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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Characterization, Treatment and Conditioning of Medium, Low, and Very Low-Level Waste
Acondicionamiento de grafito irradiado en hormigones y geopolímeros escalado industrial
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Nuclear Systems
Addressing PRiorities of Evaluated Nuclear Data in Europe
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
Thermochemical Processing
Adsorbentes Circulares Avanzados para Valorización Termoquímica
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Energy Efficiency in Building Construction
Advanced Grid Interfaces for innovative STorage INtegration
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Characterization and Treatment of High-Level Waste and Nuclear Fuel
Materials for Nuclear Energy
Advanced platform for Stainless Steel agIng and cracking aSsessmenT
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Nuclear Systems
Radiobiology
Advanced Strategies and new Approaches for Protontherapy
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
Materials for Solar Thermal Concentration Technologies
Point-Focus Solar Thermal Concentration Technologies
Solar Thermal Energy Applications
Air-Based Solar Thermal Electricity for Efficient Renewable Energy Integration & Compressed Air Energy Storage
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Safety and risk in complex systems: studies in culture, organizations and human factors
Scientific Computing
Amenazas y Leyes en el Ámbito Cibernético para instalaciones RAdiológicas y Nucleares
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Scientific Computing
Ampliación de las capacidades del nodo de datos PIC de la RES (PIC)
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Scientific Computing
Ampliación de las capacidades del nodo de datos PIC de la RES (XULA)
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Cellular Technologies
Aplicaciones Biotecnológicas del RNA Bridge Editing
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Reactor and Facility Safety
Aplicación a la planta de la investigación en Accidentes Severos
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Reactor and Facility Safety
Artificial intelligence for the Simulation of Severe AccidentS
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Reactor and Facility Safety
Assessment of Liquid Source Term for Accidental Post Management Phase
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Particle Astrophysics
Astronomía de rayos gamma con CTA-Norte y MAGIC, proyecto 1, contribución de CIEMAT
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Experimental High-Energy Physics
Avanzando en HEP: Experimentos en colisionadores e I+D Tecnológico
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Biochemical Processing
Biorrefinería multiproducto para la producción coste-efectiva de aceite microbiano mediante cultivo secuencial de bacterias y levaduras (BIODESOIL-YEAST).
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Biochemical Processing
Biorrefinerías integradas para la valorización de residuos de la industria agroalimentaria en productos de elevado valor añadido en la región de Madrid
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Physics and Systems for Fusion Devices
Blindajes de plasma de metal líquido como soluciones de nueva genereación para extracción de potencia en dispositivos de fusión magnética
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
Bringing EU-SOLARIS ERIC to its Zenith
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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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Deposited Silicon Device Laboratory
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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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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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MATCH-L04
Mercury fractionation (Hg) by a specific method of sequential extraction in soil, sediment, sludge or plant samples.
Solid state sample
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MATCH-M01
Analysis by X-ray diffraction (XRD) of solid samples, without interpretation of results.
Solid state sample
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MATCH-M02
Analysis by X-ray Diffraction (XRD) of solid samples, with interpretation of results.
Solid state sample
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MATCH-M03
Analysis by X-ray Diffraction (XRD) of solid samples, with interpretation of results and quantification of crystalline phases by Rietveld method.
Sample in solid state. Quantitative analysis of crystalline phases
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MATCH-M04
X-ray diffraction (XRD) analysis of solid samples, with flush incidence, without interpretation of results.
Solid state sample
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MATCH-M05
Analysis by X-ray Diffraction (XRD) of solid samples, with flush incidence and interpretation of results.
Solid state sample
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MATCH-M06
Analysis by X-ray Microdiffraction (XRD) of solid samples, without interpretation of results.
Solid state sample
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MATCH-M07
Analysis by X-ray Microdiffraction (XRD) of solid samples, with interpretation of results.
Solid state sample
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MATCH-N01
Preparation of a solid sample in molten glass for X-ray fluorescence (XRF) analysis of larger constituents.
Solid state sample
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MATCH-N02
Semi-quantitative analysis of major constituents of a solid sample by X-ray fluorescence (XRF), with sample preparation.
Sample in solid state. The sample (minimum 0,1 g) must be dried and pulverised to produce a melted glass
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MATCH-N03
Quantitative analysis of major constituents in solid samples by X-ray fluorescence (XRF).
Solid state sample
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MATCH-N04
Semi-quantitative analysis of major constituents of a solid sample by X-ray fluorescence (XRF), without sample preparation.
Solid state sample
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MATCH-N05
Semi-quantitative analysis of traces in geological materials of a solid sample by X-ray fluorescence (XRF), with sample preparation.
The solid, dry and pulverised sample (at least 10 g) shall be transformed into a trace analysis tablet.
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MATCH-N06
Quantitative analysis of traces and semi-quantitative of majors in geological materials of a solid sample by X-ray fluorescence (XRF), with sample preparation.
The solid, dry and pulverised sample (at least 10 g) shall be transformed into a trace analysis tablet and a melted glass for analysis of larger constituents.
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MATCH-N07
Quantitative analysis of traces and semi-quantitative of majors in geological materials of a solid sample by X-ray fluorescence (XRF), with sample preparation and without correction of mineralogical effect.
The solid, dry and pulverised sample (at least 10 g) shall be transformed into a trace analysis tablet, in which the mineralogical effects of the light elements cannot be corrected
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MATCH-O01
Determination of lithium, potassium, sodium or caesium (per element) in inland water samples by Flame Photometry (FID).
Sample in liquid state
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MATCH-P01
Determination of 20 elements (set: Al, B, Ba, Be, Bi, Ca, Cd, Co, Cr, Cu, Fe, Mg, Mn, Mo, Ni, Pb, Sr, Ti, V, Zn) in inland water samples by Plasma Spectrometry (ICP-OES).
Sample in liquid state
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MATCH-P03
Determination of 23 elements (greater constituents and traces) -as a whole- in samples of aqueous solutions and wastewater by Plasma Spectrometry (ICP-OES): Al, As, Ba, Be, Ca, Ce, Co, Cr, Cu, Fe, La, Mg, Mn, Mo, Ni, P, Sn, SR, Ti, V, W, Y, Zn.
Sample in liquid state
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MATCH-P05
Determination of 14 rare earth elements (set) in aqueous solution samples by Plasma Spectrometry (ICP-OES): Ce, Dy, Er, Eu, Gd, Ho, La, Lu, Nd, Pr, Sm, Tb, Tm, Yb.
Sample in liquid state
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MATCH-P07
Determination of 21 elements (major constituents and traces) - set - in samples of particulate matter by Plasma Spectrometry (ICP-OES): Al, Ba, Be, Ca, Ce, Co, Cr, Cu, Fe, La, Mg, Mn, Mo, Ni, P, Sr, Ti, V, W, Y, Zn.
Sample retained in filter
