Hydrogen production from biomass pyrolysis is economically and technologically attractive from the perspectives of energy and the environment. The two-stage catalytic pyrolysis of pine sawdust for hydrogen-rich gas production is investigated using nano-NiO/Al2O3 as the catalyst at high temperatures. The influences of residence time (0–30 s) and catalytic temperature (500–800 °C) on pyrolysis performance are examined in the distribution of pyrolysis products, gas composition, and gas properties. The results show that increasing the residence time decreased the solid and liquid products but increased gas products. Longer residence times could promote tar cracking and gas-phase conversion reactions and improve the syngas yield, H2/CO ratio, an...
Thermo-chemical processing of biomass is a promising alternative to produce renewable hydrogen as a ...
Gasification technology is an attractive alternative for the thermal treatment of solid wastes, prod...
The production of renewable hydrogen-enriched gas from biomass waste is a promising technology for t...
The potential of catalytic pyrolysis of biomass for hydrogen and bio-oil production has drawn great ...
Catalytic steam reforming is a promising approach to address tar formation and improve hydrogen (H2)...
Hydrogen can be used as fuel for power generation; however current hydrogen production processes are...
In this paper, Ni/MCM-41 catalyst was evaluated for hydrogen production from steam pyrolysis-gasific...
Energy security and environmental pollution are two major concerns worldwide. H2 from pyrolysis/gasi...
Bio-oil generated from biomass is becoming one of the most promising alternatives as potential energ...
The strategy of impregnating lignocellulosic biomass with aqueous metal salts solutions was efficien...
Energy recovery via waste utilization in gasification process is an attractive alternative energy so...
ABSTRACT: Tar formation is one of the major problems to deal with during biomass gasification. To ov...
The production of renewable hydrogen enriched gas from biomass waste is a promising technology for t...
Hydrogen production from the thermochemical conversion of biomass was carried out with nano-sized Ni...
Pyrolysis of biomass has been studied worldwide as a potential path to produce hydrogen from renewab...
Thermo-chemical processing of biomass is a promising alternative to produce renewable hydrogen as a ...
Gasification technology is an attractive alternative for the thermal treatment of solid wastes, prod...
The production of renewable hydrogen-enriched gas from biomass waste is a promising technology for t...
The potential of catalytic pyrolysis of biomass for hydrogen and bio-oil production has drawn great ...
Catalytic steam reforming is a promising approach to address tar formation and improve hydrogen (H2)...
Hydrogen can be used as fuel for power generation; however current hydrogen production processes are...
In this paper, Ni/MCM-41 catalyst was evaluated for hydrogen production from steam pyrolysis-gasific...
Energy security and environmental pollution are two major concerns worldwide. H2 from pyrolysis/gasi...
Bio-oil generated from biomass is becoming one of the most promising alternatives as potential energ...
The strategy of impregnating lignocellulosic biomass with aqueous metal salts solutions was efficien...
Energy recovery via waste utilization in gasification process is an attractive alternative energy so...
ABSTRACT: Tar formation is one of the major problems to deal with during biomass gasification. To ov...
The production of renewable hydrogen enriched gas from biomass waste is a promising technology for t...
Hydrogen production from the thermochemical conversion of biomass was carried out with nano-sized Ni...
Pyrolysis of biomass has been studied worldwide as a potential path to produce hydrogen from renewab...
Thermo-chemical processing of biomass is a promising alternative to produce renewable hydrogen as a ...
Gasification technology is an attractive alternative for the thermal treatment of solid wastes, prod...
The production of renewable hydrogen-enriched gas from biomass waste is a promising technology for t...