High Pressure Technologies in Biomass Conversion
Herausgeber: Lukasik, Rafal M
High Pressure Technologies in Biomass Conversion
Herausgeber: Lukasik, Rafal M
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Bringing researchers and industrialists up to date with the latest advances in green high-pressure technologies.
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Bringing researchers and industrialists up to date with the latest advances in green high-pressure technologies.
Produktdetails
- Produktdetails
- Verlag: Royal Society of Chemistry
- Seitenzahl: 213
- Erscheinungstermin: 20. März 2017
- Englisch
- Abmessung: 236mm x 163mm x 15mm
- Gewicht: 484g
- ISBN-13: 9781782624851
- ISBN-10: 1782624856
- Artikelnr.: 46452230
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Royal Society of Chemistry
- Seitenzahl: 213
- Erscheinungstermin: 20. März 2017
- Englisch
- Abmessung: 236mm x 163mm x 15mm
- Gewicht: 484g
- ISBN-13: 9781782624851
- ISBN-10: 1782624856
- Artikelnr.: 46452230
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Rafal Lukasik is Research Associate at Laboratório Nacional de Energia e Geologia, I.P. (LNEG), Unit of Bioenergy, Portugal, where he leads a group focused on the green biorefinery concept. His principal scientific interests are in sustainable chemistry, extraction and separation with CO2, biomass processing with green solvents (carbon dioxide, ionic liquids), biorefinery, process design and optimization.
Supercritical Fluids in Natural Product and Biomass Processing
An Introduction; Introduction to High Pressure CO2 and H2O Technologies in Sustainable Biomass Processing; Pre
treatment of Biomass Using CO2
based Methods; Enzyme
based Biomass Catalyzed Reactions in Supercritical CO2; Direct Hydrolysis of Biomass Polymers using High
pressure CO2 and CO2
H2O Mixtures; Processing of Lignocellulosic Biomass Derived Monomers using High
pressure CO2 and CO2
H2O Mixtures; Efficient Transformation of Biomass
derived Compounds into Different Valuable Products: A "Green" Approach; Anti
solvent Effect of High
pressure CO2 in Natural Polymers; Perspectives of the Development of High
pressure Technologies in Biomass Process
An Introduction; Introduction to High Pressure CO2 and H2O Technologies in Sustainable Biomass Processing; Pre
treatment of Biomass Using CO2
based Methods; Enzyme
based Biomass Catalyzed Reactions in Supercritical CO2; Direct Hydrolysis of Biomass Polymers using High
pressure CO2 and CO2
H2O Mixtures; Processing of Lignocellulosic Biomass Derived Monomers using High
pressure CO2 and CO2
H2O Mixtures; Efficient Transformation of Biomass
derived Compounds into Different Valuable Products: A "Green" Approach; Anti
solvent Effect of High
pressure CO2 in Natural Polymers; Perspectives of the Development of High
pressure Technologies in Biomass Process
Supercritical Fluids in Natural Product and Biomass Processing
An Introduction; Introduction to High Pressure CO2 and H2O Technologies in Sustainable Biomass Processing; Pre
treatment of Biomass Using CO2
based Methods; Enzyme
based Biomass Catalyzed Reactions in Supercritical CO2; Direct Hydrolysis of Biomass Polymers using High
pressure CO2 and CO2
H2O Mixtures; Processing of Lignocellulosic Biomass Derived Monomers using High
pressure CO2 and CO2
H2O Mixtures; Efficient Transformation of Biomass
derived Compounds into Different Valuable Products: A "Green" Approach; Anti
solvent Effect of High
pressure CO2 in Natural Polymers; Perspectives of the Development of High
pressure Technologies in Biomass Process
An Introduction; Introduction to High Pressure CO2 and H2O Technologies in Sustainable Biomass Processing; Pre
treatment of Biomass Using CO2
based Methods; Enzyme
based Biomass Catalyzed Reactions in Supercritical CO2; Direct Hydrolysis of Biomass Polymers using High
pressure CO2 and CO2
H2O Mixtures; Processing of Lignocellulosic Biomass Derived Monomers using High
pressure CO2 and CO2
H2O Mixtures; Efficient Transformation of Biomass
derived Compounds into Different Valuable Products: A "Green" Approach; Anti
solvent Effect of High
pressure CO2 in Natural Polymers; Perspectives of the Development of High
pressure Technologies in Biomass Process







