The kinetics for crude glycerol autothermal reforming was studied over S/C ratio of 2.6 and O2/C ratio of 0.125 using 5% Ni/CeZrCa catalyst. Both power law and mechanistic kinetic models were studied. The overall power law model for crude glycerol autothermal reforming was investigated with a pre-exponential factor of 4.3 × 1010 mol/gcat·min and activation energy of 8.78 × 104 J/mol. The reaction orders with respect to crude glycerol, water and oxygen are 1.04, 0.54 and 1.78 respectively. The power law model presented an absolute average deviation of 5.84%, which showed a good correlation between the predicted and experimental rate. Mechanistic models were developed for crude glycerol autothermal reforming. For steam reforming, the Eley–Rid...
The use of biomass as renewable resources to replace the fossil fuels is essential for the sustainab...
A thermodynamic analysis of glycerol dry reforming has been performed by the Gibbs free energy minim...
9 figures, 3 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
This study presents the thermodynamic modelling of hydrogen production from autothermal reforming of...
Pyrolysis of glycerol, a by-product of the biodiesel industry, is an important potential source of h...
In the present work, thermodynamics was applied to study the autothermal reforming (ATR) of impure g...
In this work, thermodynamics was applied to investigate the glycerol autothermal reforming to genera...
The growing demand for hydrogen energy requires renewable raw materials for its production. In parti...
The production of ethylene glycol and propylene glycol from higher polyhydric alcohols has been para...
The steam reforming of the main biodiesel by-product, glycerol, has been catching up the interest of...
Glycerol was previously a significant source of profit for biodiesel refineries. Due to the rapid ex...
A phenomenological model that predicts the operation of a packed bed reactor for glycerol steam refo...
Hydrogen is a clean energy carrier, and its utilization will reduce environmental problems related t...
Mechanistic kinetic models were postulated for the catalytic steam reforming of concentrated crude e...
Biodiesel is a suitable alternative to gasoline and diesel since it emits less carbon emission. Ther...
The use of biomass as renewable resources to replace the fossil fuels is essential for the sustainab...
A thermodynamic analysis of glycerol dry reforming has been performed by the Gibbs free energy minim...
9 figures, 3 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...
This study presents the thermodynamic modelling of hydrogen production from autothermal reforming of...
Pyrolysis of glycerol, a by-product of the biodiesel industry, is an important potential source of h...
In the present work, thermodynamics was applied to study the autothermal reforming (ATR) of impure g...
In this work, thermodynamics was applied to investigate the glycerol autothermal reforming to genera...
The growing demand for hydrogen energy requires renewable raw materials for its production. In parti...
The production of ethylene glycol and propylene glycol from higher polyhydric alcohols has been para...
The steam reforming of the main biodiesel by-product, glycerol, has been catching up the interest of...
Glycerol was previously a significant source of profit for biodiesel refineries. Due to the rapid ex...
A phenomenological model that predicts the operation of a packed bed reactor for glycerol steam refo...
Hydrogen is a clean energy carrier, and its utilization will reduce environmental problems related t...
Mechanistic kinetic models were postulated for the catalytic steam reforming of concentrated crude e...
Biodiesel is a suitable alternative to gasoline and diesel since it emits less carbon emission. Ther...
The use of biomass as renewable resources to replace the fossil fuels is essential for the sustainab...
A thermodynamic analysis of glycerol dry reforming has been performed by the Gibbs free energy minim...
9 figures, 3 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 l...