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  4. Biotechnological hydrogen production by photosynthesis
 
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2014
Journal Article
Title

Biotechnological hydrogen production by photosynthesis

Abstract
Microbiological photosynthesis is a promising tool for producing hydrogen in an ecologically friendly and economically efficient way. Certain microorganisms (e.g. algae and bacteria) can produce hydrogen using hydrogenase and/or nitrogenase enzymes. However, their natural capacity to produce hydrogen is relatively low. Thus, there is a need to optimize their core photosynthetic processes as well as their cultivation, for more efficient hydrogen production. This review aims to provide a holistic overview of the recent technological and research developments relating to photobiological hydrogen production and downstream processing. First we cover photobiological hydrogen synthesis within cells and the enzymes that catalyze the hydrogen production. This is followed by strategies for enhancing bacterial hydrogen production by genetic engineering, technological development, and innovation in bioreactor design. The remaining sections focus on hydrogen as a product, that is, quantification via (in-process) gas analysis, recent developments in gas separation technology. Finally, a discussion of the sociological (market) barriers to future hydrogen usage is provided as well as an overview of methods for life cycle assessment that can be used to calculate the environmental consequences of hydrogen production.
Author(s)
Weber, Jost
TU Dresden, Institut für Lebensmitteltechnologie
Krujatz, Felix
TU Dresden, Institut für Lebensmitteltechnologie
Hilpmann, Gerd
TU Dresden, Chemieingenieurwesen
Grützner, Sara
TU Dresden, Institute of Power Engineering
Herrmann, Jana
TU Dresden, Lehrstuhl für Umweltmanagement
Thierfelder, Simone
TU Dresden, Institut für Lebensmitteltechnologie
Bienert, Georg
TU Dresden, Lehrstuhl für Umweltmanagement
Illing, Rico
TU Dresden, Institut für Werkstoffwissenschaften
Helbig, Karsten
TU Dresden, Institut für Lebensmitteltechnologie
Hurtado, Antonio
TU Dresden, Institute of Power Engineering
Gianaurelio, Cuniberti
TU Dresden, Institut für Werkstoffwissenschaften
Mertig, Michael
TU Dresden, Institut für Chemie
Lange, Rüdiger
TU Dresden, Chemieingenieurwesen
Günther, Edeltraud
TU Dresden, Lehrstuhl für Umweltmanagement
Opitz, Jörg
Fraunhofer IKTS-MD
Lippmann, Wolfgang
TU Dresden, Institute of Power Engineering
Bley, Thomas
TU Dresden, Institut für Lebensmitteltechnologie
Haufe, Nora
TU Dresden, Institut für Werkstoffwissenschaften
Journal
Engineering in life sciences  
DOI
10.1002/elsc.201400056
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Keyword(s)
  • genetic engineering

  • hydrogen purification

  • life cycle assessment

  • lighting efficiency

  • photobioreactor

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