Chemicals and Fuels from Bio-Based Building Blocks

Buch | Hardcover
LVI, 702 Seiten
2016
Wiley-VCH (Verlag)
978-3-527-33897-9 (ISBN)
259,00 inkl. MwSt
  • Titel ist leider vergriffen;
    keine Neuauflage
  • Artikel merken
Eine aktuelle und umfassende Übersicht in zwei Bänden zu den jüngsten Entwicklungen im Bereich chemokatalytischer und enzymatischer Prozesse zur Umwandlung erneuerbarer Materialien in wichtige Chemikalien und Brennstoffe. Geschrieben von Experten aus Hochschule und Industrie.
An up-to-date and two volume overview of recent developments in the field of chemocatalytic and enzymatic processes for the transformation of renewable material into essential chemicals and fuels.

Experts from both academia and industry discuss catalytic processes currently under development as well as those already in commercial use for the production of bio-fuels and bio-based commodity chemicals. As such, they cover drop-in commodity chemicals and fuels, as well as bio-based monomers and polymers, such as acrylic acid, glycols, polyesters and polyolefins. In addition, they also describe reactions applied to waste and biomass valorization and integrated biorefining strategies.

With its comprehensive coverage of the topic, this is an indispensable reference for chemists working in the field of catalysis, industrial chemistry, sustainable chemistry, and polymer synthesis.

Fabrizio Cavani is Full Professor of Industrial Chemistry at the University of Bologna, Italy, where he received his PhD in 1986. From 1986 until 1990 he worked at the Catalysis Centre of EniChem in Italy, where he was in charge for the R&D of new catalytic materials in the field of selective oxidation and acid catalysis. He then joined the University of Bologna where he became Associate Professor of Industrial Chemistry in 2000. He has authored around 200 papers and reviews in the field of heterogeneous catalysis, two books on catalytic selective oxidation, one book on the development and management of chemical processes. He also holds 28 international patents, some of which have been industrialized.

Stefania Albonetti is Associate Professor at the University of Bologna, Italy. She obtained her PhD in Industrial Chemistry there in 1996. She then worked for Lonza SpA in Bergamo (Italy) where she was responsible for the catalysis department. In June 2001 she joined the Department of Industrial Chemistry and Materials at the University of Bologna. She is the (co-)author of 78 journal contributions and ten international patents. Since 2013 she coordinates the Erasmus Mundus Doctorate Program in Industrial Sustainable Chemistry (SINCHEM). Her scientific interests are the technological application of material science and heterogeneous catalysis directed to the solution of environmental problems, such as the design of innovative materials for more environmental friendly industrial processes.

Francesco Basile is Associate Professor at the University of Bologna, Italy. He obtained his PhD in Industrial Chemistry in 2000 and in 2003 became Assistant Professor at the Department of Industrial Chemistry and Materials at the University of Bologna. He is (co-)author of 63 publications and co-inventor of ten patents. He was scientific director of two European summer schools on next generation fuel from Biomass(2006-2009) and board member of European projects. From 2009 to 2012 he acted as consultant in Biofuels and added value products from biomass at the International Centre for Science and High Technology UNIDO. His research is focused on the synthesis of new materials and catalytic processes in the field of gas cleaning, hydrogen/syngas production and biomass transformation in fuel and chemicals.

For the last 56 years Alessandro Gandini has conducted research and teaching chronologically in Switzerland, the UK, Canada, the USA, Cuba, Canada, France, Brazil, Portugal and now in France and Brazil, with invited professorships in numerous other countries. Polymer chemistry, photochemistry and surface science have dominated his professional interests, with a progressively growing involvement in polymers from renewable resources, a topic he was one of the first to investigate and promote.

DROP-IN CHEMICALS
Bio-Olefins
Bio-Aromatics by Catalysis
Bio-Aromatics by Thermal Processes
Bio-Syngas

BIO-MONOMERS
Dicarboxylic Acids: Adipic Acid
Dicarboxylic Acids: Succinic Acid
Bio-Acrylic Acid
Glycols

BIO-POLYMERS
Mater-Bi: A Long Story for a Successful Bio-Polymer
Bio-Polyesters
Bio-Polyolefins

REACTIONS APPLIED TO B4 VALORISATION
H-Transfer
Selective Oxidation
Coupling Reactions
Hydrogenolysis

BIO-REFINERIES AND VALUE-CHAINS: CLASSICAL LAYOUT AND NEW SCENARIOS
The Classical Oleochemical Refinery
Trends in Strategic Options
A Vision for Future Bio-Refineries
The New Vision of Eni for Integrated Bio-Refineries
Waste Valorization: Emerging Opportunities
The Solvay Vision for Integrated Bio-Refineries
The Biochemtex Vision for Integrated Bio-Refineries
The Cargill Vision for Integrated Bio-Refineries

Erscheinungsdatum
Verlagsort Berlin
Sprache englisch
Maße 170 x 244 mm
Gewicht 1949 g
Einbandart gebunden
Themenwelt Naturwissenschaften Chemie Physikalische Chemie
Naturwissenschaften Chemie Technische Chemie
Technik Umwelttechnik / Biotechnologie
Schlagworte Brennstoffe • catalysis • Chemie • Chemistry • Energie • Energy • Erneuerbare Energien • Fossile Brennstoffe • Fossil Fuels • Industrial Chemistry • Katalyse • Nachhaltige u. Grüne Chemie • Nachhaltige u. Grüne Chemie • renewable energy • Sustainable Chemistry & Green Chemistry • Technische u. Industrielle Chemie
ISBN-10 3-527-33897-7 / 3527338977
ISBN-13 978-3-527-33897-9 / 9783527338979
Zustand Neuware
Haben Sie eine Frage zum Produkt?
Mehr entdecken
aus dem Bereich
Quantenmechanik | Spektroskopie | Statistische Thermodynamik

von Sebastian Seiffert; Wolfgang Schärtl

Buch | Softcover (2024)
De Gruyter (Verlag)
59,95
Thermodynamik | Kinetik | Elektrochemie

von Sebastian Seiffert; Wolfgang Schärtl

Buch | Softcover (2024)
De Gruyter (Verlag)
59,95
Grundlagen, Methoden, Materialien, Anwendungen

von Gunther Wittstock

Buch | Hardcover (2023)
Wiley-VCH (Verlag)
84,90