Scientific-Technical Areas
Scientific-technical area
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Analysis of Sustainable Energy Systems
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Bioenergy, Bioproducts, and Waste
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Wind and Photovoltaic Power Generation and Energy Efficiency
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Hydrogen Technologies
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Solar Thermal and Photochemical Technologies
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Science and Technology for Nuclear Fission
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Science and Technology for Fusion Energy
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Air Quality and Climate Change
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Applied Environmental Hydrogeosciences
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Measurement and Evaluation of Ionizing Radiations
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Soils and Climate Change
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Social Studies
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Biomedical Innovation
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Particle Physics and Astrophysics
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Accelerators, Magnets, and Power Electrical Systems
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Medical Applications of Ionizing Radiations
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Scientific Computing
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Materials and Chemistry for Energy Production
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Environmental Technologies and Remediation of Contaminated Sites
Diseño y capacitación de un sistema de monitorización de mercurio en redes tróficas para empresas mineras: especies indicadoras de riesgos ambientales.
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Advanced Materials for Energy and Environmental Applications
Diseño y desarrollo de un sistema automático de medida, depuración y control de la calidad del aire que garantice la salud ambiental y optimice la eficiencia energética
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Ionizing Radiation Dosimetry
Dosimetría y espectrometría de neutrones en aplicaciones con campos complejos de radiación
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
Thermal Energy Storage
Thermochemical Processing
Economía circular en el desarrollo de zeolitas para almacenamiento térmico mediante valorización de cenizas de residuos biomásicos
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Cellular Technologies
Edición génica de AGXT como terapia permanente para pacientes con hiperoxaluria primaria tipo 1
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Terrestrial Natural Ecosystems and Climate Change
Efectos pasados y presentes del cambio climático e impacto humano en la geoquímica de la superficie terrestre en áreas libres de hielo de la Antártida
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Cellular Technologies
Ejecución de proyectos
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Photovoltaic Power Generation and Grid Integration
El reto de una irradiancia solar cierta, absoluta y trazable
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Advanced Materials for Energy and Environmental Applications
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Agroecosystems, Circular Economy, and Sustainability
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Analysis and Assessment of Environmental Risks
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Applications in PET/CT Molecular Imaging
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Atmospheric Modeling
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Barrier Materials
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Biochemical Processing
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Biomedical Innovation in Cancer
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Cellular Technologies
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Characterization and Control of Atmospheric Pollution
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Characterization and Treatment of High-Level Waste and Nuclear Fuel
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Characterization, Treatment and Conditioning of Medium, Low, and Very Low-Level Waste
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Data-Intensive Computing
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
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Effects on Agrosystems and Ecosystems of Atmospheric Pollution and Climate Change
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Electrochemical production and conversion of hydrogen (electrolyzers and fuel cells)
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Energy Efficiency in Building Construction
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Environmental law studies
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Environmental Radioactivity
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Environmental Radiological Impact Assessment
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Actinide and Fission Product Physicochemical Laboratory
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Air Emissions Measurement Laboratory
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Air Pollution Ecotoxicity Laboratory
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Applied biomedicine Laboratory
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Atmospheric Observation Station CIEMAT-Madrid
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Barrier Materials Laboratory
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Biofuels Laboratory
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Biomass Laboratory
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Computer for Particle Physics
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Dosimetric Standards Laboratory (LMRI-1)
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Dosimetry Laboratories
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Effect of Solar Radiation on Materials Laboratory
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Energy Materials and Devices Laboratory (LAMDE)
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Environmental Radioactivity in Enviromental Samples Laboratory
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Environmental Transuranic Sample Measurement Laboratory
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Experimental Laboratories for the Evaluation of the Energy Efficiency in Buildings and Components
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Flywheel Laboratory
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Fuel Cell Research Laboratory
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Fusion Materials Laboratory
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High-activity Radioactive Waste Research Laboratory
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BIOCAR-001
Liquid sample analysis
Analysis of liquid samples from biomass processing
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BIOCAR-002
Basic analysis of biomass composition
Analysis of the major lignocellulosic biomass components
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BIOCAR-003
Complete analysis of biomass composition
Analysis of all lignocellulosic biomass components
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BIOCAR-004
Determination of starch content in lignocellulosic biomass
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BIOCAR-005
Pretreatment test
Steam explosion pretreatment test
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BIOCAR-006
Determination of the Biomethane or Biogas Potential (BMP)
Rate per sample
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BIOM-001
Determination of humidity in biomass, waste and their ashes
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BIOM-002A
Determination of top and lower calorific power of biomass, waste and their ashes.
For a number of samples less than 10
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BIOM-002B
Determination of top and lower calorific power of biomass, waste and their ashes.
For a number of samples equal to 10 or more
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BIOM-003A
Determination of carbon, hydrogen and nitrogen of biomass, waste and their ashes.
For a number of samples less than 10
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BIOM-003B
Determination of carbon, hydrogen and nitrogen of biomass, waste and their ashes.
For a number of samples equal to 10 or more
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BIOM-004A
Determination of volatile matter content of biomass, waste and their ashes.
For a number of samples less than 10
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BIOM-004B
Determination of volatile matter content of biomass, waste and their ashes.
For a number of samples equal to 10 or more
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BIOM-005A
Determination of chlorine and sulphur in biomass and waste.
For a number of samples less than 10
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BIOM-005B
Determination of chlorine and sulphur in biomass and waste.
For a number of samples equal to 10 or more
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BIOM-006A
Determination of chlorine in biomass, waste and their ashes.
For a number of samples less than 10
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BIOM-006B
Determination of chlorine in biomass, waste and their ashes.
For a number of samples equal to 10 or more
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BIOM-007A
Determination of inorganic elements (Al, Ca, Fe, K, Mg, Na, P, S, Si, Ba, Mn, Sr, Ti, Zn) in ashes.
For a number of samples less than 10
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BIOM-007B
Determination of inorganic elements (Al, Ca, Fe, K, Mg, Na, P, S, Si, Ba, Mn, Sr, Ti, Zn) in ashes.
For a number of samples equal to 10 or more
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BIOM-008A
Determination of inorganic elements (Al, Ca, Fe, K, Mg, Na, P, S, Si, Ba, Mn, Sr, Ti, Zn) in biomass and waste.
For a number of samples less than 10
