WOS: 000356549000011Microalgae have remarkable molecular pathways to generate biohydrogen, an environment friendly and sustainable energy source. For this reason, various studies for microalgal biohydrogen production have been carried out. The objective of the present study was to address the effect of environmental factors simulating outdoor conditions using D1 mutant strains and CC124 as control strain. The results showed that, in any cases D1 mutants were effective in terms of hydrogen generation capacity; however among them strain D239-40 has attractive in term of hydrogen output. The results are promising for further developments both in genetic and bioprocess aspect aiming scale up and commercialization for outdoor cultures. Copyright...
It is well known that over the last 60 years the trend of long-lived greenhouse gas emissions have s...
PubMed ID: 22858490This study focuses on a scale-up procedure considering two vital parameters light...
The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production of hyd...
WOS: 000356549000011Microalgae have remarkable molecular pathways to generate biohydrogen, an enviro...
WOS: 000356549000011Microalgae have remarkable molecular pathways to generate biohydrogen, an enviro...
WOS: 000344825400009Biohydrogen production from microalgae still remains to be discussed and examine...
Hydrogen is a promising energy carrier that has an important share in the global energy market when ...
In this study, we investigated biohydrogen production potentials of Chlamydomonas reinhardtii strain...
Utilization of renewable sources for energy is becoming an increasing necessity, due to the impendin...
In this study, the photosynthetic hydrogen production rates by some strains of green microalgae were...
Microorganisms can produce hydrogen biologically, with species ranging from photosynthetic and ferme...
Microorganisms can produce hydrogen biologically, with species ranging from photosynthetic and ferme...
Algae technology represents an extensive research field which has developed rapidly over the last de...
Hydrogen production by microalgae is a promising technology to achieve sustainable and clean energy....
Microalgae, as facultative aerobic organisms, convert solar energy to produce biohydrogen under anae...
It is well known that over the last 60 years the trend of long-lived greenhouse gas emissions have s...
PubMed ID: 22858490This study focuses on a scale-up procedure considering two vital parameters light...
The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production of hyd...
WOS: 000356549000011Microalgae have remarkable molecular pathways to generate biohydrogen, an enviro...
WOS: 000356549000011Microalgae have remarkable molecular pathways to generate biohydrogen, an enviro...
WOS: 000344825400009Biohydrogen production from microalgae still remains to be discussed and examine...
Hydrogen is a promising energy carrier that has an important share in the global energy market when ...
In this study, we investigated biohydrogen production potentials of Chlamydomonas reinhardtii strain...
Utilization of renewable sources for energy is becoming an increasing necessity, due to the impendin...
In this study, the photosynthetic hydrogen production rates by some strains of green microalgae were...
Microorganisms can produce hydrogen biologically, with species ranging from photosynthetic and ferme...
Microorganisms can produce hydrogen biologically, with species ranging from photosynthetic and ferme...
Algae technology represents an extensive research field which has developed rapidly over the last de...
Hydrogen production by microalgae is a promising technology to achieve sustainable and clean energy....
Microalgae, as facultative aerobic organisms, convert solar energy to produce biohydrogen under anae...
It is well known that over the last 60 years the trend of long-lived greenhouse gas emissions have s...
PubMed ID: 22858490This study focuses on a scale-up procedure considering two vital parameters light...
The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production of hyd...