The improvement of H-2 production capabilities of hydrogen (H-2)-producing microorganisms is a challenging issue. Microorganisms have evolved for fast growth and substrate utilization rather than H-2 production. To develop good H-2-producing biocatalysts, many studies have focused on the redirection and/or reconstruction of cellular metabolisms. These studies included the elimination of enzymes and carbon pathways interfering or competing with H-2 production, the incorporation of non-native metabolic pathways leading to H-2 production, the utilization of various carbon substrates, the rectification of H-2-producting enzymes (nitrogenase and hydrogenase) and photophosphorylation systems, and in silico pathway flux analysis, among others. Owi...
[en] The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production o...
Hydrogen, the most abundant and lightest element in the universe, has much potential as a future ene...
Hydrogen gas exhibits potential as a sustainable fuel for the future. Therefore, many attempts have ...
International audienceTwo types of enzymes can catalyze the reduction of protons to H2, namely nitro...
Biohydrogen production technology can utilize renewable energy sources like biomass for the generati...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Microbiological photosynthesis is a promising tool for producing hydrogen in an ecologically friendl...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Despite increasing interest in hydrogen (H-2) as an alternative energy carrier, the current producti...
Hydrogen with high energy content is considered to be a promising alternative clean energy source. B...
The current fossil fuel-based generation of energy has led to large-scale industrial development. Ho...
Biological means of hydrogen (H2) production has attracted tremendous research and development atten...
The production of H2 from renewable sources, such as water or biomass, is a sustainable strategy for...
The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production of hyd...
729-738Biological hydrogen production is one of the most challenging areas of technology development...
[en] The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production o...
Hydrogen, the most abundant and lightest element in the universe, has much potential as a future ene...
Hydrogen gas exhibits potential as a sustainable fuel for the future. Therefore, many attempts have ...
International audienceTwo types of enzymes can catalyze the reduction of protons to H2, namely nitro...
Biohydrogen production technology can utilize renewable energy sources like biomass for the generati...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Microbiological photosynthesis is a promising tool for producing hydrogen in an ecologically friendl...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Despite increasing interest in hydrogen (H-2) as an alternative energy carrier, the current producti...
Hydrogen with high energy content is considered to be a promising alternative clean energy source. B...
The current fossil fuel-based generation of energy has led to large-scale industrial development. Ho...
Biological means of hydrogen (H2) production has attracted tremendous research and development atten...
The production of H2 from renewable sources, such as water or biomass, is a sustainable strategy for...
The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production of hyd...
729-738Biological hydrogen production is one of the most challenging areas of technology development...
[en] The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production o...
Hydrogen, the most abundant and lightest element in the universe, has much potential as a future ene...
Hydrogen gas exhibits potential as a sustainable fuel for the future. Therefore, many attempts have ...