Chemical looping combustion thermally coupled steam reforming (CLC-SR) emerges as a new alternative to achieving hydrogen production simultaneously with inherent CO2 capture. To evaluate the environmental performances of any competing technology, it is of necessity to consider total emissions in association with the technology over its entire lifetime. In this study, a life cycle greenhouse gas emission (LCE) assessment of the CLC-SR is conducted, together with a comparison with the conventional natural gas steam reforming (SR). The energy efficiency of 75.2% for achieving 97.0% inherent CO2 capture is obtained in the CLC-SR, with the LCEs of 3009 g CO2 eq./kg H2, approximately accounting for one third in those of conventional natural gas S...
Chemical looping combustion (CLC) technology generates power while capturing CO2 inherently with no ...
This article discusses the concept of combining steam methane reforming (SMR) with fluidized beds of...
The global energy related challenges, mainly due to the worldwide growing energy consumption gone wi...
Hydrogen production from natural gas, combined with advanced CO2 capture technologies, such as iron-...
A life cycle assessment (LCA) of hydrogen production via natural gas steam reforming was performed t...
AbstractHydrogen production from natural gas, combined with advanced CO2 capture technologies, such ...
A comprehensive life cycle assessment (LCA) is reported for five methods of hydrogen production, nam...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
A life cycle assessment of hydrogen production via natural gas steam reforming was performed to exam...
This study presents an integrated techno-environmental assessment of hydrogen production from natura...
Hydrogen has attracted global attention as alternative energy carrier in the future. Typically, hydr...
A techno-economic analysis has been used to evaluate three processes for hydrogen production from ad...
A techno-economic analysis has been used to evaluate three processes for hydrogen production from ad...
The current study presents the techno-economic analysis of the CLR-CC process. The CLR-CC process co...
In recent years, a significant amount of interest has been directed towards using hydrogen as an alt...
Chemical looping combustion (CLC) technology generates power while capturing CO2 inherently with no ...
This article discusses the concept of combining steam methane reforming (SMR) with fluidized beds of...
The global energy related challenges, mainly due to the worldwide growing energy consumption gone wi...
Hydrogen production from natural gas, combined with advanced CO2 capture technologies, such as iron-...
A life cycle assessment (LCA) of hydrogen production via natural gas steam reforming was performed t...
AbstractHydrogen production from natural gas, combined with advanced CO2 capture technologies, such ...
A comprehensive life cycle assessment (LCA) is reported for five methods of hydrogen production, nam...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
A life cycle assessment of hydrogen production via natural gas steam reforming was performed to exam...
This study presents an integrated techno-environmental assessment of hydrogen production from natura...
Hydrogen has attracted global attention as alternative energy carrier in the future. Typically, hydr...
A techno-economic analysis has been used to evaluate three processes for hydrogen production from ad...
A techno-economic analysis has been used to evaluate three processes for hydrogen production from ad...
The current study presents the techno-economic analysis of the CLR-CC process. The CLR-CC process co...
In recent years, a significant amount of interest has been directed towards using hydrogen as an alt...
Chemical looping combustion (CLC) technology generates power while capturing CO2 inherently with no ...
This article discusses the concept of combining steam methane reforming (SMR) with fluidized beds of...
The global energy related challenges, mainly due to the worldwide growing energy consumption gone wi...