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- W4153742 abstract "This chapter discusses energy production through the employment of immobilized cells as well as the immobilization of hydrogen-and methane-producing microorganisms in synthetic or natural polymers. The employment of immobilized microorganisms and organelles makes possible the prolonged gas production; though the observable power output is weak. The molecular breeding of hydrogen-producing bacteria is important for the practical application of a bioenergy conversion system. Photosynthetic bacteria do not appear to be suitable for commercial hydrogen production. On the other hand, the blue-green algae are attracting attention as hydrogen-photo-production systems. Subsequently, by coupling the photosynthetic system in plant chloroplasts with a hydrogenase, one could accomplish the light-driven splitting of water into hydrogen and oxygen. Methane is also an attractive energy source, and it can be produced by various microorganisms from waste biomass. However, the enzymes involved in the biogas-producing systems, such as hydrogenase and nitrogenase, are very unstable and therefore, it is difficult to use whole cells for continuous biogas production. Biochemical energy-conversion systems in principle are attractive as new energy production methods." @default.
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- W4153742 date "1983-01-01" @default.
- W4153742 modified "2023-10-16" @default.
- W4153742 title "Energy Production with Immobilized Cells" @default.
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- W4153742 doi "https://doi.org/10.1016/b978-0-12-041104-7.50012-9" @default.
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