Anaerobic methane generation from algae is hindered by the slow and poor algae biodegradability. A novel free ammonia (NH3 i.e. FA) pretreatment technology was proposed in this work to enhance anaerobic methane generation from algae cultivated using a real secondary effluent. The algae solubilisation was 0.05-0.06 g SCOD/g TCOD (SCOD: soluble chemical oxygen demand; TCOD: total chemical oxygen demand) following FA pretreatment of 240-530 mg NH3-N/L for 24 h, whereas the solubilisation was only 0.01 g SCOD/g TCOD for the untreated algae. This indicates that FA pretreatment at 240-530 mg NH3-N/L could substantially enhance algae solubilisation. Biochemical methane potential tests revealed that FA pretreatment on algae at 240-530 mg NH3-N/L is...
Algal biomass can be a potential substrate for anaerobic digestion. However, raw algae cells show a ...
The use of microalgae in wastewater systems has shown to be an effective strategy for secondary trea...
© 2019 Bohutskyi, Keller, Phan, Parris, Li, Richardson and Kopachevsky. Wastewater algal treatment s...
Anaerobic methane generation from algae is hindered by the slow and poor algae biodegradability. A n...
© 2018 American Chemical Society. Microalgae are third generation feedstocks for bio-hydrogen produc...
Energy recovery in the form of methane from sludge/wastewater is restricted by the poor and slow bio...
This study proposed a novel free ammonia (FA, i.e., NH3 ) pretreatment technology to enhance anaerob...
Energy recovery in the form of methane from sludge/wastewater is restricted by the poor and slow bio...
This study proposed a novel free ammonia (FA, i.e., NH3) pretreatment technology to enhance anaerobi...
The methane yield from the digestion of algae is typically much lower than the theoretical methane y...
Microalgae have recently drawn attention as a potential resource for biofuels generation. In the sho...
Microalgal biomass is a candidate feedstock for biofuel production. To improve the sustainability of...
Anaerobic digestion of algal biomass will be an essential component of algal biofuel production syst...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
Abstract Background The fact that microalgae perform very efficiently photosynthetic conversion of s...
Algal biomass can be a potential substrate for anaerobic digestion. However, raw algae cells show a ...
The use of microalgae in wastewater systems has shown to be an effective strategy for secondary trea...
© 2019 Bohutskyi, Keller, Phan, Parris, Li, Richardson and Kopachevsky. Wastewater algal treatment s...
Anaerobic methane generation from algae is hindered by the slow and poor algae biodegradability. A n...
© 2018 American Chemical Society. Microalgae are third generation feedstocks for bio-hydrogen produc...
Energy recovery in the form of methane from sludge/wastewater is restricted by the poor and slow bio...
This study proposed a novel free ammonia (FA, i.e., NH3 ) pretreatment technology to enhance anaerob...
Energy recovery in the form of methane from sludge/wastewater is restricted by the poor and slow bio...
This study proposed a novel free ammonia (FA, i.e., NH3) pretreatment technology to enhance anaerobi...
The methane yield from the digestion of algae is typically much lower than the theoretical methane y...
Microalgae have recently drawn attention as a potential resource for biofuels generation. In the sho...
Microalgal biomass is a candidate feedstock for biofuel production. To improve the sustainability of...
Anaerobic digestion of algal biomass will be an essential component of algal biofuel production syst...
In anaerobic digestion of microalgae, the intracellular material may remain intact due to the non-ru...
Abstract Background The fact that microalgae perform very efficiently photosynthetic conversion of s...
Algal biomass can be a potential substrate for anaerobic digestion. However, raw algae cells show a ...
The use of microalgae in wastewater systems has shown to be an effective strategy for secondary trea...
© 2019 Bohutskyi, Keller, Phan, Parris, Li, Richardson and Kopachevsky. Wastewater algal treatment s...