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Biosorption of Microelements bySpirulina: Towards Technology of Mineral Feed Supplements

Surface characterization and metal ion adsorption properties ofSpirulinasp. andSpirulina maximawere verified by various instrumental techniques. FTIR spectroscopy and potentiometric titration were used for qualitative and quantitative determination of metal ion-binding groups. Comparative FTIR spectra of natural and Cu(II)-treated biomass proved involvement of both phosphoryl and sulfone groups in metal ions sorption. The potentiometric titration data analysis provided the best fit with the model assuming the presence of three types of surface functional groups and the carboxyl group as the major binding site. The mechanism of metal ions biosorption was investigated by comparing the results from multielemental analyses by ICP-OES and SEM-EDX. Biosorption of Cu(II), Mn(II), Zn(II), and Co(II) ions by lyophilizedSpirulinasp. was performed to determine the metal affinity relationships for single- and multicomponent systems. Obtained results showed the replacement of naturally bound ions: Na(I), K(I), or Ca(II) with sorbed metal ions in a descending order of Mn(II) > Cu(II) > Zn(II) > Co(II) for single- and Cu(II) > Mn(II) > Co(II) > Zn(II) for multicomponent systems, respectively. Surface elemental composition of natural and metal-loaded material was determined both by ICP-OES and SEM-EDX analysis, showing relatively high value of correlation coefficient between the concentration of Na(I) ions in algal biomass.
Ions, Technology, Minerals, Surface Properties, T, Science, Q, R, Dietary Supplements, Spectroscopy, Fourier Transform Infrared, Spirulina, Medicine, Humans, Adsorption, Biomass, Copper, Research Article
Ions, Technology, Minerals, Surface Properties, T, Science, Q, R, Dietary Supplements, Spectroscopy, Fourier Transform Infrared, Spirulina, Medicine, Humans, Adsorption, Biomass, Copper, Research Article
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