In this study, the performance of high-purity hydrogen production through the sorption-enhanced chemical looping gasification (SECLG) process, involving a gasifier, calciner, and air reactor, was investigated. In this process, the biomass feedstock was wood residue, and steam, calcium oxide (CaO), and nickel oxide (NiO) were used as a gasifying agent, CO2 sorbent, and oxygen carrier, respectively. First, the influences of key operational parameters (i.e., steam to carbon (S/C) molar ratio, gasifying temperature, and NiO to carbon (NiO/C) molar ratio) on product gas yields and net energy consumption of the process were studied. According to the first and second laws of thermodynamics, performance indicators of the SECLG process demonstrated ...
Energy security and climate change are two common challenges in the coming decades. The demand for e...
This paper summarizes the results of an experimental investigation into sorbent chemical looping gas...
Meeting the ever-increasing energy demands in our planet where conventional sources of energy are fi...
In this study, thermodynamic equilibrium analysis of the sorption-enhanced chemical looping biomass ...
In recent years, the field of biomass gasification as a method of transforming biomass into a more u...
Over the last 100 years, the average temperatures on the Earth’s surface, water, and atmosphere have...
An intensified hydrogen production steam reforming process named ‘Sorption-Enhanced Chemical Looping...
Biomass chemical looping gasification (BCLG) offers significant advantages over the conventional bio...
Biomass gasification for energy purposes has several advantages, such as the mitigation of global wa...
Chemical looping gasification (CLG) is regarded as an efficient way for the utilization of solid fue...
Detailed chemical equilibrium analysis based on minimisation of Gibbs Energy is conducted to illustr...
Sorption enhanced chemical looping steam reforming of methane (SE-CLSR) relies on the exothermicity ...
The production of blue hydrogen through sorption-enhanced processes has emerged as a suitable option...
AbstractA detailed thermodynamic analysis of the sorption enhanced chemical looping reforming of met...
For a given set of operating conditions, the hydrogen production from biomass gasification can be im...
Energy security and climate change are two common challenges in the coming decades. The demand for e...
This paper summarizes the results of an experimental investigation into sorbent chemical looping gas...
Meeting the ever-increasing energy demands in our planet where conventional sources of energy are fi...
In this study, thermodynamic equilibrium analysis of the sorption-enhanced chemical looping biomass ...
In recent years, the field of biomass gasification as a method of transforming biomass into a more u...
Over the last 100 years, the average temperatures on the Earth’s surface, water, and atmosphere have...
An intensified hydrogen production steam reforming process named ‘Sorption-Enhanced Chemical Looping...
Biomass chemical looping gasification (BCLG) offers significant advantages over the conventional bio...
Biomass gasification for energy purposes has several advantages, such as the mitigation of global wa...
Chemical looping gasification (CLG) is regarded as an efficient way for the utilization of solid fue...
Detailed chemical equilibrium analysis based on minimisation of Gibbs Energy is conducted to illustr...
Sorption enhanced chemical looping steam reforming of methane (SE-CLSR) relies on the exothermicity ...
The production of blue hydrogen through sorption-enhanced processes has emerged as a suitable option...
AbstractA detailed thermodynamic analysis of the sorption enhanced chemical looping reforming of met...
For a given set of operating conditions, the hydrogen production from biomass gasification can be im...
Energy security and climate change are two common challenges in the coming decades. The demand for e...
This paper summarizes the results of an experimental investigation into sorbent chemical looping gas...
Meeting the ever-increasing energy demands in our planet where conventional sources of energy are fi...