The steam reforming of benzene as a model compound of biomass gasification tar was carried out over various Ni/metal oxide catalysts. The effects of the support, temperature, Ni-precursor, Ni loading and reaction time were examined, and their catalytic performance was compared with that of a commercial Ni catalyst. Among the Ni/metal oxide catalysts used, 15 wt% Ni/CeO2(75%)-ZrO2(25%) showed the highest catalytic performance owing to its greater redox characteristics and increased surface area, irrespective of the reaction temperature. The catalytic activity of 15 wt% Ni/CeO2(75%)-ZrO2(25%) was higher than that of the commercial Ni catalyst. Moreover, the catalyst activity was retained due to its excellent resistance to coke deposition even...
The effective removal of tar is a major challenge for biomass gasification. Schemes based on chemica...
Phenols are major components in the tar vapours formed during gasification of biomass-based feedstoc...
A new "free oxygen" material, Sr12Al14O33 (Sr(12)A(7)), was developed as a Ni support for biomass ta...
The removal of biomass tar is the key technology in the pyrolysis and gasification technology, and t...
This work focuses on the removal of the tar derived from biomass gasification by catalytic steam ref...
Tar formation during biomass gasification is a major barrier to utilise the produced syngas, which c...
The aim of this study was to model the kinetic parameters for tar steam reforming using benzene as a...
The development of high performance and low-cost catalyst is very important to remove tar during bio...
The gasification of biomass produces a syngas that can be used for electricity generation and fuels/...
Ni-CeO2, Ni/Co-CeO2 and Ni-Ca12Al14O33 were synthesized by the auto-combustion method and tested as ...
Tar removal from gasification gases is a determinant step to guarantee the operational feasibility o...
Nickel supported on SBA-15 doped with CeO2 catalysts (Ni-CeO2/SBA-15) was prepared, and used for ste...
Tar removal from gasification gases is a determinant step to guarantee the operational feasibility o...
A secondary tar-cleaning process based on Chemical-Looping Reforming (CLR) was investigated for upgr...
Coal fly ash (CFA), a solid waste from power plants, was selected as the support of Ni-based catalys...
The effective removal of tar is a major challenge for biomass gasification. Schemes based on chemica...
Phenols are major components in the tar vapours formed during gasification of biomass-based feedstoc...
A new "free oxygen" material, Sr12Al14O33 (Sr(12)A(7)), was developed as a Ni support for biomass ta...
The removal of biomass tar is the key technology in the pyrolysis and gasification technology, and t...
This work focuses on the removal of the tar derived from biomass gasification by catalytic steam ref...
Tar formation during biomass gasification is a major barrier to utilise the produced syngas, which c...
The aim of this study was to model the kinetic parameters for tar steam reforming using benzene as a...
The development of high performance and low-cost catalyst is very important to remove tar during bio...
The gasification of biomass produces a syngas that can be used for electricity generation and fuels/...
Ni-CeO2, Ni/Co-CeO2 and Ni-Ca12Al14O33 were synthesized by the auto-combustion method and tested as ...
Tar removal from gasification gases is a determinant step to guarantee the operational feasibility o...
Nickel supported on SBA-15 doped with CeO2 catalysts (Ni-CeO2/SBA-15) was prepared, and used for ste...
Tar removal from gasification gases is a determinant step to guarantee the operational feasibility o...
A secondary tar-cleaning process based on Chemical-Looping Reforming (CLR) was investigated for upgr...
Coal fly ash (CFA), a solid waste from power plants, was selected as the support of Ni-based catalys...
The effective removal of tar is a major challenge for biomass gasification. Schemes based on chemica...
Phenols are major components in the tar vapours formed during gasification of biomass-based feedstoc...
A new "free oxygen" material, Sr12Al14O33 (Sr(12)A(7)), was developed as a Ni support for biomass ta...