The production of blue hydrogen through sorption-enhanced processes has emerged as a suitable option to reduce greenhouse gas emissions. Sorption-enhanced steam–methane reforming (SESMR) is a process intensification of highly endothermic steam–methane reforming (SMR), ensured by in situ carbon capture through a solid sorbent, making hydrogen production efficient and more environmentally sustainable. In this study, a comprehensive energy model of SESMR was developed to carry out a detailed energy characterization of the process, with the aim of filling a current knowledge gap in the literature. The model was applied to a bench-scale multicycle SESMR/sorbent regeneration test to provide an energy insight into the process. Besides the experime...
Natural gas is an attractive fuel choice for distributed power generation due to the availability of...
An intensified hydrogen production steam reforming process named ‘Sorption-Enhanced Chemical Looping...
This paper presents an experimental and modeling investigation for a novel technique of low temperat...
Hydrogen is currently mainly obtained by steam reforming (SR) of natural gas, consuming a high amou...
Renewable clean H2 has a very promising potential for the decarbonization of energy systems. Sorptio...
Clean and carbon-free hydrogen production is expected to play a vital role in future global energy t...
An increased demand for hydrogen as energy-carrier and as fuel for clean power generation is expecte...
Sorption enhanced chemical looping steam reforming of methane (SE-CLSR) relies on the exothermicity ...
H2 production from biogas (60%CH4 + 40%CO2) by sorption enhanced steam reforming (SESR) was thermody...
The paper presents a comparison of steam methane reforming (SMR), sorption enhanced steam methane re...
The hydrogen production performance of sorption-enhanced methane steam reforming (SESMR) was investi...
Sorption-enhanced steam reforming (SE-SR) offers lower capital costs than conventional steam reformi...
Hydrogen (H-2) is currently receiving significant attention as a sustainable energy carrier. Steam m...
Theoretical analysis of an alternative process for hydrogen production through steam methane reformi...
In this study sorption-enhanced steam methane reforming (SE-SMR) in fixed beds is investigated by me...
Natural gas is an attractive fuel choice for distributed power generation due to the availability of...
An intensified hydrogen production steam reforming process named ‘Sorption-Enhanced Chemical Looping...
This paper presents an experimental and modeling investigation for a novel technique of low temperat...
Hydrogen is currently mainly obtained by steam reforming (SR) of natural gas, consuming a high amou...
Renewable clean H2 has a very promising potential for the decarbonization of energy systems. Sorptio...
Clean and carbon-free hydrogen production is expected to play a vital role in future global energy t...
An increased demand for hydrogen as energy-carrier and as fuel for clean power generation is expecte...
Sorption enhanced chemical looping steam reforming of methane (SE-CLSR) relies on the exothermicity ...
H2 production from biogas (60%CH4 + 40%CO2) by sorption enhanced steam reforming (SESR) was thermody...
The paper presents a comparison of steam methane reforming (SMR), sorption enhanced steam methane re...
The hydrogen production performance of sorption-enhanced methane steam reforming (SESMR) was investi...
Sorption-enhanced steam reforming (SE-SR) offers lower capital costs than conventional steam reformi...
Hydrogen (H-2) is currently receiving significant attention as a sustainable energy carrier. Steam m...
Theoretical analysis of an alternative process for hydrogen production through steam methane reformi...
In this study sorption-enhanced steam methane reforming (SE-SMR) in fixed beds is investigated by me...
Natural gas is an attractive fuel choice for distributed power generation due to the availability of...
An intensified hydrogen production steam reforming process named ‘Sorption-Enhanced Chemical Looping...
This paper presents an experimental and modeling investigation for a novel technique of low temperat...