Biological production of hydrogen can be carried out by photoautotrophic or photoheterotrophic organisms. Here, the photosystems of both processes are described. The main drawback of the photoautotrophic hydrogen production process is oxygen inhibition. The few efficiencies reported on the conversion of light energy into hydrogen energy are low, less than 1.5 n a solar spectrum basis. However, these can be increased to 3–10°by the immediate removal of produced oxygen. The photochemical efficiency of hydrogen production can be calculated theoretically, and is estimated to be 10øon solar spectrum basis) for the photoheterotrophic process. With use of the theoretical photochemical efficiency, and the climatic data on sunlight irradiance at a c...
Hydrogen is regarded as an ideal energy carrier if it is produced from renewable resources such as b...
Solar energy is the largest energy source on Earth. In contrast to the limited and greenhouse gases‐...
There are many biological paths to hydrogen production, each with potential advantages, but also wit...
Biological production of hydrogen can be carried out by photoautotrophic or photoheterotrophic organ...
Biological production of hydrogen can be carried out by photoautotrophic or photoheterotrophic organ...
Photobiological hydrogen production can be obtained by biological systems under sun irradiation. Cer...
Hydrogen can be produced by a number of processes, ranging from water electrolysis by means of elect...
Microbiological photosynthesis is a promising tool for producing hydrogen in an ecologically friendl...
Photobiological production of H2 by cyanobacteria is considered to be an ideal source of renewable e...
Hydrogen production by phototrophic organisms, which has been known since the 1930's, occurs at...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Biological hydrogen evolution provides a sustainable and environmentally friendly way to produce cle...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Biological hydrogen production processes are considered as an environmentally friendly way to produc...
Biological systems offer a variety of ways to generate renewable energy. Among them, unicellular gre...
Hydrogen is regarded as an ideal energy carrier if it is produced from renewable resources such as b...
Solar energy is the largest energy source on Earth. In contrast to the limited and greenhouse gases‐...
There are many biological paths to hydrogen production, each with potential advantages, but also wit...
Biological production of hydrogen can be carried out by photoautotrophic or photoheterotrophic organ...
Biological production of hydrogen can be carried out by photoautotrophic or photoheterotrophic organ...
Photobiological hydrogen production can be obtained by biological systems under sun irradiation. Cer...
Hydrogen can be produced by a number of processes, ranging from water electrolysis by means of elect...
Microbiological photosynthesis is a promising tool for producing hydrogen in an ecologically friendl...
Photobiological production of H2 by cyanobacteria is considered to be an ideal source of renewable e...
Hydrogen production by phototrophic organisms, which has been known since the 1930's, occurs at...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Biological hydrogen evolution provides a sustainable and environmentally friendly way to produce cle...
Photobiological hydrogen production has advanced significantly in recent years, and on the way to be...
Biological hydrogen production processes are considered as an environmentally friendly way to produc...
Biological systems offer a variety of ways to generate renewable energy. Among them, unicellular gre...
Hydrogen is regarded as an ideal energy carrier if it is produced from renewable resources such as b...
Solar energy is the largest energy source on Earth. In contrast to the limited and greenhouse gases‐...
There are many biological paths to hydrogen production, each with potential advantages, but also wit...