A techno-economic analysis has been used to evaluate three processes for hydrogen production from advanced steam reforming (SR) of bio-oil, as an alternative route to hydrogen with BECCS: conventional steam reforming (C-SR), C-SR with CO2 capture (C-SR-CCS), and sorption-enhanced chemical looping (SE-CLSR). The impacts of feed molar steam to carbon ratio (S/C), temperature, pressure, the use of hydrodesulphurisation pretreatment, and plant production capacity were examined in an economic evaluation and direct CO2 emissions analysis. Bio-oil C-SR-CC or SE-CLSR may be feasible routes to hydrogen production, with potential to provide negative emissions. SE-CLSR can improve process thermal efficiency compared to C-SR-CCS. At the feed molar stea...
Steam methane reforming (SMR) process is regarded as a viable option to satisfy the growing demand f...
Steam methane reforming is the most common process for producing hydrogen in the world. It currently...
AbstractHigh-purity H2 was produced by the sorption enhanced steam reforming (SESR) of acetic acid, ...
A techno-economic analysis has been used to evaluate three processes for hydrogen production from ad...
The steam reforming of pyrolysis bio-oil is one proposed route to low carbon hydrogen production, wh...
In the efforts to decarbonise the energy system, there has been a great deal of interest in the pote...
Hydrogen is an attractive energy carrier that will play a key role in future global energy transitio...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
This study presents an integrated techno-environmental assessment of hydrogen production from natura...
Hydrogen (H-2) is currently receiving significant attention as a sustainable energy carrier. Steam m...
Deployment of fossil fuels to quench the energy demand of the world's rising population results in e...
Rising climate change ambitions require large-scale clean hydrogen production in the near term. “Blu...
High-purity H2 was produced by the sorption enhanced steam reforming (SESR) of acetic acid, a model ...
As reserves of conventional crude oil are depleted, there is a growing need to develop unconventiona...
Chemical looping combustion thermally coupled steam reforming (CLC-SR) emerges as a new alternative ...
Steam methane reforming (SMR) process is regarded as a viable option to satisfy the growing demand f...
Steam methane reforming is the most common process for producing hydrogen in the world. It currently...
AbstractHigh-purity H2 was produced by the sorption enhanced steam reforming (SESR) of acetic acid, ...
A techno-economic analysis has been used to evaluate three processes for hydrogen production from ad...
The steam reforming of pyrolysis bio-oil is one proposed route to low carbon hydrogen production, wh...
In the efforts to decarbonise the energy system, there has been a great deal of interest in the pote...
Hydrogen is an attractive energy carrier that will play a key role in future global energy transitio...
This work covers a techno-economic assessment for processes with inherent CO2 separation, where a fl...
This study presents an integrated techno-environmental assessment of hydrogen production from natura...
Hydrogen (H-2) is currently receiving significant attention as a sustainable energy carrier. Steam m...
Deployment of fossil fuels to quench the energy demand of the world's rising population results in e...
Rising climate change ambitions require large-scale clean hydrogen production in the near term. “Blu...
High-purity H2 was produced by the sorption enhanced steam reforming (SESR) of acetic acid, a model ...
As reserves of conventional crude oil are depleted, there is a growing need to develop unconventiona...
Chemical looping combustion thermally coupled steam reforming (CLC-SR) emerges as a new alternative ...
Steam methane reforming (SMR) process is regarded as a viable option to satisfy the growing demand f...
Steam methane reforming is the most common process for producing hydrogen in the world. It currently...
AbstractHigh-purity H2 was produced by the sorption enhanced steam reforming (SESR) of acetic acid, ...