Results 131 to 140 of about 2,115 (175)
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Engineering algae for biohydrogen and biofuel production
Current Opinion in Biotechnology, 2009There is currently substantial interest in utilizing eukaryotic algae for the renewable production of several bioenergy carriers, including starches for alcohols, lipids for diesel fuel surrogates, and H2 for fuel cells. Relative to terrestrial biofuel feedstocks, algae can convert solar energy into fuels at higher photosynthetic efficiencies, and can ...
Laura L, Beer +3 more
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Biohydrogen and Biomethane Production
2018The term biorefinery refers to any industrial installation where biomass is converted into marketable energy products, so-called biofuels, and chemical intermediates or other materials of interest to industry. Due to the diverse and heterogeneous nature of biomass, a wide array of technologies is used for its transformation into specific final products.
Narcis Homs +2 more
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Methods of Biohydrogen Production and Usage of Bioreactors for Biohydrogen Production
2018Dünyada, kömür ve petrol türevi fosil yakıtların hızla tükenmesi ve çevre kirliliğine sebep olması gibi nedenlerden dolayı yenilenebilir enerji kaynaklarının önemi gün geçtikçe artmaktadır. Yenilenebilir enerji kaynaklarının önemli avantajları arasında; sürdürülebilirliği, çevresel olumsuz etkilerinin fosil yakıtlara göre az olması ve pek çok ülkede ...
DURSUN, Nesrin, GÜLŞEN, Hakki
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Fermentative biohydrogen production systems integration
Bioresource Technology, 2011Acidogenic fermentation can be used to produce hydrogen from a range of biomass sources. The effluent from this process can be utilised in a number of biological processes enabling further recovery of energy from the biomass. In this review a number of candidate technologies are assessed including conventional methanogenic anaerobic digestion, dark ...
A J, Guwy +4 more
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Biohydrogen Production from Anaerobic Fermentation
2011Significant progress has been achieved in China for biohydrogen production from organic wastes, particularly wastewater and agricultural residues, which are abundantly available in China. This progress is reviewed with a focus on hydrogen-producing bacteria, fermentation processes, and bioreactor configurations.
Ai-Jie, Wang +2 more
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Influence of Ni2+ concentration on biohydrogen production
Bioresource Technology, 2008In this paper, the effect of Ni(2+) concentration ranging from 0 to 50mg/L on fermentative hydrogen production by mixed cultures was investigated in batch test. The results showed that at 35 degrees C and initial pH 7.0, Ni(2+) was able to enhance the hydrogen production rate with increasing Ni(2+) concentration from 0 to 0.2mg/L, and enhance the ...
Jianlong, Wang, Wei, Wan
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