Regulated Systems for Multiphase Catalysis
(Sprache: Englisch)
Multiphase catalysis is a key technology for the competitive and sustainable production of fine chemicals in coming decades. A joint academic and industry consortium has developed tools for considering complex chemical and process-based requirements when...
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Multiphase catalysis is a key technology for the competitive and sustainable production of fine chemicals in coming decades. A joint academic and industry consortium has developed tools for considering complex chemical and process-based requirements when setting up a catalytic system. This book shows how the resulting competence covers such supercritical fluid (SCF) technology in catalysis, ionic liquids (Il), ligand design for SFCs and Ils, thermomorphic solvent systems, reactor design and more.
Klappentext zu „Regulated Systems for Multiphase Catalysis “
Multiphase catalysis in recent years has been shown in academia and industry to be the emerging key technology for the competitive and sustainable production of fine chemicals in the next decades. It convincingly unites the indispensable core advantages of homogeneous catalysis with future governmental and industrial sustainability criteria. In a joint effort by seven of Germany's most distinguished scientists in the field and four renowned industry partners a research consortium was established which for the first time has systematically explored and related the main issues and mutual interdependencies of the different approaches in multiphase catalysis. This work has resulted in the development of an expert tool box, which relates the complex chemical and process based requirements to be considered when setting up a catalytic system. The resulting competence covers various fields as supercritical fluid (SCF) technology in catalysis, ionic liquids (Il), ligand design for SFCs and Ils, thermomorphic solvent systems, reactor design and many more. The reader will receive a critical survey of the state of the art together with suggestions helping to choose on which integrated catalyst/solvent/condition-system is probably best for a given transformation.
Inhaltsverzeichnis zu „Regulated Systems for Multiphase Catalysis “
- H. Hugl and M. Nobis: Multiphase Catalysis in Industry- A. Behr, B. Turkowski, R. Roll, R. Schöbel and G. Henze: Multiphase Catalysis in Temperature-Dependent Multi-Component Solvent (TMS) Systems
- E. Hermanns, J. Hasenjäger and B. Drießen-Hölscher: PEG-Modified Ligands for Catalysis and Catalyst Recycling in Thermoregulated Systems
- J.A. Gladysz and V. Tesevic: Temperature-Controlled Catalyst Recycling: New Protocols Based upon Temperature-Dependent Solubilities of Fluorous Compounds and Solid/Liquid Phase Separations
- W. Leitner and J. Langanke: Regulated Systems for Catalyst Immobilisation based on Supercritical Carbon Dioxide
- S. Pitter, E. Dinjus, C. Ionescu, C. Maniut, P. Makarczyk and F. Patcas: Evaluation of Supercritical Carbon Dioxide as a Tuneable Reaction Medium for Homogeneous Catalysis
- A. Riisager, R. Fehrmann, M. Haumann and P. Wasserscheid: Catalytic SILP Materials
- Y. Önal and P. Claus: Engineering Aspects of Aqueous Biphasic Catalysis
Autoren-Porträt
Walter Leitner, geboren in Wien. Neben Kaffeetrinken und Zeitunglesen umfasste sein Praktikum als Krimiautor folgende meist unfreiwillig ausgeübte Tätigkeiten: Archivar, Blockflötenlehrer, Keksverkäufer, Komponist, Nachhilfelehrer, Notenkopist, Opernlibrettist, Paketzusteller, Tenor im Domchor zu St. Stephan, Theaterschreiber, Zettelverteiler.
Bibliographische Angaben
- 2008, XV, 208 Seiten, Maße: 16,3 x 24,5 cm, Gebunden, Englisch
- Herausgegeben: Walter Leitner, Markus Hölscher
- Verlag: Springer, Berlin
- ISBN-10: 3540710744
- ISBN-13: 9783540710745
- Erscheinungsdatum: 11.07.2008
Sprache:
Englisch
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