Improvement of biohydrogen production and intensification of biogas formation

H sub(2) is considered as the ultimate cleanest energy carrier to be generated from renewable sources. This minireview intends to point out that in addition to this function, biologically produced hydrogen is important for environmental biotechnological applications. The purple sulphur phototrophic...

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Veröffentlicht in:Reviews in environmental science and biotechnology 2004-12, Vol.3 (4), p.321-330
Hauptverfasser: Kovacs, Kornel L, Kovacs, Akos T, Maroti, Gergely, Bagi, Zoltan, Csanadi, Gyula, Perei, Katalin, Balint, Balazs, Balogh, Judit, Fueloep, Andras, Meszaros, Livia S, Toth, Andras, David, Reka, Latinovics, Dora, Varga, Andras, Rakhely, Gabor
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Sprache:eng
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Zusammenfassung:H sub(2) is considered as the ultimate cleanest energy carrier to be generated from renewable sources. This minireview intends to point out that in addition to this function, biologically produced hydrogen is important for environmental biotechnological applications. The purple sulphur phototrophic bacterium, Thiocapsa roseopersicina BBS contains several NiFe hydrogenases. These enzymes can be used e.g., as fuel cell H sub(2) splitting catalyst or in photoheterotrophic H sub(2) production. Microorganisms that supply H sub(2) in situ facilitate the biodegradation of organic material and concomitant biogas production. Fast, efficient, and economic treatment of organic waste, sludge, manure is achieved and generation of significant amount of renewable fuel from waste is intensified. The technology has been field tested under mesophilic and thermophilic conditions with positive results.
ISSN:1569-1705
1572-9826
DOI:10.1007/s11157-004-7460-2