In this study, enzymatic pretreatment of microalgal biomass was investigated under different conditions and evaluated using biochemical methane potential (BMP) tests. Cellulase, glucohydrolase and an enzyme mix composed of cellulase, glucohydrolase and xylanase were selected based on the microalgae cell wall composition (cellulose, hemicellulose, pectin and glycoprotein). All of them increased organic matter solubilisation, obtaining high values already after 6 h of pretreatment with an enzyme dose of 1% for cellulase and the enzyme mix. BMP tests with pretreated microalgae showed a methane yield increase of 8 and 15% for cellulase and the enzyme mix, respectively. Prospective research should evaluate enzymatic pretreatments in continuous a...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
The pre-treatment of microalgae cell walls is known to be a key factor to enhance methane (CH4) yiel...
Klassen V, Blifernez-Klassen O, Wobbe L, Schlüter A, Kruse O, Mussgnug JH. Efficiency and biotechnol...
In this study, enzymatic pretreatment of microalgal biomass was investigated under different conditi...
Microalgae have many advantages for the production of biogas by anaerobic digestion process. However...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
Microalgae have been intensively studied as a source of biomass for replacing conventional fossil fu...
Microalgae have been considered as one of the most promising biomass resources for the generation of...
Microalgae have been considered as one of the most promising biomass resources for the generation of...
Microalgae have recently drawn attention as a potential resource for biofuels generation. In the sho...
Microalgae have recently drawn attention as a potential resource for biofuels generation. In the sho...
Microalgal biomass harvested from wastewater treatment high rate algal ponds may be valorised throug...
Microalgal biomass harvested from wastewater treatment high rate algal ponds may be valorised throug...
Biogas generation is the least complex technology to transform microalgae biomass into bioenergy. Si...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
The pre-treatment of microalgae cell walls is known to be a key factor to enhance methane (CH4) yiel...
Klassen V, Blifernez-Klassen O, Wobbe L, Schlüter A, Kruse O, Mussgnug JH. Efficiency and biotechnol...
In this study, enzymatic pretreatment of microalgal biomass was investigated under different conditi...
Microalgae have many advantages for the production of biogas by anaerobic digestion process. However...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
Microalgae have been intensively studied as a source of biomass for replacing conventional fossil fu...
Microalgae have been considered as one of the most promising biomass resources for the generation of...
Microalgae have been considered as one of the most promising biomass resources for the generation of...
Microalgae have recently drawn attention as a potential resource for biofuels generation. In the sho...
Microalgae have recently drawn attention as a potential resource for biofuels generation. In the sho...
Microalgal biomass harvested from wastewater treatment high rate algal ponds may be valorised throug...
Microalgal biomass harvested from wastewater treatment high rate algal ponds may be valorised throug...
Biogas generation is the least complex technology to transform microalgae biomass into bioenergy. Si...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
The pre-treatment of microalgae cell walls is known to be a key factor to enhance methane (CH4) yiel...
Klassen V, Blifernez-Klassen O, Wobbe L, Schlüter A, Kruse O, Mussgnug JH. Efficiency and biotechnol...