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Titlebook: Microbial BioEnergy: Hydrogen Production; Davide Zannoni,Roberto De Philippis Book 2014 Springer Science+Business Media Dordrecht 2014 Bac

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1572-0233 uates from disciplines such as microbiology, biochemistry, biotechnology, photochemistry and chemical engineering, interested in basic and applied sciences..978-94-024-0612-2978-94-017-8554-9Series ISSN 1572-0233 Series E-ISSN 2215-0102
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Systems Biology of Photobiological Hydrogen Production by Purple Non-sulfur Bacteriaded by these approaches, metabolic engineering has targeted metabolic pathways that compete with H. production for electrons, leading to strains with higher H. yields and potentially linking the survival of these strains to the production of H. biofuel. A systems level examination of PNSB is now tur
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Bioelectrochemical Systems for Indirect Biohydrogen Productionopment, and decrease the material costs, MECs may emerge as a viable alternative technology for biohydrogen production. Moreover, these systems can also incorporate other value-added functionalities for applications in waste treatment, desalination, and bioremediation.
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Photosynthesis and Hydrogen Production in Purple Non Sulfur Bacteria: Fundamental and Applied Aspect obtained in laboratory and outdoor experiments..From these data, it comes out how many different cellular processes can interact and affect photosynthetic efficiency and how complex is the route that brings from light energy to hydrogen energy.
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Photobioreactors Design for Hydrogen Productionlgae are cultivated in large open ponds to produce microalgae biomass with a high C/N ratio; then, by changing the physiological conditions, a second anoxygenic step to produce hydrogen in closed PBRs. The different designs currently used for practical microalgae mass culture are reviewed, identifyi
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