Biohydrogen III

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Klappentext Hydrogen is an almost ideal fuel and its wider use will result in an improvement in the environment due to factors including decreased air pollution. Hydrogen is the element of greatest abundance in the universe; however, its production from renewable resources remains a major challenge. The papers presented within this volume enhance and expand upon presentations made at the "Workshop on Biohydrogen 2002". Biohydrogen III evaluates the current status of Biohydrogen research worldwide and consider future research directions. Zusammenfassung Hydrogen is an almost ideal fuel and its wider use results in decreased air pollution. However! its production from renewable resources remains a major challenge. This volume contains papers presented at the "Workshop on Biohydrogen 2002". It evaluates the status of Biohydrogen research and includes research on different fuel opportunities. Inhaltsverzeichnis Hydrogen Production; New Frontiers of Hydrogen Energy Systems, Novel Approachesto Exploit Microbial Hydrogen Metabolism, Application of Hydrogenase for Renewable Energy Model Systems; Photosynthesis and Photobioreactor; Photo-Biological Hydrogen Production by the Uptakehydrogenase and PHB Synthase Deficient Mutant of Rhodobacter Sphaeroides, Hydrogen Production by Suspension and Immobilized Cultures of Phototrophic Microorganisms. Technological Aspects; Hydrogenase, The Potential of Using Cyanobacteria as Producers of Molecular Hydrogen Photobiological Hydrogen Production by Cyanobacteria Utilizing Nitrogenase Systems - Present Status and Future Development, Fundamentals and Limiting Processes of Biological Hydrogen Production; Bio Molecular Device The Isolation of Green Algal Strains with Outstanding H2-Productivity, Identification of a CIS-Acting Element Controlling Anaerobic Expression of the hydA Gene from Chlamydomonas Reinhardtii, Glycolipid Liquid Crystals as Novel Matrices for Membrane Protein Manipulations, Artificial Phytanyl-Chained Glycolipid Vesicle Membranes with Low Proton Permeability a Suitable for Proton Pump Reconstitution Matrices, Amphipols: Strategies for an Improved PS2 Environment in Detergent-Free Aqueous Solution, Monolayers and Longmuir-Blodgett Films of Photosystem I on Various Subphase Surfaces, Modular Device for Hydrogen Production: Optimization of (Individual) Components...

Zusammenfassung
Hydrogen is an almost ideal fuel and its wider use results in decreased air pollution. However, its production from renewable resources remains a major challenge. This volume contains papers presented at the "Workshop on Biohydrogen 2002". It evaluates the status of Biohydrogen research and includes research on different fuel opportunities.

Inhalt

Hydrogen Production; New Frontiers of Hydrogen Energy Systems, Novel Approachesto Exploit Microbial Hydrogen Metabolism, Application of Hydrogenase for Renewable Energy Model Systems; Photosynthesis and Photobioreactor; Photo-Biological Hydrogen Production by the Uptakehydrogenase and PHB Synthase Deficient Mutant of Rhodobacter Sphaeroides, Hydrogen Production by Suspension and Immobilized Cultures of Phototrophic Microorganisms. Technological Aspects; Hydrogenase, The Potential of Using Cyanobacteria as Producers of Molecular Hydrogen Photobiological Hydrogen Production by Cyanobacteria Utilizing Nitrogenase Systems - Present Status and Future Development, Fundamentals and Limiting Processes of Biological Hydrogen Production; Bio Molecular Device The Isolation of Green Algal Strains with Outstanding H2-Productivity, Identification of a CIS-Acting Element Controlling Anaerobic Expression of the hydA Gene from Chlamydomonas Reinhardtii, Glycolipid Liquid Crystals as Novel Matrices for Membrane Protein Manipulations, Artificial Phytanyl-Chained Glycolipid Vesicle Membranes with Low Proton Permeability a Suitable for Proton Pump Reconstitution Matrices, Amphipols: Strategies for an Improved PS2 Environment in Detergent-Free Aqueous Solution, Monolayers and Longmuir-Blodgett Films of Photosystem I on Various Subphase Surfaces, Modular Device for Hydrogen Production: Optimization of (Individual) Components

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09780080443560
    • Anzahl Seiten 196
    • Editor Miyake Jun
    • Herausgeber Elsevier Science & Technology
    • Gewicht 450g
    • Untertitel Renewable Energy System by Biological Solar Energy Conversion
    • Größe H276mm x B216mm x T13mm
    • Jahr 2004
    • EAN 9780080443560
    • Format Fester Einband
    • ISBN 978-0-08-044356-0
    • Veröffentlichung 19.02.2004
    • Titel Biohydrogen III
    • Autor Rogner Matthias , Igarashi Yasuo , Asada Yasuo
    • Sprache Englisch

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