Benzene steam reforming kinetics was studied in conditions relevant to biomass gasification gas cleaning on Ni/Al2O3 catalyst i.e. temperature range 750-900 °C and in presence of H2S. The benzene concentration was 600-3500 ppm. The qualitative effect of the main gasification product gas compounds on the benzene steam reforming kinetics was studied. The first order kinetic model in respect to benzene was used to compare the effect of H2, CO and CO2. It was observed that especially H2 decelerated and CO2 accelerated the benzene steam reforming kinetics. With a gas mixture representing air gasification gas, the Langmuir-Hinshelwood type model taking account effect of H2 in denominator described the benzene decomposition well. However, the mode...
In the present work the impact of H2S and thiophene on the steam reforming and water-gas shift (WGS)...
Biomass is increasingly attracting attention as an alternative to fossil fuels. Gasification permits...
Meeting the ever-increasing energy demands in our planet where conventional sources of energy are fi...
The aim of this study was to model the kinetic parameters for tar steam reforming using benzene as a...
Tar decomposition over a dolomite catalyst in gasification conditions was modeled using benzene as a...
The ability of Rh based catalysts to remove Undesired tars from biomass-derived syngas was examined ...
International audienceModelling approaches of biomass steam gasification are investigated that take ...
Reforming is a key enabling technology for the production of tar and hydrocarbon free synthesis gas ...
The steam reforming of benzene as a model compound of biomass gasification tar was carried out over ...
Thermochemical conversion of biomass can be used to produce synthesis gas via gasification. This syn...
The reforming of hot gas generated from biomass gasification and high temperature gas filtration was...
Biogas is an important source of renewable energy produced by the anaerobic digestion of biomass. Th...
The effective removal of tar is a major challenge for biomass gasification. Schemes based on chemica...
The effort to reduce global anthropogenic carbon dioxide emissions has caused a growing interest in ...
The removal of biomass tar is the key technology in the pyrolysis and gasification technology, and t...
In the present work the impact of H2S and thiophene on the steam reforming and water-gas shift (WGS)...
Biomass is increasingly attracting attention as an alternative to fossil fuels. Gasification permits...
Meeting the ever-increasing energy demands in our planet where conventional sources of energy are fi...
The aim of this study was to model the kinetic parameters for tar steam reforming using benzene as a...
Tar decomposition over a dolomite catalyst in gasification conditions was modeled using benzene as a...
The ability of Rh based catalysts to remove Undesired tars from biomass-derived syngas was examined ...
International audienceModelling approaches of biomass steam gasification are investigated that take ...
Reforming is a key enabling technology for the production of tar and hydrocarbon free synthesis gas ...
The steam reforming of benzene as a model compound of biomass gasification tar was carried out over ...
Thermochemical conversion of biomass can be used to produce synthesis gas via gasification. This syn...
The reforming of hot gas generated from biomass gasification and high temperature gas filtration was...
Biogas is an important source of renewable energy produced by the anaerobic digestion of biomass. Th...
The effective removal of tar is a major challenge for biomass gasification. Schemes based on chemica...
The effort to reduce global anthropogenic carbon dioxide emissions has caused a growing interest in ...
The removal of biomass tar is the key technology in the pyrolysis and gasification technology, and t...
In the present work the impact of H2S and thiophene on the steam reforming and water-gas shift (WGS)...
Biomass is increasingly attracting attention as an alternative to fossil fuels. Gasification permits...
Meeting the ever-increasing energy demands in our planet where conventional sources of energy are fi...