Biomethane potential from the anaerobic digestion of rice straw, hazelnut skin, and cocoa bean shell was investigated after applying an organosolv pretreatment. Pretreatment of the three lignocellulosic materials was performed at 150°C and 180°C for 60 min using 50% (v/v) ethanol as organic solvent. Afterward, untreated and pretreated feedstocks were used in batch biomethane production tests under mesophilic conditions (37 ± 1°C). The highest efficiency was obtained pretreating the rice straw at 180°C, which resulted in a 42% higher biomethane production yield from the 235 mL CH4/g volatile solid obtained with the untreated straw. A lower increase was achieved for hazelnut skin, whereas a partial inhibition of the biomethane production was ...
The reuse of lignocellulosic biomaterials as a source of clean energy has been explored in recent ye...
Lignocellulosic materials (LMs) are the most abundant residues on the planet and have a great poten...
With regard to social and environmental sustainability, second-generation biofuel and biogas product...
Biomethane potential from the anaerobic digestion of rice straw, hazelnut skin, and cocoa bean shell...
Biogas production via anaerobic digestion is a well-established technology for renewable energy prod...
This study investigated the effects of two different chemical pretreatments on the methane yields o...
This work investigated the effect of three different chemical pretreatment methods on the biogas pro...
Organosolv pretreatment was used to improve solid-state anaerobic digestion (SSAD) for methane produ...
This research investigated the effects of two different chemical pretreatments on the methane yields...
This research investigated the effects of three different chemical pretreatments on the methane yiel...
Abstract Lignocellulosic materials are the most abundant biomass on the planet, representing a great...
Abstract Agricultural residues, such as lignocellulosic materials (LM), are the most attractive rene...
Agricultural residues, such as lignocellulosic materials (LM), are the most attractive renewable bio...
This study investigated effects of chemical pretreatment with N-methylmorpholine-N-oxide (NMMO) on ...
Biogas production via anaerobic digestion is a constantly growing technology all around the world. L...
The reuse of lignocellulosic biomaterials as a source of clean energy has been explored in recent ye...
Lignocellulosic materials (LMs) are the most abundant residues on the planet and have a great poten...
With regard to social and environmental sustainability, second-generation biofuel and biogas product...
Biomethane potential from the anaerobic digestion of rice straw, hazelnut skin, and cocoa bean shell...
Biogas production via anaerobic digestion is a well-established technology for renewable energy prod...
This study investigated the effects of two different chemical pretreatments on the methane yields o...
This work investigated the effect of three different chemical pretreatment methods on the biogas pro...
Organosolv pretreatment was used to improve solid-state anaerobic digestion (SSAD) for methane produ...
This research investigated the effects of two different chemical pretreatments on the methane yields...
This research investigated the effects of three different chemical pretreatments on the methane yiel...
Abstract Lignocellulosic materials are the most abundant biomass on the planet, representing a great...
Abstract Agricultural residues, such as lignocellulosic materials (LM), are the most attractive rene...
Agricultural residues, such as lignocellulosic materials (LM), are the most attractive renewable bio...
This study investigated effects of chemical pretreatment with N-methylmorpholine-N-oxide (NMMO) on ...
Biogas production via anaerobic digestion is a constantly growing technology all around the world. L...
The reuse of lignocellulosic biomaterials as a source of clean energy has been explored in recent ye...
Lignocellulosic materials (LMs) are the most abundant residues on the planet and have a great poten...
With regard to social and environmental sustainability, second-generation biofuel and biogas product...