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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: Marín, David; Posadas, Esther; Cano, Patricia; Pérez, Víctor; +2 Authors

    {"references": ["Alc\u00e1ntara et al (2015), Bahr et al (2014), Lebrero et al (2016), Meier et al (2015)", "Mu\u00f1oz et al (2015), Posadas et al (2015), Posadas et al (2016), Posadas et al (2017)", "Rodero et al (2018), Sander (2015), Serejo et al (2015), Toledo-Cervantes et al (2016)", "Toledo-cervantes et al (2017a), Toledo-Cervantes et al (2017b)"]} This is the dataset used for the publication of the journal article title “Influence of the seasonal variation of environmental conditions on biogas upgrading in an outdoors pilot scale high rate algal pond”. In this dataset there is all the information collected in the experimentation process.

    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/ ZENODOarrow_drop_down
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    ZENODO
    Dataset . 2018
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2018
    License: CC BY
    Data sources: ZENODO
    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/
    ZENODO
    Dataset . 2018
    License: CC BY
    Data sources: Datacite
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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/ ZENODOarrow_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/
      ZENODO
      Dataset . 2018
      License: CC BY
      Data sources: Datacite
      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/
      ZENODO
      Dataset . 2018
      License: CC BY
      Data sources: ZENODO
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      ZENODO
      Dataset . 2018
      License: CC BY
      Data sources: Datacite
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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: Arranz, Beatriz; Núñez Peiró, Miguel; Rodriguez Pabon, Erwin Fernando;

    Campaña de monitorizacion climatica de la zona de estudio y del cañón urbano en la ciudad de Madrid llevada a cabo por el equipo de MonitorMAD como parte del proyecto MateMAD. La campaña de monitorizacion octubre 2023 - julio 2024 tiene dos componentes: Monitorizacion del clima urbano en la zona de estudio Monitorizacion del cañón urbano frente a las viviendas identificadas con vulnerabilidad energetica Los aspectos climatologicos que se monitorizan son temperatura, humedad, radiación, velocidad del viento y temperatura de globo. Además, la instalación de los equipos siguio las recomendaciones de la World Meteorological Organization WMO. En la campaña de medición se usaron dos metodologias: Ubicación Marca Referencia Tipo de sensor ID interno Frecuencia de medición Fecha de inicio Postes TandD Corporation RTR503BL* Temperatura y humedad 03DE, 05O5, 06ORS, 07ORS, 09SC, 10SC 10 minutos 04/10/2024 TandD Corporation + ASF/E RTR-505BL Temperatura de globo 2TG, 3TG 10 minutos 04/10/2024 TandD Corporation + Anemometro RTR-505BL+AIM-3010 + RK100 01 Anemometro 02ANEM, 01ANEM, 09SCARA 5 minutos 04/10/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Piranómetro 02RAD, 09SCARR 5 minutos 04/10/2024 Cañón urbano NetAtmo Temperatura y humedad** CSMR94BT_Nae, CSMR92BT_Nae Variable (5 / 10 / 15 minutos) 09/02/2024 CI72CT_Nae, CI71AT_Nae Variable (5 / 10 / 15 minutos) 20/03/2024 CLM40t_NAe, AMI642Dt_NAe Variable (5 / 10 / 15 minutos) 17/05/2024 Anemometro CSMR94Bva_Nae Variable (5 / 10 / 15 minutos) 09/02/2024 CI72Cva_Nae, Variable (5 / 10 / 15 minutos) 20/03/2024 TandD Corporation RTR503BL Temperatura y humedad* VEC4B 10 minutos 09/02/2024 CLIM71AT, CLIM72CT 10 minutos 20/03/2024 AMI642Dt 10 minutos 17/05/2024 TandD Corporation + ASF/E RTR-505BL Temperatura de globo CIM72CTG 10 minutos 20/03/2024 TandD Corporation + Anemometro RTR-505BL+AIM-3010 + RK100 01 Anemometro 02DEA, CLIM72CA 5 minutos 20/03/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Piranómetro CLIM72CR, 01RAD 5 minutos 20/03/2024 *Los medidores de temperatura y humedad se ha protegido por medio de una carcaza color blanco, aislada y autoventilada por medio de un extractor con funcionamiento fotovoltaico. **Los medidores Netatmo exterior se han protegido de la radición solar directa por medio de una malla de plastico color blanco. ***Los archivos climaticos llamados "_V2" corresponden a sensores que han sido reubicados dentro de la misma zona, debido a cambios de las farolas urbanas del ayuntamiento. Fuente de base cartografíca: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Recuperado 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Recuperado 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx Climate monitoring campaign of the urban canyon in the city of Madrid carried out by the MonitorMAD team as part of the activities of the MateMAD project. The monitoring campaign starts at October 2023- July 2024 has two components: Monitoring of the urban climate in the study area. Monitoring of the urban canyon in the buildings identified with energy vulnerability indicators. The Climatological features to be monitored are temperature, humidity, radiation, wind speed and balloon temperature. In its installation, the equipment follows the recommendations of the World Meteorological Organization WMO. Two methodologies were used in the measurement campaign: Location Manufacturer Reference Type of sensor ID code Measuring frequency Start date Streetlight TandD Corporation RTR503BL Temperature and humidity 03DE, 05O5, 06ORS, 07ORS, 09SC, 10SC 10 minutes 04/10/2024 TandD Corporation + ASF/E RTR-505BL Globe temperature 2TG, 3TG 10 minutes 04/10/2024 TandD Corporation + Anemometro RTR-505BL+AIM-3010 + RK100 01 Anemometer 02ANEM, 01ANEM, 09SCARA 5 minutes 04/10/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Pyranometer 02RAD, 09SCARR 5 minutes 04/10/2024 Urban Canyon NetAtmo Temperature and humidity CSMR94BT_Nae, CSMR92BT_Nae, Variable (5 / 10 / 15 minutes) 09/02/2024 CI72CT_Nae, CI71AT_Nae, Variable (5 / 10 / 15 minutes) 20/03/2024 CLM40t_NAe,AMI642Dt_NAe Variable (5 / 10 / 15 minutes) 17/05/2024 Anemometer CSMR94Bva_Nae Variable (5 / 10 / 15 minutes) 09/02/2024 CI72Cva_Nae, Variable (5 / 10 / 15 minutes) 20/03/2024 TandD Corporation RTR503BL Temperature and humidity VEC4B 10 minutes 09/02/2024 CLIM71AT, CLIM72CT 10 minutes 20/03/2024 AMI642Dt 10 minutes 17/05/2024 TandD Corporation + ASF/E RTR-505BL Globe temperature CIM72CTG, AMI642Dg 10 minutes 20/03/2024 TandD Corporation + Anemometer RTR-505BL+AIM-3010 + RK100 01 Anemometer 02DEA, CLIM72CA 5 minutes 20/03/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Pyranometer CLIM72CR, 01RAD 5 minutes 20/03/2024 *The temperature and humidity sensors have been protected using a white-colored casing, insulated and self-ventilated by a photovoltaic-powered extractor. **The Netatmo outdoor meters have been shielded from direct solar radiation using a white plastic net. ***Some sensors labeled with '_V2' were relocated near their original positions due to the replacement of urban streetlights by the mayor's office. The new locations can be found on the map in the attachments. Source of cartographic base: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Downloaded 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Downloaded 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx

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    ZENODO
    Dataset . 2024
    License: CC BY SA
    Data sources: ZENODO
    ZENODO
    Dataset . 2023
    License: CC BY SA
    Data sources: Datacite
    ZENODO
    Dataset . 2023
    License: CC BY SA
    Data sources: Datacite
    ZENODO
    Dataset . 2024
    License: CC BY SA
    Data sources: Datacite
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      ZENODO
      Dataset . 2024
      License: CC BY SA
      Data sources: ZENODO
      ZENODO
      Dataset . 2023
      License: CC BY SA
      Data sources: Datacite
      ZENODO
      Dataset . 2023
      License: CC BY SA
      Data sources: Datacite
      ZENODO
      Dataset . 2024
      License: CC BY SA
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    Authors: A.Datas; C. del Cañizo; A. Ramos; A. B. Cristobal; +16 Authors

    AMADEUS es un proyecto europeo que investiga materiales y dispositivos de estado sólido para almacenar energía a muy alta temperatura. Usando aleados de silicio como materiales de cambio de fase se alcanzan calores latentes superiores a 1000 kWh/m3, propiciando la obtención de altísimas densidades energéticas. Dichos aleados suponen temperaturas de almacenamiento por encima de los 1000 ºC, muy por encima de las de los sistemas actuales de acumulación térmica. El artículo describe las actividades del proyecto y sus primeros resultados, explicando los principales retos de este nuevo sistema que combina la acumulación de energía en forma de calor en silicio fundido con dispositivos de estado sólido termiónicos y termofotovoltaicos para la posterior conversión en electricidad. AMADEUS is a H2020 project that researches on materials and solid-state devices for very high temperature energy storage and conversion. By exploring silicon-based alloys as new phase change materials (PCMs), latent heat higher than 1000 kWh/m3 is achievable, which implies a very high energy density. In addition, silicon-based PCMs lead to storage temperatures well beyond 1000 ºC, well beyond that of current state-of-the-art thermal energy storage (TES). This paper describes the project R&D activities and first results, and comments on challenges towards a new kind of systems combining latent heat energy storage in molten silicon with thermionic and thermophotovoltaic solid state heat-to-power conversion.

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    ZENODO
    Conference object . 2019
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Other literature type . 2019
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    Data sources: ZENODO
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    ZENODO
    Conference object . 2019
    License: CC BY
    Data sources: Datacite
    image/svg+xml Jakob Voss, based on art designer at PLoS, modified by Wikipedia users Nina and Beao Closed Access logo, derived from PLoS Open Access logo. This version with transparent background. http://commons.wikimedia.org/wiki/File:Closed_Access_logo_transparent.svg Jakob Voss, based on art designer at PLoS, modified by Wikipedia users Nina and Beao
    CNR ExploRA
    Conference object . 2018
    Data sources: CNR ExploRA
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      Conference object . 2019
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      Other literature type . 2019
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      Conference object . 2019
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      Conference object . 2018
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    Authors: Barbosa Gómez, Luisa; Revuelta, Gema;

    - ENGLISH VERSION BELOW - Además del manejo de datos y publicaciones, la ciencia abierta incluye dentro de su definición la apertura a la sociedad. Por eso, quienes nos dedicamos a la comunicación de la ciencia debemos conocer este movimiento y relacionarnos con su implementación y popularización. En este taller, revisaremos una guía recientemente publicada para aplicar la ciencia abierta en todo su esplendor. Los y las participantes trabajarán en pequeño organizados por su área principal de interés, y propondrán sugerencias, cambios o adiciones a esta guía. Además, se desarrollará de forma colaborativa un capítulo sobre el papel de la comunicación científica en la ciencia abierta. ---EN--- In addition to data and publications' management, open science includes within its definition openness to society. For this reason, those of us who are dedicated to the communication of science must know this movement and relate to its implementation and popularization. In this workshop, we will review a recently published guide to applying open science in all its meanings. Participants will work in a small group organized by their main area of interest, and will propose suggestions, changes or additions to this guide. In addition, a chapter on the role of scientific communication in open science will be developed collaboratively.

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    ZENODO
    Presentation . 2020
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    ZENODO
    Presentation . 2020
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Other literature type . 2020
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    Data sources: ZENODO
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      ZENODO
      Presentation . 2020
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    Authors: Castro, Jose Esteban; Sauri Pujol, David; Sanzana Calvet, Martin; Tagle-Zamora, Daniel; +4 Authors

    In this issue we address the practice of rainwater harvesting in different settings, presenting experiences from Argentina, Brazil, Chile, Mexico, and Paraguay. Some of the papers were originally presented at the IX International Meeting of the WATERLAT-GOBACIT Network“Water, Rights, and Utopias: priorities in the process of democratization of water politics“, João Pessoa, Paraiba, Brazil, 3-7 September 2018. Article 1 was authored by David Sauri, from the Autonomous University of Barcelona, Spain, co-editor of this issue. The article provides an overall introduction to the topic of rainwater harvesting. Article 2, by Martin Sanzana Calvet, Institute of Strategic Studies for Human Development (INEDH), Concepción, Bio-Bio, Chile, addresses the practice of fog catching in arid and semi arid regions of Chile. In Article 3, Daniel Tagle-Zamora, University of Guanajuato, Leon, Guanajuato, Mexico, presents findings from research on the implementation of public policies oriented at the provision of rainwater catchment technologies, mostly for domestic use ,in several municipalities of the semi arid State of Guanajuato, Mexico. Article 4 was co-authored by Roberto de Sousa Miranda, Federal University of the interior of Pernambuco and Federal University of Campina Grande, Paraiba, Brazil, and Laiany Tassila Ferreira, Federal Rural University of Pernambuco, Brazil.The article discusses the implementation of a national plan to provide rainwater cisterns in the semi arid region of North eastern Brazil, with emphasis on the experience of the State of Paraiba. Finally, Article 5, by Ana Maria Attias Sole and Ricardo Lombardo Lopez, from the North-eastern National University, Resistencia, Chaco, Argentina, provides an overview of the historic legacy of water practices and technologies inherited fromthe“syncretism”between indigenous communities (Tupi-Guarani), and the Jesuit territorial expansion that took place between the early seventeenth and the mid eighteenth centuries in a large region of South America encompassing parts of Argentina, Bolivia, Brazil, Paraguay and Uruguay. The article focuses mainly on examples from Argentina, Brazil, and Paraguay, and provides insights into the significance of historical-cultural research in the production of knowledge about rainwater technologies and the associated culture and practices, which also contributes to our network’s Thematic Area 7, Water-related Art, Communication, Culture, and Education.

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    Authors: Olcina, Jorge; Morote Seguido, Álvaro Francisco;

    El siglo XXI es el siglo de la sostenibilidad ambiental y de la lucha contra el cambio climático. El cambio climático va a condicionar políticas públicas y acciones privadas en todo el mundo para alcanzar el objetivo de reducción de emisiones establecidos en los acuerdos internacionales (Kyoto, París). El objetivo de este trabajo es llevar a cabo una revisión de los efectos ya constatados del cambio climático en la región mediterránea, así como las medidas de adaptación y mitigación a corto-medio plazo para hacer frente al calentamiento global, como son la adaptación de los espacios urbanos (escala local), y la mejora de la enseñanza sobre este fenómeno. Según la Agenda 2030, y concretamente los Objetivos de Desarrollo Sostenible, el nº13 (“Acción por el clima”), establece dos acciones principales que los países deben culminar en 2030: la aprobación de leyes y planes de mitigación y adaptación, y la puesta en marcha de programas educativos. Finisterra, Vol. 58 N.º 122 (AOP) (2023)

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    https://dx.doi.org/10.18055/fi...
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    Authors: Angel GARCÍA LANDA, José;

    Spanish abstract: Unas notas sobre el final del libro 'El lugar del hombre en el cosmos' de Fred Spier, sobre la sostenibilidad de la actual comunicación globalizada. La Gran Historia sitúa al ser humano en el contexto de la evolución cósmica y de la ecología de los recursos. Vivimos hoy en la Era de los Combustibles Fósiles. Con esta energía, la globalización se acelera. Las estructuras económicas, y por ende las políticas, cabalgan a lomos de combustibles fósiles, y sobre esta economía descansa la red de comunicaciones global que tiende a creer que está autosustentada y a ignorar esta dependencia. __________________________________________________________________________________ English abstract: "Globalization and Sustainability" — Some notes on the end of Fred Spier's 'Big HIstory and the Future of Humanity', with regard to the sustainability of present-day globalized communications. Big History contextualizes humanity within the context of cosmic evolution and the ecology of resources. Today we live in the Age of Fossil Fuels—which fuel accelerated globalization. Economic structures, and political ones likewise, ride on the availability of fossil fuels, and so does the present-day network of global communications, which tends to forget this dependency and rests on an illusion of self-sustainability.

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    Authors: Paul Isbell;

    Sweeping changes are beginning to transform energy scenarios around the world. The gas revolution, a renaissance in petroleum technology and exploration, and a chaotic but powerful movement toward the goal of low-carbon economies are three of the principal energy trends currently interacting with structural changes in the geo-economics of the Atlantic world to present new perspectives and opportunitiesfor the diverse actors in the ‘Atlantic Basin’. This article explores how changes in the energy landscape are contributing to a reassessment of the strategic horizon. The potential impacts of the shale revolution, deep-offshore oil, biofuels and other modern renewable energies on the geopolitics of the Atlantic Basin will be assessed, and the hypothesis that an Atlantic Basin energy system is now taking shape will be evaluated, along with an analysis of anticipated impacts.

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  • Authors: Mayoral Gastón, María del Carmen; Gimeno, M. P.; Andrés Gimeno, José Manuel; Díez, Luis Ignacio;

    [ES] La oxicombustión de combustibles sólidos es una de las alternativas tecnológicas más relevantes destinadas a conseguir la captura de CO2 en grandes plantas de generación. Si el proceso de oxicombustión se lleva a cabo en un reactor de lecho fluido, las posibilidades de aplicación se amplían a combustibles de bajo rango o residuos difícilmente aprovechables en condiciones de combustión en polvo, con la ventaja añadida del control de otras emisiones gaseosas (NOx, SOx). Y si adicionalmente se añade biomasa residual como parte de la mezcla aportada al reactor, el balance de emisiones de CO2 puede llegar a ser negativo. En la actualidad existen diferentes iniciativas tanto nacionales como internacionales de investigación en el campo de la oxicombustión, a pequeña escala de laboratorio, en plantas piloto y en tamaños semicomerciales, pero preferentemente centradas en sistemas de combustible pulverizado. También se desarrolla investigación en instalaciones de oxicombustión en lecho fluido, y dentro de ellos la caracterización de los procesos de ensuciamiento y corrosión asociados a la deposición de cenizas es un tema completamente novedoso. Este aspecto si que ha sido tratado ampliamente cuando se utiliza biomasa como combustible, la investigación se ha desarrollado convencionalmente para combustión con aire y no para las condiciones especiales de oxicombustión. La presente contribución pretende ofrecer una visión general y divulgativa sobre el estudio de los retos químicos que los materiales estructurales de las calderas han de sufrir en la futura aplicación comercial de la tecnología de oxicombustión de carbón y biomasa. [EN] Oxy-firing of solid fuels is one of the most relevant technological alternatives aiming at the CO2 capture in large-scale power plants. If oxy-firing is carried out in a fluidized bed reactor, the possibilities for application are extended to low-rank coals, difficult wastes, or biomass. The oxy-co-combustion of coal and biomass in circulating fluidized bed (CFB) reactors would result in a negative balance for the CO2 emissions. Several on-going national and international initiatives are focused in the research of oxyfuel- related issues, covering lab-scale plants, pilot plants and semicommercial units for pulverized fuel combustion. In particular, the field of ash fouling and corrosion under oxy-cofiring in fluidized beds remains almost completely open. Although there are available works in relation to the control of deposition rates in fluidized bed units, especially when biomass is the fuel, they have been developed under conventional combustion with air but not for the particular conditions occurring with CFB oxy-firing. The aim of the present work is to introduce an overview about the chemical challenges that oxycofiring implies over metal exchanger surfaces as well as over low-cement ceramic protection of combustor sidewalls, for a future commercial application of the technology. Este trabajo ha sido financiado por el Ministerio de Economía y Competitividad (Proyectos ENE2012-39114-C02-01 y -02). Peer reviewed

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    Authors: Arranz Arranz, Beatriz; Núñez Peiró, Miguel; Rodriguez Pabon, Erwin Fernando;

    Recolección de datos climaticos (temperatura y humedad) en barrios identificados con indices de vulnerabilidad en el contexto del proyecto MateMAD. Los datos han sido recolectados por el equipo MonitorMAD de la ETSAM mediante la instalación de sensores fijos en postes de alumbrado publico en la ciudad de Madrid. Los barrios monitorizados son: Centro Delicias - Palos de la frontera - Legazpi Orcasitas San Cristobal San Diego Orcasur La campaña de monitorización se llevo a cabo desde agosto 2022 hasta octubre de 2023 y la instalación de los equipos siguio las recomendaciones de la World Meteorological Organization WMO. Los sensores de medición son de TandD Corporation de referencia RTR503BL. Debido a la exposición a condiciones climaticas exteriores el sensor se ha protegido por medio de una carcaza aislada y autoventilada por medio de un extractor con funcionamiento fotovoltaico. El registro de los datos climaticos se configura cada 10 minutos y los datos son recolectados mensualmente, a su vez, los datos se han agrupado por sensor en una hoja de cáculo. La temperatura se ha recolectado en grados centigrados (precisión de +-0,3ºC) y la humedad relativa en % (precisión de +-5%HR at 25ºC, 50%HR). Fuente de base cartografíca: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Recuperado 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Recuperado 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx Data collection (temperature and humidity) in neighborhoods identified with vulnerability indicators in the context of the MateMAD project. The data has been collected by MonitorMAD team (UPM) through the installation of fixed sensors on streetlight poles in the city of Madrid. The monitored neighborhoods are: - Centro- Delicias - Palos de la Frontera - Legazpi- Orcasitas- San Cristóbal- San Diego- Orcasur The monitoring campaign took place from August 2022 to October 2023 and the equipment installation follows the recommendations of World Meteorological Organization WMO. The equipments used for monitoring are from TandD Corporation, model RTR503BL. Due to exposure to outdoor conditions, the sensor has been protected by an insulated cade and self-ventilated through a photovoltaic-powered extractor. Weather data logging is programmed every 10 minutes, and the data is collected monthly. Furthermore, the data has been grouped by sensor reference. The temperature has been collected in degrees Celsius (accuracy ±0.3°C), and the relative humidity in percentage (accuracy ±5%RH at 25°C, 50%RH). Source of cartographic base: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Downloaded 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Downloaded 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx

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    ZENODO
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    ZENODO
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    ZENODO
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      ZENODO
      Dataset . 2024
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      ZENODO
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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: Marín, David; Posadas, Esther; Cano, Patricia; Pérez, Víctor; +2 Authors

    {"references": ["Alc\u00e1ntara et al (2015), Bahr et al (2014), Lebrero et al (2016), Meier et al (2015)", "Mu\u00f1oz et al (2015), Posadas et al (2015), Posadas et al (2016), Posadas et al (2017)", "Rodero et al (2018), Sander (2015), Serejo et al (2015), Toledo-Cervantes et al (2016)", "Toledo-cervantes et al (2017a), Toledo-Cervantes et al (2017b)"]} This is the dataset used for the publication of the journal article title “Influence of the seasonal variation of environmental conditions on biogas upgrading in an outdoors pilot scale high rate algal pond”. In this dataset there is all the information collected in the experimentation process.

    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/ ZENODOarrow_drop_down
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    ZENODO
    Dataset . 2018
    License: CC BY
    Data sources: Datacite
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    ZENODO
    Dataset . 2018
    License: CC BY
    Data sources: ZENODO
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    ZENODO
    Dataset . 2018
    License: CC BY
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      ZENODO
      Dataset . 2018
      License: CC BY
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      ZENODO
      Dataset . 2018
      License: CC BY
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      ZENODO
      Dataset . 2018
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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: Arranz, Beatriz; Núñez Peiró, Miguel; Rodriguez Pabon, Erwin Fernando;

    Campaña de monitorizacion climatica de la zona de estudio y del cañón urbano en la ciudad de Madrid llevada a cabo por el equipo de MonitorMAD como parte del proyecto MateMAD. La campaña de monitorizacion octubre 2023 - julio 2024 tiene dos componentes: Monitorizacion del clima urbano en la zona de estudio Monitorizacion del cañón urbano frente a las viviendas identificadas con vulnerabilidad energetica Los aspectos climatologicos que se monitorizan son temperatura, humedad, radiación, velocidad del viento y temperatura de globo. Además, la instalación de los equipos siguio las recomendaciones de la World Meteorological Organization WMO. En la campaña de medición se usaron dos metodologias: Ubicación Marca Referencia Tipo de sensor ID interno Frecuencia de medición Fecha de inicio Postes TandD Corporation RTR503BL* Temperatura y humedad 03DE, 05O5, 06ORS, 07ORS, 09SC, 10SC 10 minutos 04/10/2024 TandD Corporation + ASF/E RTR-505BL Temperatura de globo 2TG, 3TG 10 minutos 04/10/2024 TandD Corporation + Anemometro RTR-505BL+AIM-3010 + RK100 01 Anemometro 02ANEM, 01ANEM, 09SCARA 5 minutos 04/10/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Piranómetro 02RAD, 09SCARR 5 minutos 04/10/2024 Cañón urbano NetAtmo Temperatura y humedad** CSMR94BT_Nae, CSMR92BT_Nae Variable (5 / 10 / 15 minutos) 09/02/2024 CI72CT_Nae, CI71AT_Nae Variable (5 / 10 / 15 minutos) 20/03/2024 CLM40t_NAe, AMI642Dt_NAe Variable (5 / 10 / 15 minutos) 17/05/2024 Anemometro CSMR94Bva_Nae Variable (5 / 10 / 15 minutos) 09/02/2024 CI72Cva_Nae, Variable (5 / 10 / 15 minutos) 20/03/2024 TandD Corporation RTR503BL Temperatura y humedad* VEC4B 10 minutos 09/02/2024 CLIM71AT, CLIM72CT 10 minutos 20/03/2024 AMI642Dt 10 minutos 17/05/2024 TandD Corporation + ASF/E RTR-505BL Temperatura de globo CIM72CTG 10 minutos 20/03/2024 TandD Corporation + Anemometro RTR-505BL+AIM-3010 + RK100 01 Anemometro 02DEA, CLIM72CA 5 minutos 20/03/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Piranómetro CLIM72CR, 01RAD 5 minutos 20/03/2024 *Los medidores de temperatura y humedad se ha protegido por medio de una carcaza color blanco, aislada y autoventilada por medio de un extractor con funcionamiento fotovoltaico. **Los medidores Netatmo exterior se han protegido de la radición solar directa por medio de una malla de plastico color blanco. ***Los archivos climaticos llamados "_V2" corresponden a sensores que han sido reubicados dentro de la misma zona, debido a cambios de las farolas urbanas del ayuntamiento. Fuente de base cartografíca: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Recuperado 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Recuperado 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx Climate monitoring campaign of the urban canyon in the city of Madrid carried out by the MonitorMAD team as part of the activities of the MateMAD project. The monitoring campaign starts at October 2023- July 2024 has two components: Monitoring of the urban climate in the study area. Monitoring of the urban canyon in the buildings identified with energy vulnerability indicators. The Climatological features to be monitored are temperature, humidity, radiation, wind speed and balloon temperature. In its installation, the equipment follows the recommendations of the World Meteorological Organization WMO. Two methodologies were used in the measurement campaign: Location Manufacturer Reference Type of sensor ID code Measuring frequency Start date Streetlight TandD Corporation RTR503BL Temperature and humidity 03DE, 05O5, 06ORS, 07ORS, 09SC, 10SC 10 minutes 04/10/2024 TandD Corporation + ASF/E RTR-505BL Globe temperature 2TG, 3TG 10 minutes 04/10/2024 TandD Corporation + Anemometro RTR-505BL+AIM-3010 + RK100 01 Anemometer 02ANEM, 01ANEM, 09SCARA 5 minutes 04/10/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Pyranometer 02RAD, 09SCARR 5 minutes 04/10/2024 Urban Canyon NetAtmo Temperature and humidity CSMR94BT_Nae, CSMR92BT_Nae, Variable (5 / 10 / 15 minutes) 09/02/2024 CI72CT_Nae, CI71AT_Nae, Variable (5 / 10 / 15 minutes) 20/03/2024 CLM40t_NAe,AMI642Dt_NAe Variable (5 / 10 / 15 minutes) 17/05/2024 Anemometer CSMR94Bva_Nae Variable (5 / 10 / 15 minutes) 09/02/2024 CI72Cva_Nae, Variable (5 / 10 / 15 minutes) 20/03/2024 TandD Corporation RTR503BL Temperature and humidity VEC4B 10 minutes 09/02/2024 CLIM71AT, CLIM72CT 10 minutes 20/03/2024 AMI642Dt 10 minutes 17/05/2024 TandD Corporation + ASF/E RTR-505BL Globe temperature CIM72CTG, AMI642Dg 10 minutes 20/03/2024 TandD Corporation + Anemometer RTR-505BL+AIM-3010 + RK100 01 Anemometer 02DEA, CLIM72CA 5 minutes 20/03/2024 TandD Corporation+ APOGEE instruments RTR-505BL + SP110 Pyranometer CLIM72CR, 01RAD 5 minutes 20/03/2024 *The temperature and humidity sensors have been protected using a white-colored casing, insulated and self-ventilated by a photovoltaic-powered extractor. **The Netatmo outdoor meters have been shielded from direct solar radiation using a white plastic net. ***Some sensors labeled with '_V2' were relocated near their original positions due to the replacement of urban streetlights by the mayor's office. The new locations can be found on the map in the attachments. Source of cartographic base: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Downloaded 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Downloaded 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx

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    ZENODO
    Dataset . 2024
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    ZENODO
    Dataset . 2023
    License: CC BY SA
    Data sources: Datacite
    ZENODO
    Dataset . 2023
    License: CC BY SA
    Data sources: Datacite
    ZENODO
    Dataset . 2024
    License: CC BY SA
    Data sources: Datacite
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      ZENODO
      Dataset . 2024
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      Dataset . 2023
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    Authors: A.Datas; C. del Cañizo; A. Ramos; A. B. Cristobal; +16 Authors

    AMADEUS es un proyecto europeo que investiga materiales y dispositivos de estado sólido para almacenar energía a muy alta temperatura. Usando aleados de silicio como materiales de cambio de fase se alcanzan calores latentes superiores a 1000 kWh/m3, propiciando la obtención de altísimas densidades energéticas. Dichos aleados suponen temperaturas de almacenamiento por encima de los 1000 ºC, muy por encima de las de los sistemas actuales de acumulación térmica. El artículo describe las actividades del proyecto y sus primeros resultados, explicando los principales retos de este nuevo sistema que combina la acumulación de energía en forma de calor en silicio fundido con dispositivos de estado sólido termiónicos y termofotovoltaicos para la posterior conversión en electricidad. AMADEUS is a H2020 project that researches on materials and solid-state devices for very high temperature energy storage and conversion. By exploring silicon-based alloys as new phase change materials (PCMs), latent heat higher than 1000 kWh/m3 is achievable, which implies a very high energy density. In addition, silicon-based PCMs lead to storage temperatures well beyond 1000 ºC, well beyond that of current state-of-the-art thermal energy storage (TES). This paper describes the project R&D activities and first results, and comments on challenges towards a new kind of systems combining latent heat energy storage in molten silicon with thermionic and thermophotovoltaic solid state heat-to-power conversion.

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    Conference object . 2019
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    Other literature type . 2019
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    Conference object . 2019
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    Conference object . 2018
    Data sources: CNR ExploRA
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    Authors: Barbosa Gómez, Luisa; Revuelta, Gema;

    - ENGLISH VERSION BELOW - Además del manejo de datos y publicaciones, la ciencia abierta incluye dentro de su definición la apertura a la sociedad. Por eso, quienes nos dedicamos a la comunicación de la ciencia debemos conocer este movimiento y relacionarnos con su implementación y popularización. En este taller, revisaremos una guía recientemente publicada para aplicar la ciencia abierta en todo su esplendor. Los y las participantes trabajarán en pequeño organizados por su área principal de interés, y propondrán sugerencias, cambios o adiciones a esta guía. Además, se desarrollará de forma colaborativa un capítulo sobre el papel de la comunicación científica en la ciencia abierta. ---EN--- In addition to data and publications' management, open science includes within its definition openness to society. For this reason, those of us who are dedicated to the communication of science must know this movement and relate to its implementation and popularization. In this workshop, we will review a recently published guide to applying open science in all its meanings. Participants will work in a small group organized by their main area of interest, and will propose suggestions, changes or additions to this guide. In addition, a chapter on the role of scientific communication in open science will be developed collaboratively.

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    Authors: Castro, Jose Esteban; Sauri Pujol, David; Sanzana Calvet, Martin; Tagle-Zamora, Daniel; +4 Authors

    In this issue we address the practice of rainwater harvesting in different settings, presenting experiences from Argentina, Brazil, Chile, Mexico, and Paraguay. Some of the papers were originally presented at the IX International Meeting of the WATERLAT-GOBACIT Network“Water, Rights, and Utopias: priorities in the process of democratization of water politics“, João Pessoa, Paraiba, Brazil, 3-7 September 2018. Article 1 was authored by David Sauri, from the Autonomous University of Barcelona, Spain, co-editor of this issue. The article provides an overall introduction to the topic of rainwater harvesting. Article 2, by Martin Sanzana Calvet, Institute of Strategic Studies for Human Development (INEDH), Concepción, Bio-Bio, Chile, addresses the practice of fog catching in arid and semi arid regions of Chile. In Article 3, Daniel Tagle-Zamora, University of Guanajuato, Leon, Guanajuato, Mexico, presents findings from research on the implementation of public policies oriented at the provision of rainwater catchment technologies, mostly for domestic use ,in several municipalities of the semi arid State of Guanajuato, Mexico. Article 4 was co-authored by Roberto de Sousa Miranda, Federal University of the interior of Pernambuco and Federal University of Campina Grande, Paraiba, Brazil, and Laiany Tassila Ferreira, Federal Rural University of Pernambuco, Brazil.The article discusses the implementation of a national plan to provide rainwater cisterns in the semi arid region of North eastern Brazil, with emphasis on the experience of the State of Paraiba. Finally, Article 5, by Ana Maria Attias Sole and Ricardo Lombardo Lopez, from the North-eastern National University, Resistencia, Chaco, Argentina, provides an overview of the historic legacy of water practices and technologies inherited fromthe“syncretism”between indigenous communities (Tupi-Guarani), and the Jesuit territorial expansion that took place between the early seventeenth and the mid eighteenth centuries in a large region of South America encompassing parts of Argentina, Bolivia, Brazil, Paraguay and Uruguay. The article focuses mainly on examples from Argentina, Brazil, and Paraguay, and provides insights into the significance of historical-cultural research in the production of knowledge about rainwater technologies and the associated culture and practices, which also contributes to our network’s Thematic Area 7, Water-related Art, Communication, Culture, and Education.

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    Authors: Olcina, Jorge; Morote Seguido, Álvaro Francisco;

    El siglo XXI es el siglo de la sostenibilidad ambiental y de la lucha contra el cambio climático. El cambio climático va a condicionar políticas públicas y acciones privadas en todo el mundo para alcanzar el objetivo de reducción de emisiones establecidos en los acuerdos internacionales (Kyoto, París). El objetivo de este trabajo es llevar a cabo una revisión de los efectos ya constatados del cambio climático en la región mediterránea, así como las medidas de adaptación y mitigación a corto-medio plazo para hacer frente al calentamiento global, como son la adaptación de los espacios urbanos (escala local), y la mejora de la enseñanza sobre este fenómeno. Según la Agenda 2030, y concretamente los Objetivos de Desarrollo Sostenible, el nº13 (“Acción por el clima”), establece dos acciones principales que los países deben culminar en 2030: la aprobación de leyes y planes de mitigación y adaptación, y la puesta en marcha de programas educativos. Finisterra, Vol. 58 N.º 122 (AOP) (2023)

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    https://dx.doi.org/10.18055/fi...
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    Authors: Angel GARCÍA LANDA, José;

    Spanish abstract: Unas notas sobre el final del libro 'El lugar del hombre en el cosmos' de Fred Spier, sobre la sostenibilidad de la actual comunicación globalizada. La Gran Historia sitúa al ser humano en el contexto de la evolución cósmica y de la ecología de los recursos. Vivimos hoy en la Era de los Combustibles Fósiles. Con esta energía, la globalización se acelera. Las estructuras económicas, y por ende las políticas, cabalgan a lomos de combustibles fósiles, y sobre esta economía descansa la red de comunicaciones global que tiende a creer que está autosustentada y a ignorar esta dependencia. __________________________________________________________________________________ English abstract: "Globalization and Sustainability" — Some notes on the end of Fred Spier's 'Big HIstory and the Future of Humanity', with regard to the sustainability of present-day globalized communications. Big History contextualizes humanity within the context of cosmic evolution and the ecology of resources. Today we live in the Age of Fossil Fuels—which fuel accelerated globalization. Economic structures, and political ones likewise, ride on the availability of fossil fuels, and so does the present-day network of global communications, which tends to forget this dependency and rests on an illusion of self-sustainability.

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    Authors: Paul Isbell;

    Sweeping changes are beginning to transform energy scenarios around the world. The gas revolution, a renaissance in petroleum technology and exploration, and a chaotic but powerful movement toward the goal of low-carbon economies are three of the principal energy trends currently interacting with structural changes in the geo-economics of the Atlantic world to present new perspectives and opportunitiesfor the diverse actors in the ‘Atlantic Basin’. This article explores how changes in the energy landscape are contributing to a reassessment of the strategic horizon. The potential impacts of the shale revolution, deep-offshore oil, biofuels and other modern renewable energies on the geopolitics of the Atlantic Basin will be assessed, and the hypothesis that an Atlantic Basin energy system is now taking shape will be evaluated, along with an analysis of anticipated impacts.

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  • Authors: Mayoral Gastón, María del Carmen; Gimeno, M. P.; Andrés Gimeno, José Manuel; Díez, Luis Ignacio;

    [ES] La oxicombustión de combustibles sólidos es una de las alternativas tecnológicas más relevantes destinadas a conseguir la captura de CO2 en grandes plantas de generación. Si el proceso de oxicombustión se lleva a cabo en un reactor de lecho fluido, las posibilidades de aplicación se amplían a combustibles de bajo rango o residuos difícilmente aprovechables en condiciones de combustión en polvo, con la ventaja añadida del control de otras emisiones gaseosas (NOx, SOx). Y si adicionalmente se añade biomasa residual como parte de la mezcla aportada al reactor, el balance de emisiones de CO2 puede llegar a ser negativo. En la actualidad existen diferentes iniciativas tanto nacionales como internacionales de investigación en el campo de la oxicombustión, a pequeña escala de laboratorio, en plantas piloto y en tamaños semicomerciales, pero preferentemente centradas en sistemas de combustible pulverizado. También se desarrolla investigación en instalaciones de oxicombustión en lecho fluido, y dentro de ellos la caracterización de los procesos de ensuciamiento y corrosión asociados a la deposición de cenizas es un tema completamente novedoso. Este aspecto si que ha sido tratado ampliamente cuando se utiliza biomasa como combustible, la investigación se ha desarrollado convencionalmente para combustión con aire y no para las condiciones especiales de oxicombustión. La presente contribución pretende ofrecer una visión general y divulgativa sobre el estudio de los retos químicos que los materiales estructurales de las calderas han de sufrir en la futura aplicación comercial de la tecnología de oxicombustión de carbón y biomasa. [EN] Oxy-firing of solid fuels is one of the most relevant technological alternatives aiming at the CO2 capture in large-scale power plants. If oxy-firing is carried out in a fluidized bed reactor, the possibilities for application are extended to low-rank coals, difficult wastes, or biomass. The oxy-co-combustion of coal and biomass in circulating fluidized bed (CFB) reactors would result in a negative balance for the CO2 emissions. Several on-going national and international initiatives are focused in the research of oxyfuel- related issues, covering lab-scale plants, pilot plants and semicommercial units for pulverized fuel combustion. In particular, the field of ash fouling and corrosion under oxy-cofiring in fluidized beds remains almost completely open. Although there are available works in relation to the control of deposition rates in fluidized bed units, especially when biomass is the fuel, they have been developed under conventional combustion with air but not for the particular conditions occurring with CFB oxy-firing. The aim of the present work is to introduce an overview about the chemical challenges that oxycofiring implies over metal exchanger surfaces as well as over low-cement ceramic protection of combustor sidewalls, for a future commercial application of the technology. Este trabajo ha sido financiado por el Ministerio de Economía y Competitividad (Proyectos ENE2012-39114-C02-01 y -02). Peer reviewed

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    Authors: Arranz Arranz, Beatriz; Núñez Peiró, Miguel; Rodriguez Pabon, Erwin Fernando;

    Recolección de datos climaticos (temperatura y humedad) en barrios identificados con indices de vulnerabilidad en el contexto del proyecto MateMAD. Los datos han sido recolectados por el equipo MonitorMAD de la ETSAM mediante la instalación de sensores fijos en postes de alumbrado publico en la ciudad de Madrid. Los barrios monitorizados son: Centro Delicias - Palos de la frontera - Legazpi Orcasitas San Cristobal San Diego Orcasur La campaña de monitorización se llevo a cabo desde agosto 2022 hasta octubre de 2023 y la instalación de los equipos siguio las recomendaciones de la World Meteorological Organization WMO. Los sensores de medición son de TandD Corporation de referencia RTR503BL. Debido a la exposición a condiciones climaticas exteriores el sensor se ha protegido por medio de una carcaza aislada y autoventilada por medio de un extractor con funcionamiento fotovoltaico. El registro de los datos climaticos se configura cada 10 minutos y los datos son recolectados mensualmente, a su vez, los datos se han agrupado por sensor en una hoja de cáculo. La temperatura se ha recolectado en grados centigrados (precisión de +-0,3ºC) y la humedad relativa en % (precisión de +-5%HR at 25ºC, 50%HR). Fuente de base cartografíca: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Recuperado 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Recuperado 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx Data collection (temperature and humidity) in neighborhoods identified with vulnerability indicators in the context of the MateMAD project. The data has been collected by MonitorMAD team (UPM) through the installation of fixed sensors on streetlight poles in the city of Madrid. The monitored neighborhoods are: - Centro- Delicias - Palos de la Frontera - Legazpi- Orcasitas- San Cristóbal- San Diego- Orcasur The monitoring campaign took place from August 2022 to October 2023 and the equipment installation follows the recommendations of World Meteorological Organization WMO. The equipments used for monitoring are from TandD Corporation, model RTR503BL. Due to exposure to outdoor conditions, the sensor has been protected by an insulated cade and self-ventilated through a photovoltaic-powered extractor. Weather data logging is programmed every 10 minutes, and the data is collected monthly. Furthermore, the data has been grouped by sensor reference. The temperature has been collected in degrees Celsius (accuracy ±0.3°C), and the relative humidity in percentage (accuracy ±5%RH at 25°C, 50%RH). Source of cartographic base: Ayuntamiento de Madrid. (s. f.). Cartografía municipal por distritos a escala 1:1000, formato SHP, ETRS89 [Map]. Urbanismo e infraestructuras. Downloaded 30 de enero de 2023, de https://datos.madrid.es/portal/site/egob/menuitem.c05c1f754a33a9fbe4b2e4b284f1a5a0/?vgnextoid=a4f36d34fa86c410VgnVCM2000000c205a0aRCRD&vgnextchannel=374512b9ace9f310VgnVCM100000171f5a0aRCRD Sede Electrónica del Catastro. (s. f.). Difusión de datos catastrales [Map]. Sede Electrónica del Catastro. Downloaded 30 de abril de 2023, de https://www.sedecatastro.gob.es/Accesos/SECAccDescargaDatos.aspx

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