Biomass feedstock is desirable for bio-hydrogen and bioethanol production as they have less competition with food crops and are hard to be localized geographically. Water hyacinth (Eichhornia crassipes) is the fastest growing plant, containing abundant of cellulose and hemicellulose which can be easily converted into fermentable sugars and is more suitable feedstock for bio-hydrogen and bioethanol. In this study bio-hydrogen and bioethanol were produced from dry biomass of water hyacinth by microbial fermentation under influence of iron nanoparticles. For fermentative bio-hydrogen production dry powdered biomass was first pretreated and then saccharified into fermentable sugars by enzymes. Sugars of enzymatic hydrolysis were xylose and gluc...
[en] This paper investigated the enhancement effect of nanometre-sized metallic (Pd, Ag and Cu) or m...
This study presents a potential approach to enhance integrated sequential biohydrogen production fro...
The production of biohydrogen can be improved by focusing on the nutrients needed by fermentative b...
The production of biohydrogen can be improved by focusing on the nutrients needed by fermentative ba...
Three different studies were performed for the conversion of water hyacinth (Eichhornia crassipes) p...
Nanomaterials have been predicted to play a key role as catalysts in the renewable biofuels producti...
The world has seen a vast expansion in industrialization and this has in turn seen an increase in de...
The present study reports Fe3O4 nanoparticles (Fe3O4 NPs) induced enhanced hydrogen production via c...
AbstractKinetics of nano-catalysed dark fermentative biohydrogen production from molasses-based dist...
Lignocellulosic biomass resources are renewable materials that can be converted to fermentable sugar...
Lignocellulosic biomass resources are renewable materials that can be converted to fermentable sugar...
With industrial development growing rapidly, there is a need for environmentally sustainable energy ...
Nickel oxide and hematite nanoparticles were used to enhance bio-hydrogen production from complex wa...
[en] This paper investigated the enhancement effect of nanometre-sized metallic (Pd, Ag and Cu) or m...
This study presents a potential approach to enhance integrated sequential biohydrogen production fro...
The production of biohydrogen can be improved by focusing on the nutrients needed by fermentative b...
The production of biohydrogen can be improved by focusing on the nutrients needed by fermentative ba...
Three different studies were performed for the conversion of water hyacinth (Eichhornia crassipes) p...
Nanomaterials have been predicted to play a key role as catalysts in the renewable biofuels producti...
The world has seen a vast expansion in industrialization and this has in turn seen an increase in de...
The present study reports Fe3O4 nanoparticles (Fe3O4 NPs) induced enhanced hydrogen production via c...
AbstractKinetics of nano-catalysed dark fermentative biohydrogen production from molasses-based dist...
Lignocellulosic biomass resources are renewable materials that can be converted to fermentable sugar...
Lignocellulosic biomass resources are renewable materials that can be converted to fermentable sugar...
With industrial development growing rapidly, there is a need for environmentally sustainable energy ...
Nickel oxide and hematite nanoparticles were used to enhance bio-hydrogen production from complex wa...
[en] This paper investigated the enhancement effect of nanometre-sized metallic (Pd, Ag and Cu) or m...
This study presents a potential approach to enhance integrated sequential biohydrogen production fro...
The production of biohydrogen can be improved by focusing on the nutrients needed by fermentative b...