This paper presents the life cycle inventory (LCI) of hydrogen production by Clostridium butyricum fermentation of Scenedesmus obliquus hydrolysate. The main purpose of this work was to evaluate the potential of H2 production from microalgal biomass and the respective energy consumption and CO2 emissions in the bioconversion process considering the microalga production, acid hydrolysis of S. obliquus biomass, preparation of the inoculum and culture media, and fermentation. The scale-up to industrial production was not envisaged. The hydrogen yield obtained in this work was 2.9 ± 0.3 mol H2/mol sugars in S. obliquus hydrolysate. Results show that this process of biological production of hydrogen can achieve 7270 MJ/MJH2 of energy consumptio...
Photobiological production of H2 by cyanobacteria is considered to be an ideal source of renewable e...
This paper discusses the overall energy consumption and greenhouse gas emissions when extracting pig...
The exploitation of aquatic biomass for energetic purpose is a promising field of research. Chlamydo...
This paper presents the life cycle inventory (LCI) of hydrogen production by Clostridium butyricum f...
This paper presents an energetic and environmental evaluation of the fermentative hydrogen productio...
Renewable, sustainable and carbon-neutral energy production is needed to deal with the challenges of...
Hydrogen (H2) gas is seen as an ideal future energy carrier because it is easily converted into elec...
Fossil fuels are a limited type of feedstock, increasingly expensive, and carrying strong polluting ...
Abstract Microalgae are simple chlorophyll containing organisms, they have high photosynthetic effic...
The current energy market requires urgent revision for the introduction of renewable, less-polluting...
This paper presents laboratory results of biological production of hydrogen by photoautrotophic cyan...
The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production of hyd...
Demand for clean energy has increased due to the proliferation of climate change impact from excessi...
Hydrogen is an environmentally friendly biofuel which, if widely used, could reduce atmospheric carb...
[en] The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production o...
Photobiological production of H2 by cyanobacteria is considered to be an ideal source of renewable e...
This paper discusses the overall energy consumption and greenhouse gas emissions when extracting pig...
The exploitation of aquatic biomass for energetic purpose is a promising field of research. Chlamydo...
This paper presents the life cycle inventory (LCI) of hydrogen production by Clostridium butyricum f...
This paper presents an energetic and environmental evaluation of the fermentative hydrogen productio...
Renewable, sustainable and carbon-neutral energy production is needed to deal with the challenges of...
Hydrogen (H2) gas is seen as an ideal future energy carrier because it is easily converted into elec...
Fossil fuels are a limited type of feedstock, increasingly expensive, and carrying strong polluting ...
Abstract Microalgae are simple chlorophyll containing organisms, they have high photosynthetic effic...
The current energy market requires urgent revision for the introduction of renewable, less-polluting...
This paper presents laboratory results of biological production of hydrogen by photoautrotophic cyan...
The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production of hyd...
Demand for clean energy has increased due to the proliferation of climate change impact from excessi...
Hydrogen is an environmentally friendly biofuel which, if widely used, could reduce atmospheric carb...
[en] The project MICRO-H2 aims to study and exploit the microbial (bacterial and algal) production o...
Photobiological production of H2 by cyanobacteria is considered to be an ideal source of renewable e...
This paper discusses the overall energy consumption and greenhouse gas emissions when extracting pig...
The exploitation of aquatic biomass for energetic purpose is a promising field of research. Chlamydo...