oms composite sorbents have been compared on morphology, water vapor sorption equilibrium, and heat of sorption. Fourier-transform infrared spectroscopy shows that the ionic liquid partly self-organizes on the silica surface. When used in a sorption desalination process powered by low grade heat at 60 °C, these composites have exceptionally high theoretical working capacities ranging from 1 to 1.7 gwater gsorbent-1. Experimental tests on a lab scale desalinator show that Emim-Ac/Syloid 72FP in real operating conditions can produce 25 kgwater kgsorbent-1 day-1. To date, this yield is 2.5 times higher than the best achieved with silica gel.

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    ACS Applied Materials & Interfaces
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    The relationship between water and energy is a strong one characterized as having integration and coupling as two important features. While energy is responsible for delivering water to the end-users, it needs energy in order to be generated, and water. In this paper, a thorough review is presented regarding the different relationships between water and energy in terms of (i) the significance of the close relationship between water and energy by means of water/energy generation and consumption. Water consumption, water cooling and heating must be taken into account in order to avoid the obstacles related to future use of water for energy generation; (ii) the measuring and monitoring technologies for the energy-water nexus, focusing attention on the variables that are interrelated in the water and energy sectors. In addition, the consequences of finding several parameters, unknown variables and unclear dependencies in measuring of energy usage in the applications of water usage should also be taken into account. Innovative developments including nanotechnology, biotechnology, and wireless networks, as sensor technologies, may resolve the challenges of sensing; (iii) the different key performance indication tools for assessing and quantifying this nexus by analyzing and categorizing recent case studies of the water energy nexus and applicable evaluation methods; and (iv) the different research dimensions conducted on this nexus. Hopefully, this review will contribute to the development of this nexus adding value to the field while reducing duplication efforts.

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    The relationship between water and energy is a strong one characterized as having integration and coupling as two important features. While energy is responsible for delivering water to the end-users, it needs energy in order to be generated, and water. In this paper, a thorough review is presented regarding the different relationships between water and energy in terms of (i) the significance of the close relationship between water and energy by means of water/energy generation and consumption. Water consumption, water cooling and heating must be taken into account in order to avoid the obstacles related to future use of water for energy generation; (ii) the measuring and monitoring technologies for the energy-water nexus, focusing attention on the variables that are interrelated in the water and energy sectors. In addition, the consequences of finding several parameters, unknown variables and unclear dependencies in measuring of energy usage in the applications of water usage should also be taken into account. Innovative developments including nanotechnology, biotechnology, and wireless networks, as sensor technologies, may resolve the challenges of sensing; (iii) the different key performance indication tools for assessing and quantifying this nexus by analyzing and categorizing recent case studies of the water energy nexus and applicable evaluation methods; and (iv) the different research dimensions conducted on this nexus. Hopefully, this review will contribute to the development of this nexus adding value to the field while reducing duplication efforts.

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    Authors: Kutub Uddin; Kutub Uddin; Ahmed A. Askalany; Giulio Santori; +3 Authors

    Abstract Significant efforts have been done in order to improve adsorption desalination systems by developing advanced adsorbents. Silica-supported ionic liquid (SIL) has been recently proposed as a promising adsorption material for water desalination due to its relatively high adsorption capacity around 1 kgwater.kgSIL−1. Such achieved performance can be considered as an initial cornerstone that requires further important additional data before reaching a successful practical application. In this paper, experimental measurements of water adsorption kinetics in the SIL named EMIM-AC/Syloid 72FP are presented. The kinetics is interpreted using a linear driving force (LDF) model that shows good harmony with experimental data. Depending on a former study on adsorption isotherms and the current kinetics data, the performance of an adsorption water desalination system (ADS) is predicted using a dynamic lumped parameter model. The results show a bright future for this SIL material in water desalination application with high theoretical pure water production achieving 47 m3 day−1ton−1, 0.85 coefficient of performance with 600 W kgSIL−1 specific cooling power. Furthermore, system working with the EMIM-AC/Syloid 72FP can theoretically be powered by as low as 40 °C heat source.

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    Energy
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    Authors: Kutub Uddin; Kutub Uddin; Ahmed A. Askalany; Giulio Santori; +3 Authors

    Abstract Significant efforts have been done in order to improve adsorption desalination systems by developing advanced adsorbents. Silica-supported ionic liquid (SIL) has been recently proposed as a promising adsorption material for water desalination due to its relatively high adsorption capacity around 1 kgwater.kgSIL−1. Such achieved performance can be considered as an initial cornerstone that requires further important additional data before reaching a successful practical application. In this paper, experimental measurements of water adsorption kinetics in the SIL named EMIM-AC/Syloid 72FP are presented. The kinetics is interpreted using a linear driving force (LDF) model that shows good harmony with experimental data. Depending on a former study on adsorption isotherms and the current kinetics data, the performance of an adsorption water desalination system (ADS) is predicted using a dynamic lumped parameter model. The results show a bright future for this SIL material in water desalination application with high theoretical pure water production achieving 47 m3 day−1ton−1, 0.85 coefficient of performance with 600 W kgSIL−1 specific cooling power. Furthermore, system working with the EMIM-AC/Syloid 72FP can theoretically be powered by as low as 40 °C heat source.

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    Authors: Ahmed I. Osman; Ahmed M. Elgarahy; Neha Mehta; Ala'a H. Al‐Muhtaseb; +2 Authors

    Les déchets de plastique et de biomasse posent un risque grave pour l'environnement ; ainsi, ici, nous avons mélangé des déchets de biomasse avec des déchets de bouteilles en plastique (PET) pour produire des matériaux composites de charbon pour produire un composite de charbon magnétique pour une meilleure séparation lorsqu'il est utilisé dans des applications de traitement de l'eau. Cette étude a également calculé les impacts environnementaux du cycle de vie de la préparation du matériau adsorbant pour 11 catégories d'indicateurs différentes. Pour 1 unité fonctionnelle (1 kg de feuilles de marc comme matière première), l'épuisement abiotique des combustibles fossiles et le potentiel de réchauffement climatique ont été quantifiés à 7,17 MJ et 0,63 kg d'équivalent CO2 pour la production de matériaux composites à base de charbon magnétique. Le matériau composite de carbonisation magnétique (MPBC) a ensuite été utilisé pour éliminer le colorant violet cristallin de sa solution aqueuse selon divers paramètres opérationnels. Les théories statistiques de la cinétique et de l'isotherme ont montré que la sorption du colorant CV sur le MPBC était régie par des modèles de pseudo-seconde-ordre et de Langmuir, respectivement. L'évaluation quantitative de la capacité de sorption clarifie que le MPBC produit présentait une capacité admirable de 256,41 mg g-1. Pendant ce temps, la recyclabilité de 92,4 % de MPBC a été démontrée après 5 cycles d'adsorption/désorption. Les résultats de cette étude inspireront une production plus durable et plus rentable de sorbants magnétiques, y compris ceux dérivés de flux de déchets de plastique et de biomasse combinés. Los residuos plásticos y de biomasa representan un grave riesgo ambiental; por lo tanto, en este documento, mezclamos residuos de biomasa con residuos de botellas de plástico (PET) para producir materiales compuestos de carbón para producir un compuesto de carbón magnético para una mejor separación cuando se usa en aplicaciones de tratamiento de agua. Este estudio también calculó los impactos ambientales del ciclo de vida de la preparación de material adsorbente para 11 categorías de indicadores diferentes. Para 1 unidad funcional (1 kg de hojas de orujo como materia prima), el agotamiento abiótico de los combustibles fósiles y el potencial de calentamiento global se cuantificaron como 7,17 MJ y 0,63 kg de CO2 equivalente para la producción de materiales compuestos de carbón magnético. El material compuesto de carbón magnético (MPBC) se utilizó luego para eliminar el colorante violeta cristal de su solución acuosa bajo varios parámetros operativos. Las teorías estadísticas de cinética e isoterma mostraron que la sorción del colorante CV en MPBC estaba gobernada por modelos de pseudo-segundo orden y Langmuir, respectivamente. La evaluación cuantitativa de la capacidad de sorción aclara que el MPBC producido exhibió una capacidad admirable de 256.41 mg g-1. Mientras tanto, la reciclabilidad del 92.4% de MPBC se demostró después de 5 ciclos de adsorción/desorción. Los resultados de este estudio inspirarán una producción más sostenible y rentable de sorbentes magnéticos, incluidos los derivados de flujos combinados de residuos plásticos y de biomasa. Plastic and biomass waste pose a serious environmental risk; thus, herein, we mixed biomass waste with plastic bottle waste (PET) to produce char composite materials for producing a magnetic char composite for better separation when used in water treatment applications. This study also calculated the life cycle environmental impacts of the preparation of adsorbent material for 11 different indicator categories. For 1 functional unit (1 kg of pomace leaves as feedstock), abiotic depletion of fossil fuels and global warming potential were quantified as 7.17 MJ and 0.63 kg CO2 equiv for production of magnetic char composite materials. The magnetic char composite material (MPBC) was then used to remove crystal violet dye from its aqueous solution under various operational parameters. The kinetics and isotherm statistical theories showed that the sorption of CV dye onto MPBC was governed by pseudo-second-order, and Langmuir models, respectively. The quantitative assessment of sorption capacity clarifies that the produced MPBC exhibited an admirable ability of 256.41 mg g-1. Meanwhile, the recyclability of 92.4% of MPBC was demonstrated after 5 adsorption/desorption cycles. Findings from this study will inspire more sustainable and cost-effective production of magnetic sorbents, including those derived from combined plastic and biomass waste streams. تشكل نفايات البلاستيك والكتلة الحيوية خطرًا بيئيًا خطيرًا ؛ وبالتالي، هنا، قمنا بخلط نفايات الكتلة الحيوية مع نفايات الزجاجات البلاستيكية (PET) لإنتاج مواد مركبة من الفحم لإنتاج مركب فحم مغناطيسي لفصل أفضل عند استخدامه في تطبيقات معالجة المياه. كما حسبت هذه الدراسة التأثيرات البيئية لدورة الحياة لإعداد المواد الممتزة لـ 11 فئة مختلفة من المؤشرات. بالنسبة لوحدة وظيفية واحدة (1 كجم من أوراق الثفل كمادة وسيطة)، تم تحديد النضوب اللاأحيائي للوقود الأحفوري وإمكانات الاحترار العالمي على أنها 7.17 ميجا جول و 0.63 كجم من مكافئ ثاني أكسيد الكربون لإنتاج المواد المركبة للفحم المغناطيسي. ثم تم استخدام المادة المركبة للفحم المغناطيسي (MPBC) لإزالة الصبغة البنفسجية البلورية من محلولها المائي تحت معايير تشغيلية مختلفة. أظهرت النظريات الإحصائية للحركية والحرارة المتساوية أن امتصاص صبغة CV على MPBC كان محكومًا بنماذج زائفة من الدرجة الثانية، ونماذج Langmuir، على التوالي. يوضح التقييم الكمي لقدرة الامتصاص أن خلايا الدم البيضاء المنتجة أظهرت قدرة مثيرة للإعجاب تبلغ 256.41 ملغ غرام -1. وفي الوقت نفسه، تم إثبات قابلية إعادة تدوير 92.4 ٪ من حاوية الحاويات متعددة الأغراض بعد 5 دورات من الامتزاز/الامتزاز. ستلهم نتائج هذه الدراسة إنتاجًا أكثر استدامة وفعالية من حيث التكلفة للمواد الماصة المغناطيسية، بما في ذلك تلك المستمدة من تدفقات نفايات البلاستيك والكتلة الحيوية مجتمعة.

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    Authors: Ahmed I. Osman; Ahmed M. Elgarahy; Neha Mehta; Ala'a H. Al‐Muhtaseb; +2 Authors

    Les déchets de plastique et de biomasse posent un risque grave pour l'environnement ; ainsi, ici, nous avons mélangé des déchets de biomasse avec des déchets de bouteilles en plastique (PET) pour produire des matériaux composites de charbon pour produire un composite de charbon magnétique pour une meilleure séparation lorsqu'il est utilisé dans des applications de traitement de l'eau. Cette étude a également calculé les impacts environnementaux du cycle de vie de la préparation du matériau adsorbant pour 11 catégories d'indicateurs différentes. Pour 1 unité fonctionnelle (1 kg de feuilles de marc comme matière première), l'épuisement abiotique des combustibles fossiles et le potentiel de réchauffement climatique ont été quantifiés à 7,17 MJ et 0,63 kg d'équivalent CO2 pour la production de matériaux composites à base de charbon magnétique. Le matériau composite de carbonisation magnétique (MPBC) a ensuite été utilisé pour éliminer le colorant violet cristallin de sa solution aqueuse selon divers paramètres opérationnels. Les théories statistiques de la cinétique et de l'isotherme ont montré que la sorption du colorant CV sur le MPBC était régie par des modèles de pseudo-seconde-ordre et de Langmuir, respectivement. L'évaluation quantitative de la capacité de sorption clarifie que le MPBC produit présentait une capacité admirable de 256,41 mg g-1. Pendant ce temps, la recyclabilité de 92,4 % de MPBC a été démontrée après 5 cycles d'adsorption/désorption. Les résultats de cette étude inspireront une production plus durable et plus rentable de sorbants magnétiques, y compris ceux dérivés de flux de déchets de plastique et de biomasse combinés. Los residuos plásticos y de biomasa representan un grave riesgo ambiental; por lo tanto, en este documento, mezclamos residuos de biomasa con residuos de botellas de plástico (PET) para producir materiales compuestos de carbón para producir un compuesto de carbón magnético para una mejor separación cuando se usa en aplicaciones de tratamiento de agua. Este estudio también calculó los impactos ambientales del ciclo de vida de la preparación de material adsorbente para 11 categorías de indicadores diferentes. Para 1 unidad funcional (1 kg de hojas de orujo como materia prima), el agotamiento abiótico de los combustibles fósiles y el potencial de calentamiento global se cuantificaron como 7,17 MJ y 0,63 kg de CO2 equivalente para la producción de materiales compuestos de carbón magnético. El material compuesto de carbón magnético (MPBC) se utilizó luego para eliminar el colorante violeta cristal de su solución acuosa bajo varios parámetros operativos. Las teorías estadísticas de cinética e isoterma mostraron que la sorción del colorante CV en MPBC estaba gobernada por modelos de pseudo-segundo orden y Langmuir, respectivamente. La evaluación cuantitativa de la capacidad de sorción aclara que el MPBC producido exhibió una capacidad admirable de 256.41 mg g-1. Mientras tanto, la reciclabilidad del 92.4% de MPBC se demostró después de 5 ciclos de adsorción/desorción. Los resultados de este estudio inspirarán una producción más sostenible y rentable de sorbentes magnéticos, incluidos los derivados de flujos combinados de residuos plásticos y de biomasa. Plastic and biomass waste pose a serious environmental risk; thus, herein, we mixed biomass waste with plastic bottle waste (PET) to produce char composite materials for producing a magnetic char composite for better separation when used in water treatment applications. This study also calculated the life cycle environmental impacts of the preparation of adsorbent material for 11 different indicator categories. For 1 functional unit (1 kg of pomace leaves as feedstock), abiotic depletion of fossil fuels and global warming potential were quantified as 7.17 MJ and 0.63 kg CO2 equiv for production of magnetic char composite materials. The magnetic char composite material (MPBC) was then used to remove crystal violet dye from its aqueous solution under various operational parameters. The kinetics and isotherm statistical theories showed that the sorption of CV dye onto MPBC was governed by pseudo-second-order, and Langmuir models, respectively. The quantitative assessment of sorption capacity clarifies that the produced MPBC exhibited an admirable ability of 256.41 mg g-1. Meanwhile, the recyclability of 92.4% of MPBC was demonstrated after 5 adsorption/desorption cycles. Findings from this study will inspire more sustainable and cost-effective production of magnetic sorbents, including those derived from combined plastic and biomass waste streams. تشكل نفايات البلاستيك والكتلة الحيوية خطرًا بيئيًا خطيرًا ؛ وبالتالي، هنا، قمنا بخلط نفايات الكتلة الحيوية مع نفايات الزجاجات البلاستيكية (PET) لإنتاج مواد مركبة من الفحم لإنتاج مركب فحم مغناطيسي لفصل أفضل عند استخدامه في تطبيقات معالجة المياه. كما حسبت هذه الدراسة التأثيرات البيئية لدورة الحياة لإعداد المواد الممتزة لـ 11 فئة مختلفة من المؤشرات. بالنسبة لوحدة وظيفية واحدة (1 كجم من أوراق الثفل كمادة وسيطة)، تم تحديد النضوب اللاأحيائي للوقود الأحفوري وإمكانات الاحترار العالمي على أنها 7.17 ميجا جول و 0.63 كجم من مكافئ ثاني أكسيد الكربون لإنتاج المواد المركبة للفحم المغناطيسي. ثم تم استخدام المادة المركبة للفحم المغناطيسي (MPBC) لإزالة الصبغة البنفسجية البلورية من محلولها المائي تحت معايير تشغيلية مختلفة. أظهرت النظريات الإحصائية للحركية والحرارة المتساوية أن امتصاص صبغة CV على MPBC كان محكومًا بنماذج زائفة من الدرجة الثانية، ونماذج Langmuir، على التوالي. يوضح التقييم الكمي لقدرة الامتصاص أن خلايا الدم البيضاء المنتجة أظهرت قدرة مثيرة للإعجاب تبلغ 256.41 ملغ غرام -1. وفي الوقت نفسه، تم إثبات قابلية إعادة تدوير 92.4 ٪ من حاوية الحاويات متعددة الأغراض بعد 5 دورات من الامتزاز/الامتزاز. ستلهم نتائج هذه الدراسة إنتاجًا أكثر استدامة وفعالية من حيث التكلفة للمواد الماصة المغناطيسية، بما في ذلك تلك المستمدة من تدفقات نفايات البلاستيك والكتلة الحيوية مجتمعة.

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    Authors: Ahmed I. Osman; Mohamed Farghali; Ikko Ihara; Ahmed M. Elgarahy; +10 Authors

    AbstractClimate change issues are calling for advanced methods to produce materials and fuels in a carbon–neutral and circular way. For instance, biomass pyrolysis has been intensely investigated during the last years. Here we review the pyrolysis of algal and lignocellulosic biomass with focus on pyrolysis products and mechanisms, oil upgrading, combining pyrolysis and anaerobic digestion, economy, and life cycle assessment. Products include oil, gas, and biochar. Upgrading techniques comprise hot vapor filtration, solvent addition, emulsification, esterification and transesterification, hydrotreatment, steam reforming, and the use of supercritical fluids. We examined the economic viability in terms of profitability, internal rate of return, return on investment, carbon removal service, product pricing, and net present value. We also reviewed 20 recent studies of life cycle assessment. We found that the pyrolysis method highly influenced product yield, ranging from 9.07 to 40.59% for oil, from 10.1 to 41.25% for biochar, and from 11.93 to 28.16% for syngas. Feedstock type, pyrolytic temperature, heating rate, and reaction retention time were the main factors controlling the distribution of pyrolysis products. Pyrolysis mechanisms include bond breaking, cracking, polymerization and re-polymerization, and fragmentation. Biochar from residual forestry could sequester 2.74 tons of carbon dioxide equivalent per ton biochar when applied to the soil and has thus the potential to remove 0.2–2.75 gigatons of atmospheric carbon dioxide annually. The generation of biochar and bio-oil from the pyrolysis process is estimated to be economically feasible.

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    Environmental Chemistry Letters
    Article . 2023 . Peer-reviewed
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      Environmental Chemistry Letters
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    Authors: Ahmed I. Osman; Mohamed Farghali; Ikko Ihara; Ahmed M. Elgarahy; +10 Authors

    AbstractClimate change issues are calling for advanced methods to produce materials and fuels in a carbon–neutral and circular way. For instance, biomass pyrolysis has been intensely investigated during the last years. Here we review the pyrolysis of algal and lignocellulosic biomass with focus on pyrolysis products and mechanisms, oil upgrading, combining pyrolysis and anaerobic digestion, economy, and life cycle assessment. Products include oil, gas, and biochar. Upgrading techniques comprise hot vapor filtration, solvent addition, emulsification, esterification and transesterification, hydrotreatment, steam reforming, and the use of supercritical fluids. We examined the economic viability in terms of profitability, internal rate of return, return on investment, carbon removal service, product pricing, and net present value. We also reviewed 20 recent studies of life cycle assessment. We found that the pyrolysis method highly influenced product yield, ranging from 9.07 to 40.59% for oil, from 10.1 to 41.25% for biochar, and from 11.93 to 28.16% for syngas. Feedstock type, pyrolytic temperature, heating rate, and reaction retention time were the main factors controlling the distribution of pyrolysis products. Pyrolysis mechanisms include bond breaking, cracking, polymerization and re-polymerization, and fragmentation. Biochar from residual forestry could sequester 2.74 tons of carbon dioxide equivalent per ton biochar when applied to the soil and has thus the potential to remove 0.2–2.75 gigatons of atmospheric carbon dioxide annually. The generation of biochar and bio-oil from the pyrolysis process is estimated to be economically feasible.

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    Environmental Chemistry Letters
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      Environmental Chemistry Letters
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    Authors: Ahmed S. Abuzaid; Mohamed A. Abdel-Salam; Abeer F. Ahmad; Hala A. Fathy; +2 Authors

    Lack of active sorption sites in sandy soils renders metals added by irrigation water more labile and increases their soil-to-plant transfer. Thus, this study investigated the long-term impacts of irrigation using sewage effluents and contaminated groundwater on metal accumulations in TypicTorripsamment soils, and edible parts of food crops. Nine sites in El-Gabal El-Asfar farm, south-eastern to the Nile Delta of Egypt, were selected. At each site, irrigation water, soil (0–30 cm), and the crop’s edible part were sampled in triplicates and analyzed for Mn, Pb, and Zn. Results revealed significant (p < 0.05) differences in metal concentrations among water sources. Thus, constant irrigation caused significant spatial variations in total and available metal contents in soils. Total contents of Pb (in four sites) and Zn (in all sites) exceed the lithosphere range, while the available contents of the three metals exceeded the safe limits in all soils. The index of geo-accumulation indicated no Mn pollution but showed elevated pollution risks for Pb and Zn. The three metals showed high availability ratios, proving the effect of light soil texture. The multivariate statistical analysis indicated that Mn and Zn had similar geochemical behaviors in soils. Metal contents in all crop’s edible parts surpassed the safe limits. The bioaccumulation factor (BAF) was less than 1.0 for Mn and Zn but higher than 1.0 for Pb. The highest BAFs occurred in cabbage leaves, indicating the phytoextraction potential of this species. Sufficient water treatment and proper remediation techniques are recommended to alleviate metal accumulation in food crops and their transfer via the food chain.

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    Sustainability
    Article . 2022 . Peer-reviewed
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    Authors: Ahmed S. Abuzaid; Mohamed A. Abdel-Salam; Abeer F. Ahmad; Hala A. Fathy; +2 Authors

    Lack of active sorption sites in sandy soils renders metals added by irrigation water more labile and increases their soil-to-plant transfer. Thus, this study investigated the long-term impacts of irrigation using sewage effluents and contaminated groundwater on metal accumulations in TypicTorripsamment soils, and edible parts of food crops. Nine sites in El-Gabal El-Asfar farm, south-eastern to the Nile Delta of Egypt, were selected. At each site, irrigation water, soil (0–30 cm), and the crop’s edible part were sampled in triplicates and analyzed for Mn, Pb, and Zn. Results revealed significant (p < 0.05) differences in metal concentrations among water sources. Thus, constant irrigation caused significant spatial variations in total and available metal contents in soils. Total contents of Pb (in four sites) and Zn (in all sites) exceed the lithosphere range, while the available contents of the three metals exceeded the safe limits in all soils. The index of geo-accumulation indicated no Mn pollution but showed elevated pollution risks for Pb and Zn. The three metals showed high availability ratios, proving the effect of light soil texture. The multivariate statistical analysis indicated that Mn and Zn had similar geochemical behaviors in soils. Metal contents in all crop’s edible parts surpassed the safe limits. The bioaccumulation factor (BAF) was less than 1.0 for Mn and Zn but higher than 1.0 for Pb. The highest BAFs occurred in cabbage leaves, indicating the phytoextraction potential of this species. Sufficient water treatment and proper remediation techniques are recommended to alleviate metal accumulation in food crops and their transfer via the food chain.

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    Authors: Ahmed I. Osman; Jacob Blewitt; Jehad K. Abu-Dahrieh; Charlie Farrell; +3 Authors

    AbstractHerein, activated carbon (AC) and carbon nanotubes (CNTs) were synthesised from potato peel waste (PPW). Different ACs were synthesised via two activation steps: firstly, with phosphoric acid (designated PP) and then using potassium hydroxide (designated PK). The AC produced after the two activation steps showed a surface area as high as 833 m2 g−1 with a pore volume of 0.44 cm3 g−1, where the raw material of PPW showed a surface area < 4 m2 g−1. This can help aid and facilitate the concept of the circular economy by effectively up-cycling and valorising waste lignocellulosic biomass such as potato peel waste to high surface area AC and subsequently, multi-walled carbon nanotubes (MWCNTs). Consequently, MWCNTs were prepared from the produced AC by mixing it with the nitrogen-based material melamine and iron precursor, iron (III) oxalate hexahydrate. This produced hydrophilic multi-wall carbon nanotubes (MWCNTs) with a water contact angle of θ = 14.97 °. Both AC and CNT materials were used in heavy metal removal (HMR) where the maximum lead absorption was observed for sample PK with a 84% removal capacity after the first hour of testing. This result signifies that the synthesis of these up-cycled materials can have applications in areas such as wastewater treatment or other conventional AC/CNT end uses with a rapid cycle time in a two-fold approach to improve the eco-friendly synthesis of such value-added products and the circular economy from a significant waste stream, i.e., PPW.

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    Environmental Science and Pollution Research
    Article . 2019 . Peer-reviewed
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    PubMed Central
    Other literature type . 2019
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      Environmental Science and Pollution Research
      Article . 2019 . Peer-reviewed
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      Other literature type . 2019
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    Authors: Ahmed I. Osman; Jacob Blewitt; Jehad K. Abu-Dahrieh; Charlie Farrell; +3 Authors

    AbstractHerein, activated carbon (AC) and carbon nanotubes (CNTs) were synthesised from potato peel waste (PPW). Different ACs were synthesised via two activation steps: firstly, with phosphoric acid (designated PP) and then using potassium hydroxide (designated PK). The AC produced after the two activation steps showed a surface area as high as 833 m2 g−1 with a pore volume of 0.44 cm3 g−1, where the raw material of PPW showed a surface area < 4 m2 g−1. This can help aid and facilitate the concept of the circular economy by effectively up-cycling and valorising waste lignocellulosic biomass such as potato peel waste to high surface area AC and subsequently, multi-walled carbon nanotubes (MWCNTs). Consequently, MWCNTs were prepared from the produced AC by mixing it with the nitrogen-based material melamine and iron precursor, iron (III) oxalate hexahydrate. This produced hydrophilic multi-wall carbon nanotubes (MWCNTs) with a water contact angle of θ = 14.97 °. Both AC and CNT materials were used in heavy metal removal (HMR) where the maximum lead absorption was observed for sample PK with a 84% removal capacity after the first hour of testing. This result signifies that the synthesis of these up-cycled materials can have applications in areas such as wastewater treatment or other conventional AC/CNT end uses with a rapid cycle time in a two-fold approach to improve the eco-friendly synthesis of such value-added products and the circular economy from a significant waste stream, i.e., PPW.

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    Environmental Science and Pollution Research
    Article . 2019 . Peer-reviewed
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    PubMed Central
    Other literature type . 2019
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      Environmental Science and Pollution Research
      Article . 2019 . Peer-reviewed
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      Other literature type . 2019
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Nabil. K. Abd-Elrahman; Nuha Al-Harbi; Noor M. Basfer; Yas Al-Hadeethi; +2 Authors

    Microbial fuel cells (MFCs) are an environmentally friendly technology and a source of renewable energy. It is used to generate electrical energy from organic waste using bacteria, which is an effective technology in wastewater treatment. The anode and the cathode electrodes and proton exchange membranes (PEM) are important components affecting the performance and operation of MFC. Conventional materials used in the manufacture of electrodes and membranes are insufficient to improve the efficiency of MFC. The use of nanomaterials in the manufacture of the anode had a prominent effect in improving the performance in terms of increasing the surface area, increasing the transfer of electrons from the anode to the cathode, biocompatibility, and biofilm formation and improving the oxidation reactions of organic waste using bacteria. The use of nanomaterials in the manufacture of the cathode also showed the improvement of cathode reactions or oxygen reduction reactions (ORR). The PEM has a prominent role in separating the anode and the cathode in the MFC, transferring protons from the anode chamber to the cathode chamber while preventing the transfer of oxygen. Nanomaterials have been used in the manufacture of membrane components, which led to improving the chemical and physical properties of the membranes and increasing the transfer rates of protons, thus improving the performance and efficiency of MFC in generating electrical energy and improving wastewater treatment.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Moleculesarrow_drop_down
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    Molecules
    Article . 2022 . Peer-reviewed
    License: CC BY
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    Molecules
    Article . 2022
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    PubMed Central
    Other literature type . 2022
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    Molecules
    Article . 2022
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      Molecules
      Article . 2022 . Peer-reviewed
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      Molecules
      Article . 2022
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      Other literature type . 2022
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      Molecules
      Article . 2022
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Nabil. K. Abd-Elrahman; Nuha Al-Harbi; Noor M. Basfer; Yas Al-Hadeethi; +2 Authors

    Microbial fuel cells (MFCs) are an environmentally friendly technology and a source of renewable energy. It is used to generate electrical energy from organic waste using bacteria, which is an effective technology in wastewater treatment. The anode and the cathode electrodes and proton exchange membranes (PEM) are important components affecting the performance and operation of MFC. Conventional materials used in the manufacture of electrodes and membranes are insufficient to improve the efficiency of MFC. The use of nanomaterials in the manufacture of the anode had a prominent effect in improving the performance in terms of increasing the surface area, increasing the transfer of electrons from the anode to the cathode, biocompatibility, and biofilm formation and improving the oxidation reactions of organic waste using bacteria. The use of nanomaterials in the manufacture of the cathode also showed the improvement of cathode reactions or oxygen reduction reactions (ORR). The PEM has a prominent role in separating the anode and the cathode in the MFC, transferring protons from the anode chamber to the cathode chamber while preventing the transfer of oxygen. Nanomaterials have been used in the manufacture of membrane components, which led to improving the chemical and physical properties of the membranes and increasing the transfer rates of protons, thus improving the performance and efficiency of MFC in generating electrical energy and improving wastewater treatment.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Moleculesarrow_drop_down
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    Molecules
    Article . 2022 . Peer-reviewed
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    Molecules
    Article . 2022
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
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    Other literature type . 2022
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    Molecules
    Article . 2022
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      Molecules
      Article . 2022 . Peer-reviewed
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      Molecules
      Article . 2022
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
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      Other literature type . 2022
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      Molecules
      Article . 2022
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    Authors: Dena Z. Khater; R. S. Amin; Amani E. Fetohi; Mohamed Mahmoud; +1 Authors

    AbstractHexavalent chromium [Cr(VI)] is one of the most carcinogenic and mutagenic toxins, and is commonly released into the environemt from different industries, including leather tanning, pulp and paper manufacturing, and metal finishing. This study aimed to investigate the performance of dual chamber microbial fuel cells (DMFCs) equipped with a biocathode as alternative promising remediation approaches for the biological reduction of hexavalent chromium [Cr(VI)] with instantaneous power generation. A succession batch under preliminary diverse concentrations of Cr(VI) (from 5 to 60 mg L−1) was conducted to investigate the reduction mechanism of DMFCs. Compared to abiotic-cathode DMFC, biotic-cathode DMFC exhibited a much higher power density, Cr(VI) reduction, and coulombic efficiency over a wide range of Cr(VI) concentrations (i.e., 5–60 mg L−1). Furthermore, the X-ray photoelectron spectroscopy (XPS) revealed that the chemical functional groups on the surface of biotic cathode DMFC were mainly trivalent chromium (Cr(III)). Additionally, high throughput sequencing showed that the predominant anodic bacterial phyla were Firmicutes, Proteobacteria, and Deinococcota with the dominance of Clostridiumsensu strict 1, Enterobacter, Pseudomonas, Clostridiumsensu strict 11 and Lysinibacillus in the cathodic microbial community. Collectively, our results showed that the Cr(VI) removal occurred through two different mechanisms: biosorption and bioelectrochemical reduction. These findings confirmed that the DMFC could be used as a bioremediation approach for the removal of Cr(VI) commonly found in different industrial wastewater, such as tannery effluents. with simultaneous bioenergy production.

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    Authors: Dena Z. Khater; R. S. Amin; Amani E. Fetohi; Mohamed Mahmoud; +1 Authors

    AbstractHexavalent chromium [Cr(VI)] is one of the most carcinogenic and mutagenic toxins, and is commonly released into the environemt from different industries, including leather tanning, pulp and paper manufacturing, and metal finishing. This study aimed to investigate the performance of dual chamber microbial fuel cells (DMFCs) equipped with a biocathode as alternative promising remediation approaches for the biological reduction of hexavalent chromium [Cr(VI)] with instantaneous power generation. A succession batch under preliminary diverse concentrations of Cr(VI) (from 5 to 60 mg L−1) was conducted to investigate the reduction mechanism of DMFCs. Compared to abiotic-cathode DMFC, biotic-cathode DMFC exhibited a much higher power density, Cr(VI) reduction, and coulombic efficiency over a wide range of Cr(VI) concentrations (i.e., 5–60 mg L−1). Furthermore, the X-ray photoelectron spectroscopy (XPS) revealed that the chemical functional groups on the surface of biotic cathode DMFC were mainly trivalent chromium (Cr(III)). Additionally, high throughput sequencing showed that the predominant anodic bacterial phyla were Firmicutes, Proteobacteria, and Deinococcota with the dominance of Clostridiumsensu strict 1, Enterobacter, Pseudomonas, Clostridiumsensu strict 11 and Lysinibacillus in the cathodic microbial community. Collectively, our results showed that the Cr(VI) removal occurred through two different mechanisms: biosorption and bioelectrochemical reduction. These findings confirmed that the DMFC could be used as a bioremediation approach for the removal of Cr(VI) commonly found in different industrial wastewater, such as tannery effluents. with simultaneous bioenergy production.

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    Authors: Naglaa Elshafey; Samy Selim; Asmaa H. Mohammed; Nashwa Hagagy; +10 Authors

    The haloarchaeal diversity of four hypersaline alkaline lakes from the Wadi El-Natrun depression (Northern Egypt) was investigated using culture-independent polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) of 16S rRNA gene phylotypes, which was combined with remote sensing and geographic information system (GIS) data to highlight the distribution pattern of the microbial diversity in water and sediment samples. The majority of archaeal sequences identified in all four lakes belonged to the phyla Euryarchaeota and Crenarchaeota. Sediment samples from Beida Lake and water samples from El-Hamra Lake showed the highest levels of archaeal diversity. Sequence similarities ≥ 95% were found between six of the acquired clones and uncultured Halorhabdus, Euryarchaeota, and archaeon clones. In addition, two clones shared a high level of sequence similarity (97%) with unclassified archaea, while other nine clones exhibited 96% to 99% sequence similarity with uncultured archaeon clones, and only one clone showed 97% identity with an uncultured Crenarchaeota. Likewise, 7 DGGE bands presented a sequence similarity of 90 to 98% to Halogranum sp., Halalkalicoccus tibetensis, Halalkalicoccus jeotgali, uncultured Halorubrum, Halobacteriaceae sp., or uncultured haloarchaeon. In conclusion, while the variety of alkaliphilic haloarchaea in the examined soda lakes was restricted, the possibility of uncovering novel species for biotechnological applications from these extreme habitats remains promising.

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    Fermentation
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    Recolector de Ciencia Abierta, RECOLECTA
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    Authors: Naglaa Elshafey; Samy Selim; Asmaa H. Mohammed; Nashwa Hagagy; +10 Authors

    The haloarchaeal diversity of four hypersaline alkaline lakes from the Wadi El-Natrun depression (Northern Egypt) was investigated using culture-independent polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) of 16S rRNA gene phylotypes, which was combined with remote sensing and geographic information system (GIS) data to highlight the distribution pattern of the microbial diversity in water and sediment samples. The majority of archaeal sequences identified in all four lakes belonged to the phyla Euryarchaeota and Crenarchaeota. Sediment samples from Beida Lake and water samples from El-Hamra Lake showed the highest levels of archaeal diversity. Sequence similarities ≥ 95% were found between six of the acquired clones and uncultured Halorhabdus, Euryarchaeota, and archaeon clones. In addition, two clones shared a high level of sequence similarity (97%) with unclassified archaea, while other nine clones exhibited 96% to 99% sequence similarity with uncultured archaeon clones, and only one clone showed 97% identity with an uncultured Crenarchaeota. Likewise, 7 DGGE bands presented a sequence similarity of 90 to 98% to Halogranum sp., Halalkalicoccus tibetensis, Halalkalicoccus jeotgali, uncultured Halorubrum, Halobacteriaceae sp., or uncultured haloarchaeon. In conclusion, while the variety of alkaliphilic haloarchaea in the examined soda lakes was restricted, the possibility of uncovering novel species for biotechnological applications from these extreme habitats remains promising.

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    Fermentation
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    Recolector de Ciencia Abierta, RECOLECTA
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    Authors: Askalany A.; Olkis C.; Bramanti E.; Lapshin D.; +4 Authors

    This work investigates the application of novel sorption materials to heat-powered desalination systems. Two ionic liquids 1-ethyl-3-methylimidazolium acetate (Emim-Ac) and 1-ethyl-3-methylimidazolium methanesulfonate (Emim-Oms) were impregnated in two silica supports, namely, Syloid AL-1FP and Syloid 72FP. Emim-Ac and Emim-Oms composite sorbents have been compared on morphology, water vapor sorption equilibrium, and heat of sorption. Fourier-transform infrared spectroscopy shows that the ionic liquid partly self-organizes on the silica surface. When used in a sorption desalination process powered by low grade heat at 60 °C, these composites have exceptionally high theoretical working capacities ranging from 1 to 1.7 gwater gsorbent-1. Experimental tests on a lab scale desalinator show that Emim-Ac/Syloid 72FP in real operating conditions can produce 25 kgwater kgsorbent-1 day-1. To date, this yield is 2.5 times higher than the best achieved with silica gel.

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    ACS Applied Materials & Interfaces
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    Authors: Askalany A.; Olkis C.; Bramanti E.; Lapshin D.; +4 Authors

    This work investigates the application of novel sorption materials to heat-powered desalination systems. Two ionic liquids 1-ethyl-3-methylimidazolium acetate (Emim-Ac) and 1-ethyl-3-methylimidazolium methanesulfonate (Emim-Oms) were impregnated in two silica supports, namely, Syloid AL-1FP and Syloid 72FP. Emim-Ac and Emim-Oms composite sorbents have been compared on morphology, water vapor sorption equilibrium, and heat of sorption. Fourier-transform infrared spectroscopy shows that the ionic liquid partly self-organizes on the silica surface. When used in a sorption desalination process powered by low grade heat at 60 °C, these composites have exceptionally high theoretical working capacities ranging from 1 to 1.7 gwater gsorbent-1. Experimental tests on a lab scale desalinator show that Emim-Ac/Syloid 72FP in real operating conditions can produce 25 kgwater kgsorbent-1 day-1. To date, this yield is 2.5 times higher than the best achieved with silica gel.

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    The relationship between water and energy is a strong one characterized as having integration and coupling as two important features. While energy is responsible for delivering water to the end-users, it needs energy in order to be generated, and water. In this paper, a thorough review is presented regarding the different relationships between water and energy in terms of (i) the significance of the close relationship between water and energy by means of water/energy generation and consumption. Water consumption, water cooling and heating must be taken into account in order to avoid the obstacles related to future use of water for energy generation; (ii) the measuring and monitoring technologies for the energy-water nexus, focusing attention on the variables that are interrelated in the water and energy sectors. In addition, the consequences of finding several parameters, unknown variables and unclear dependencies in measuring of energy usage in the applications of water usage should also be taken into account. Innovative developments including nanotechnology, biotechnology, and wireless networks, as sensor technologies, may resolve the challenges of sensing; (iii) the different key performance indication tools for assessing and quantifying this nexus by analyzing and categorizing recent case studies of the water energy nexus and applicable evaluation methods; and (iv) the different research dimensions conducted on this nexus. Hopefully, this review will contribute to the development of this nexus adding value to the field while reducing duplication efforts.

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    The relationship between water and energy is a strong one characterized as having integration and coupling as two important features. While energy is responsible for delivering water to the end-users, it needs energy in order to be generated, and water. In this paper, a thorough review is presented regarding the different relationships between water and energy in terms of (i) the significance of the close relationship between water and energy by means of water/energy generation and consumption. Water consumption, water cooling and heating must be taken into account in order to avoid the obstacles related to future use of water for energy generation; (ii) the measuring and monitoring technologies for the energy-water nexus, focusing attention on the variables that are interrelated in the water and energy sectors. In addition, the consequences of finding several parameters, unknown variables and unclear dependencies in measuring of energy usage in the applications of water usage should also be taken into account. Innovative developments including nanotechnology, biotechnology, and wireless networks, as sensor technologies, may resolve the challenges of sensing; (iii) the different key performance indication tools for assessing and quantifying this nexus by analyzing and categorizing recent case studies of the water energy nexus and applicable evaluation methods; and (iv) the different research dimensions conducted on this nexus. Hopefully, this review will contribute to the development of this nexus adding value to the field while reducing duplication efforts.

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    Authors: Kutub Uddin; Kutub Uddin; Ahmed A. Askalany; Giulio Santori; +3 Authors

    Abstract Significant efforts have been done in order to improve adsorption desalination systems by developing advanced adsorbents. Silica-supported ionic liquid (SIL) has been recently proposed as a promising adsorption material for water desalination due to its relatively high adsorption capacity around 1 kgwater.kgSIL−1. Such achieved performance can be considered as an initial cornerstone that requires further important additional data before reaching a successful practical application. In this paper, experimental measurements of water adsorption kinetics in the SIL named EMIM-AC/Syloid 72FP are presented. The kinetics is interpreted using a linear driving force (LDF) model that shows good harmony with experimental data. Depending on a former study on adsorption isotherms and the current kinetics data, the performance of an adsorption water desalination system (ADS) is predicted using a dynamic lumped parameter model. The results show a bright future for this SIL material in water desalination application with high theoretical pure water production achieving 47 m3 day−1ton−1, 0.85 coefficient of performance with 600 W kgSIL−1 specific cooling power. Furthermore, system working with the EMIM-AC/Syloid 72FP can theoretically be powered by as low as 40 °C heat source.

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    Energy
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    Authors: Kutub Uddin; Kutub Uddin; Ahmed A. Askalany; Giulio Santori; +3 Authors

    Abstract Significant efforts have been done in order to improve adsorption desalination systems by developing advanced adsorbents. Silica-supported ionic liquid (SIL) has been recently proposed as a promising adsorption material for water desalination due to its relatively high adsorption capacity around 1 kgwater.kgSIL−1. Such achieved performance can be considered as an initial cornerstone that requires further important additional data before reaching a successful practical application. In this paper, experimental measurements of water adsorption kinetics in the SIL named EMIM-AC/Syloid 72FP are presented. The kinetics is interpreted using a linear driving force (LDF) model that shows good harmony with experimental data. Depending on a former study on adsorption isotherms and the current kinetics data, the performance of an adsorption water desalination system (ADS) is predicted using a dynamic lumped parameter model. The results show a bright future for this SIL material in water desalination application with high theoretical pure water production achieving 47 m3 day−1ton−1, 0.85 coefficient of performance with 600 W kgSIL−1 specific cooling power. Furthermore, system working with the EMIM-AC/Syloid 72FP can theoretically be powered by as low as 40 °C heat source.

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    Energy
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    Authors: Ahmed I. Osman; Ahmed M. Elgarahy; Neha Mehta; Ala'a H. Al‐Muhtaseb; +2 Authors

    Les déchets de plastique et de biomasse posent un risque grave pour l'environnement ; ainsi, ici, nous avons mélangé des déchets de biomasse avec des déchets de bouteilles en plastique (PET) pour produire des matériaux composites de charbon pour produire un composite de charbon magnétique pour une meilleure séparation lorsqu'il est utilisé dans des applications de traitement de l'eau. Cette étude a également calculé les impacts environnementaux du cycle de vie de la préparation du matériau adsorbant pour 11 catégories d'indicateurs différentes. Pour 1 unité fonctionnelle (1 kg de feuilles de marc comme matière première), l'épuisement abiotique des combustibles fossiles et le potentiel de réchauffement climatique ont été quantifiés à 7,17 MJ et 0,63 kg d'équivalent CO2 pour la production de matériaux composites à base de charbon magnétique. Le matériau composite de carbonisation magnétique (MPBC) a ensuite été utilisé pour éliminer le colorant violet cristallin de sa solution aqueuse selon divers paramètres opérationnels. Les théories statistiques de la cinétique et de l'isotherme ont montré que la sorption du colorant CV sur le MPBC était régie par des modèles de pseudo-seconde-ordre et de Langmuir, respectivement. L'évaluation quantitative de la capacité de sorption clarifie que le MPBC produit présentait une capacité admirable de 256,41 mg g-1. Pendant ce temps, la recyclabilité de 92,4 % de MPBC a été démontrée après 5 cycles d'adsorption/désorption. Les résultats de cette étude inspireront une production plus durable et plus rentable de sorbants magnétiques, y compris ceux dérivés de flux de déchets de plastique et de biomasse combinés. Los residuos plásticos y de biomasa representan un grave riesgo ambiental; por lo tanto, en este documento, mezclamos residuos de biomasa con residuos de botellas de plástico (PET) para producir materiales compuestos de carbón para producir un compuesto de carbón magnético para una mejor separación cuando se usa en aplicaciones de tratamiento de agua. Este estudio también calculó los impactos ambientales del ciclo de vida de la preparación de material adsorbente para 11 categorías de indicadores diferentes. Para 1 unidad funcional (1 kg de hojas de orujo como materia prima), el agotamiento abiótico de los combustibles fósiles y el potencial de calentamiento global se cuantificaron como 7,17 MJ y 0,63 kg de CO2 equivalente para la producción de materiales compuestos de carbón magnético. El material compuesto de carbón magnético (MPBC) se utilizó luego para eliminar el colorante violeta cristal de su solución acuosa bajo varios parámetros operativos. Las teorías estadísticas de cinética e isoterma mostraron que la sorción del colorante CV en MPBC estaba gobernada por modelos de pseudo-segundo orden y Langmuir, respectivamente. La evaluación cuantitativa de la capacidad de sorción aclara que el MPBC producido exhibió una capacidad admirable de 256.41 mg g-1. Mientras tanto, la reciclabilidad del 92.4% de MPBC se demostró después de 5 ciclos de adsorción/desorción. Los resultados de este estudio inspirarán una producción más sostenible y rentable de sorbentes magnéticos, incluidos los derivados de flujos combinados de residuos plásticos y de biomasa. Plastic and biomass waste pose a serious environmental risk; thus, herein, we mixed biomass waste with plastic bottle waste (PET) to produce char composite materials for producing a magnetic char composite for better separation when used in water treatment applications. This study also calculated the life cycle environmental impacts of the preparation of adsorbent material for 11 different indicator categories. For 1 functional unit (1 kg of pomace leaves as feedstock), abiotic depletion of fossil fuels and global warming potential were quantified as 7.17 MJ and 0.63 kg CO2 equiv for production of magnetic char composite materials. The magnetic char composite material (MPBC) was then used to remove crystal violet dye from its aqueous solution under various operational parameters. The kinetics and isotherm statistical theories showed that the sorption of CV dye onto MPBC was governed by pseudo-second-order, and Langmuir models, respectively. The quantitative assessment of sorption capacity clarifies that the produced MPBC exhibited an admirable ability of 256.41 mg g-1. Meanwhile, the recyclability of 92.4% of MPBC was demonstrated after 5 adsorption/desorption cycles. Findings from this study will inspire more sustainable and cost-effective production of magnetic sorbents, including those derived from combined plastic and biomass waste streams. تشكل نفايات البلاستيك والكتلة الحيوية خطرًا بيئيًا خطيرًا ؛ وبالتالي، هنا، قمنا بخلط نفايات الكتلة الحيوية مع نفايات الزجاجات البلاستيكية (PET) لإنتاج مواد مركبة من الفحم لإنتاج مركب فحم مغناطيسي لفصل أفضل عند استخدامه في تطبيقات معالجة المياه. كما حسبت هذه الدراسة التأثيرات البيئية لدورة الحياة لإعداد المواد الممتزة لـ 11 فئة مختلفة من المؤشرات. بالنسبة لوحدة وظيفية واحدة (1 كجم من أوراق الثفل كمادة وسيطة)، تم تحديد النضوب اللاأحيائي للوقود الأحفوري وإمكانات الاحترار العالمي على أنها 7.17 ميجا جول و 0.63 كجم من مكافئ ثاني أكسيد الكربون لإنتاج المواد المركبة للفحم المغناطيسي. ثم تم استخدام المادة المركبة للفحم المغناطيسي (MPBC) لإزالة الصبغة البنفسجية البلورية من محلولها المائي تحت معايير تشغيلية مختلفة. أظهرت النظريات الإحصائية للحركية والحرارة المتساوية أن امتصاص صبغة CV على MPBC كان محكومًا بنماذج زائفة من الدرجة الثانية، ونماذج Langmuir، على التوالي. يوضح التقييم الكمي لقدرة الامتصاص أن خلايا الدم البيضاء المنتجة أظهرت قدرة مثيرة للإعجاب تبلغ 256.41 ملغ غرام -1. وفي الوقت نفسه، تم إثبات قابلية إعادة تدوير 92.4 ٪ من حاوية الحاويات متعددة الأغراض بعد 5 دورات من الامتزاز/الامتزاز. ستلهم نتائج هذه الدراسة إنتاجًا أكثر استدامة وفعالية من حيث التكلفة للمواد الماصة المغناطيسية، بما في ذلك تلك المستمدة من تدفقات نفايات البلاستيك والكتلة الحيوية مجتمعة.

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    Authors: Ahmed I. Osman; Ahmed M. Elgarahy; Neha Mehta; Ala'a H. Al‐Muhtaseb; +2 Authors

    Les déchets de plastique et de biomasse posent un risque grave pour l'environnement ; ainsi, ici, nous avons mélangé des déchets de biomasse avec des déchets de bouteilles en plastique (PET) pour produire des matériaux composites de charbon pour produire un composite de charbon magnétique pour une meilleure séparation lorsqu'il est utilisé dans des applications de traitement de l'eau. Cette étude a également calculé les impacts environnementaux du cycle de vie de la préparation du matériau adsorbant pour 11 catégories d'indicateurs différentes. Pour 1 unité fonctionnelle (1 kg de feuilles de marc comme matière première), l'épuisement abiotique des combustibles fossiles et le potentiel de réchauffement climatique ont été quantifiés à 7,17 MJ et 0,63 kg d'équivalent CO2 pour la production de matériaux composites à base de charbon magnétique. Le matériau composite de carbonisation magnétique (MPBC) a ensuite été utilisé pour éliminer le colorant violet cristallin de sa solution aqueuse selon divers paramètres opérationnels. Les théories statistiques de la cinétique et de l'isotherme ont montré que la sorption du colorant CV sur le MPBC était régie par des modèles de pseudo-seconde-ordre et de Langmuir, respectivement. L'évaluation quantitative de la capacité de sorption clarifie que le MPBC produit présentait une capacité admirable de 256,41 mg g-1. Pendant ce temps, la recyclabilité de 92,4 % de MPBC a été démontrée après 5 cycles d'adsorption/désorption. Les résultats de cette étude inspireront une production plus durable et plus rentable de sorbants magnétiques, y compris ceux dérivés de flux de déchets de plastique et de biomasse combinés. Los residuos plásticos y de biomasa representan un grave riesgo ambiental; por lo tanto, en este documento, mezclamos residuos de biomasa con residuos de botellas de plástico (PET) para producir materiales compuestos de carbón para producir un compuesto de carbón magnético para una mejor separación cuando se usa en aplicaciones de tratamiento de agua. Este estudio también calculó los impactos ambientales del ciclo de vida de la preparación de material adsorbente para 11 categorías de indicadores diferentes. Para 1 unidad funcional (1 kg de hojas de orujo como materia prima), el agotamiento abiótico de los combustibles fósiles y el potencial de calentamiento global se cuantificaron como 7,17 MJ y 0,63 kg de CO2 equivalente para la producción de materiales compuestos de carbón magnético. El material compuesto de carbón magnético (MPBC) se utilizó luego para eliminar el colorante violeta cristal de su solución acuosa bajo varios parámetros operativos. Las teorías estadísticas de cinética e isoterma mostraron que la sorción del colorante CV en MPBC estaba gobernada por modelos de pseudo-segundo orden y Langmuir, respectivamente. La evaluación cuantitativa de la capacidad de sorción aclara que el MPBC producido exhibió una capacidad admirable de 256.41 mg g-1. Mientras tanto, la reciclabilidad del 92.4% de MPBC se demostró después de 5 ciclos de adsorción/desorción. Los resultados de este estudio inspirarán una producción más sostenible y rentable de sorbentes magnéticos, incluidos los derivados de flujos combinados de residuos plásticos y de biomasa. Plastic and biomass waste pose a serious environmental risk; thus, herein, we mixed biomass waste with plastic bottle waste (PET) to produce char composite materials for producing a magnetic char composite for better separation when used in water treatment applications. This study also calculated the life cycle environmental impacts of the preparation of adsorbent material for 11 different indicator categories. For 1 functional unit (1 kg of pomace leaves as feedstock), abiotic depletion of fossil fuels and global warming potential were quantified as 7.17 MJ and 0.63 kg CO2 equiv for production of magnetic char composite materials. The magnetic char composite material (MPBC) was then used to remove crystal violet dye from its aqueous solution under various operational parameters. The kinetics and isotherm statistical theories showed that the sorption of CV dye onto MPBC was governed by pseudo-second-order, and Langmuir models, respectively. The quantitative assessment of sorption capacity clarifies that the produced MPBC exhibited an admirable ability of 256.41 mg g-1. Meanwhile, the recyclability of 92.4% of MPBC was demonstrated after 5 adsorption/desorption cycles. Findings from this study will inspire more sustainable and cost-effective production of magnetic sorbents, including those derived from combined plastic and biomass waste streams. تشكل نفايات البلاستيك والكتلة الحيوية خطرًا بيئيًا خطيرًا ؛ وبالتالي، هنا، قمنا بخلط نفايات الكتلة الحيوية مع نفايات الزجاجات البلاستيكية (PET) لإنتاج مواد مركبة من الفحم لإنتاج مركب فحم مغناطيسي لفصل أفضل عند استخدامه في تطبيقات معالجة المياه. كما حسبت هذه الدراسة التأثيرات البيئية لدورة الحياة لإعداد المواد الممتزة لـ 11 فئة مختلفة من المؤشرات. بالنسبة لوحدة وظيفية واحدة (1 كجم من أوراق الثفل كمادة وسيطة)، تم تحديد النضوب اللاأحيائي للوقود الأحفوري وإمكانات الاحترار العالمي على أنها 7.17 ميجا جول و 0.63 كجم من مكافئ ثاني أكسيد الكربون لإنتاج المواد المركبة للفحم المغناطيسي. ثم تم استخدام المادة المركبة للفحم المغناطيسي (MPBC) لإزالة الصبغة البنفسجية البلورية من محلولها المائي تحت معايير تشغيلية مختلفة. أظهرت النظريات الإحصائية للحركية والحرارة المتساوية أن امتصاص صبغة CV على MPBC كان محكومًا بنماذج زائفة من الدرجة الثانية، ونماذج Langmuir، على التوالي. يوضح التقييم الكمي لقدرة الامتصاص أن خلايا الدم البيضاء المنتجة أظهرت قدرة مثيرة للإعجاب تبلغ 256.41 ملغ غرام -1. وفي الوقت نفسه، تم إثبات قابلية إعادة تدوير 92.4 ٪ من حاوية الحاويات متعددة الأغراض بعد 5 دورات من الامتزاز/الامتزاز. ستلهم نتائج هذه الدراسة إنتاجًا أكثر استدامة وفعالية من حيث التكلفة للمواد الماصة المغناطيسية، بما في ذلك تلك المستمدة من تدفقات نفايات البلاستيك والكتلة الحيوية مجتمعة.

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    ACS Sustainable Chemistry & Engineering
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    Authors: Ahmed I. Osman; Mohamed Farghali; Ikko Ihara; Ahmed M. Elgarahy; +10 Authors

    AbstractClimate change issues are calling for advanced methods to produce materials and fuels in a carbon–neutral and circular way. For instance, biomass pyrolysis has been intensely investigated during the last years. Here we review the pyrolysis of algal and lignocellulosic biomass with focus on pyrolysis products and mechanisms, oil upgrading, combining pyrolysis and anaerobic digestion, economy, and life cycle assessment. Products include oil, gas, and biochar. Upgrading techniques comprise hot vapor filtration, solvent addition, emulsification, esterification and transesterification, hydrotreatment, steam reforming, and the use of supercritical fluids. We examined the economic viability in terms of profitability, internal rate of return, return on investment, carbon removal service, product pricing, and net present value. We also reviewed 20 recent studies of life cycle assessment. We found that the pyrolysis method highly influenced product yield, ranging from 9.07 to 40.59% for oil, from 10.1 to 41.25% for biochar, and from 11.93 to 28.16% for syngas. Feedstock type, pyrolytic temperature, heating rate, and reaction retention time were the main factors controlling the distribution of pyrolysis products. Pyrolysis mechanisms include bond breaking, cracking, polymerization and re-polymerization, and fragmentation. Biochar from residual forestry could sequester 2.74 tons of carbon dioxide equivalent per ton biochar when applied to the soil and has thus the potential to remove 0.2–2.75 gigatons of atmospheric carbon dioxide annually. The generation of biochar and bio-oil from the pyrolysis process is estimated to be economically feasible.

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    Environmental Chemistry Letters
    Article . 2023 . Peer-reviewed
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      Environmental Chemistry Letters
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    Authors: Ahmed I. Osman; Mohamed Farghali; Ikko Ihara; Ahmed M. Elgarahy; +10 Authors

    AbstractClimate change issues are calling for advanced methods to produce materials and fuels in a carbon–neutral and circular way. For instance, biomass pyrolysis has been intensely investigated during the last years. Here we review the pyrolysis of algal and lignocellulosic biomass with focus on pyrolysis products and mechanisms, oil upgrading, combining pyrolysis and anaerobic digestion, economy, and life cycle assessment. Products include oil, gas, and biochar. Upgrading techniques comprise hot vapor filtration, solvent addition, emulsification, esterification and transesterification, hydrotreatment, steam reforming, and the use of supercritical fluids. We examined the economic viability in terms of profitability, internal rate of return, return on investment, carbon removal service, product pricing, and net present value. We also reviewed 20 recent studies of life cycle assessment. We found that the pyrolysis method highly influenced product yield, ranging from 9.07 to 40.59% for oil, from 10.1 to 41.25% for biochar, and from 11.93 to 28.16% for syngas. Feedstock type, pyrolytic temperature, heating rate, and reaction retention time were the main factors controlling the distribution of pyrolysis products. Pyrolysis mechanisms include bond breaking, cracking, polymerization and re-polymerization, and fragmentation. Biochar from residual forestry could sequester 2.74 tons of carbon dioxide equivalent per ton biochar when applied to the soil and has thus the potential to remove 0.2–2.75 gigatons of atmospheric carbon dioxide annually. The generation of biochar and bio-oil from the pyrolysis process is estimated to be economically feasible.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ Environmental Chemis...arrow_drop_down
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    Environmental Chemistry Letters
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      Environmental Chemistry Letters
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    Authors: Ahmed S. Abuzaid; Mohamed A. Abdel-Salam; Abeer F. Ahmad; Hala A. Fathy; +2 Authors

    Lack of active sorption sites in sandy soils renders metals added by irrigation water more labile and increases their soil-to-plant transfer. Thus, this study investigated the long-term impacts of irrigation using sewage effluents and contaminated groundwater on metal accumulations in TypicTorripsamment soils, and edible parts of food crops. Nine sites in El-Gabal El-Asfar farm, south-eastern to the Nile Delta of Egypt, were selected. At each site, irrigation water, soil (0–30 cm), and the crop’s edible part were sampled in triplicates and analyzed for Mn, Pb, and Zn. Results revealed significant (p < 0.05) differences in metal concentrations among water sources. Thus, constant irrigation caused significant spatial variations in total and available metal contents in soils. Total contents of Pb (in four sites) and Zn (in all sites) exceed the lithosphere range, while the available contents of the three metals exceeded the safe limits in all soils. The index of geo-accumulation indicated no Mn pollution but showed elevated pollution risks for Pb and Zn. The three metals showed high availability ratios, proving the effect of light soil texture. The multivariate statistical analysis indicated that Mn and Zn had similar geochemical behaviors in soils. Metal contents in all crop’s edible parts surpassed the safe limits. The bioaccumulation factor (BAF) was less than 1.0 for Mn and Zn but higher than 1.0 for Pb. The highest BAFs occurred in cabbage leaves, indicating the phytoextraction potential of this species. Sufficient water treatment and proper remediation techniques are recommended to alleviate metal accumulation in food crops and their transfer via the food chain.

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    Sustainability
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    Authors: Ahmed S. Abuzaid; Mohamed A. Abdel-Salam; Abeer F. Ahmad; Hala A. Fathy; +2 Authors

    Lack of active sorption sites in sandy soils renders metals added by irrigation water more labile and increases their soil-to-plant transfer. Thus, this study investigated the long-term impacts of irrigation using sewage effluents and contaminated groundwater on metal accumulations in TypicTorripsamment soils, and edible parts of food crops. Nine sites in El-Gabal El-Asfar farm, south-eastern to the Nile Delta of Egypt, were selected. At each site, irrigation water, soil (0–30 cm), and the crop’s edible part were sampled in triplicates and analyzed for Mn, Pb, and Zn. Results revealed significant (p < 0.05) differences in metal concentrations among water sources. Thus, constant irrigation caused significant spatial variations in total and available metal contents in soils. Total contents of Pb (in four sites) and Zn (in all sites) exceed the lithosphere range, while the available contents of the three metals exceeded the safe limits in all soils. The index of geo-accumulation indicated no Mn pollution but showed elevated pollution risks for Pb and Zn. The three metals showed high availability ratios, proving the effect of light soil texture. The multivariate statistical analysis indicated that Mn and Zn had similar geochemical behaviors in soils. Metal contents in all crop’s edible parts surpassed the safe limits. The bioaccumulation factor (BAF) was less than 1.0 for Mn and Zn but higher than 1.0 for Pb. The highest BAFs occurred in cabbage leaves, indicating the phytoextraction potential of this species. Sufficient water treatment and proper remediation techniques are recommended to alleviate metal accumulation in food crops and their transfer via the food chain.

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    Authors: Ahmed I. Osman; Jacob Blewitt; Jehad K. Abu-Dahrieh; Charlie Farrell; +3 Authors

    AbstractHerein, activated carbon (AC) and carbon nanotubes (CNTs) were synthesised from potato peel waste (PPW). Different ACs were synthesised via two activation steps: firstly, with phosphoric acid (designated PP) and then using potassium hydroxide (designated PK). The AC produced after the two activation steps showed a surface area as high as 833 m2 g−1 with a pore volume of 0.44 cm3 g−1, where the raw material of PPW showed a surface area < 4 m2 g−1. This can help aid and facilitate the concept of the circular economy by effectively up-cycling and valorising waste lignocellulosic biomass such as potato peel waste to high surface area AC and subsequently, multi-walled carbon nanotubes (MWCNTs). Consequently, MWCNTs were prepared from the produced AC by mixing it with the nitrogen-based material melamine and iron precursor, iron (III) oxalate hexahydrate. This produced hydrophilic multi-wall carbon nanotubes (MWCNTs) with a water contact angle of θ = 14.97 °. Both AC and CNT materials were used in heavy metal removal (HMR) where the maximum lead absorption was observed for sample PK with a 84% removal capacity after the first hour of testing. This result signifies that the synthesis of these up-cycled materials can have applications in areas such as wastewater treatment or other conventional AC/CNT end uses with a rapid cycle time in a two-fold approach to improve the eco-friendly synthesis of such value-added products and the circular economy from a significant waste stream, i.e., PPW.

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    Environmental Science and Pollution Research
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    Authors: Ahmed I. Osman; Jacob Blewitt; Jehad K. Abu-Dahrieh; Charlie Farrell; +3 Authors

    AbstractHerein, activated carbon (AC) and carbon nanotubes (CNTs) were synthesised from potato peel waste (PPW). Different ACs were synthesised via two activation steps: firstly, with phosphoric acid (designated PP) and then using potassium hydroxide (designated PK). The AC produced after the two activation steps showed a surface area as high as 833 m2 g−1 with a pore volume of 0.44 cm3 g−1, where the raw material of PPW showed a surface area < 4 m2 g−1. This can help aid and facilitate the concept of the circular economy by effectively up-cycling and valorising waste lignocellulosic biomass such as potato peel waste to high surface area AC and subsequently, multi-walled carbon nanotubes (MWCNTs). Consequently, MWCNTs were prepared from the produced AC by mixing it with the nitrogen-based material melamine and iron precursor, iron (III) oxalate hexahydrate. This produced hydrophilic multi-wall carbon nanotubes (MWCNTs) with a water contact angle of θ = 14.97 °. Both AC and CNT materials were used in heavy metal removal (HMR) where the maximum lead absorption was observed for sample PK with a 84% removal capacity after the first hour of testing. This result signifies that the synthesis of these up-cycled materials can have applications in areas such as wastewater treatment or other conventional AC/CNT end uses with a rapid cycle time in a two-fold approach to improve the eco-friendly synthesis of such value-added products and the circular economy from a significant waste stream, i.e., PPW.

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