PROYECTOS NACIONALES
Projekt CTQ2013-44143-R
DEMOSTRACIÓN DE UN PROCESO SELECTIVO DE TRANSFORMACIÓN DE BIOMASA EN AZUCARES Y COMPUESTOS QUÍMICOS MEDIANTE REACTORES ULTRA RÁPIDOS EN AGUA SUPERCRÍTICA
Finanzier:
MINISTERIO DE ECONOMIA Y COMPETITIVIDAD
date_range
Dauer von 01 von Januar von 2014 bis 31 von Juli von 2017
(43 Monate)
Fertig
euro
271.040,00 EUR
Geltungsbereich National. Mit dem Zeichen Öffentlich.
Forscher/innen
Ehemalige Mitglieder (11)
- ABAD FERNANDEZ, NEREA Mitarbeiterin 20152016
- ADAMOVIC, TIJANA Mitarbeiterin 20172017
- BENITO ROMAN, OSCAR Mitarbeiter 20152015
- JIMENEZ DE LA PARRA, CRISTINA Mitarbeiterin 20142014
- MARTINEZ FAJARDO, CELIA MARIA Mitarbeiterin 20152015
- MUÑOZ PALACIOS, SERGIO Mitarbeiter 20162016
- NAVARRETE MUÑOZ, ALEXANDER Mitarbeiter 20142015
- PAZO CEPEDA, MARIA VICTORIA Mitarbeiterin 20152016
- RODRIGUEZ BAZ, MARIA ISABEL Mitarbeiterin 20152017
- SANCHEZ BASTARDO, NURIA Mitarbeiterin 20152015
- YEDRO, FLORENCIA MICAELA Mitarbeiterin 20142015
Publikationen im Zusammenhang mit dem Projekt (12)
Nach Typologie anzeigen2018
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Understanding biomass fractionation in subcritical & supercritical water
Journal of Supercritical Fluids
-
A green desuperheater for an energetic efficient alternative to the decompression valve in biomass supercritical water ultrafast hydrolysis process
Journal of Supercritical Fluids
-
Supercritical water processes: Future prospects
Journal of Supercritical Fluids
2017
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Fluidization of nanoparticles agglomerates enhanced by supercritical carbon dioxide
Powder Technology
-
Preparation of barley and yeast β-glucan scaffolds by hydrogel foaming: Evaluation of dexamethasone release
Journal of Supercritical Fluids
2015
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Titnium dioxide nanoparticle coating in fluidized bed via supercritical anti-solvent process (SAS)
Chemical Engineering Journal
-
Hydrothermal fractionation of woody biomass: Lignin effect on sugars recovery
Bioresource Technology
-
Pressure and temperature effect on cellulose hydrolysis in pressurized water
Chemical Engineering Journal
-
Hydrolysis of cellulose in supercritical water: reagent concentration as a selectivity factor
Cellulose
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Governing Chemistry of Cellulose Hydrolysis in Supercritical Water
ChemSusChem
-
Energy recovery from effluents of supercritical water oxidation reactors
Journal of Supercritical Fluids
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Supercritical water oxidation for energy production by hydrothermal flame as internal heat source. Experimental results and energetic study
Energy