The process of sorption-enhanced autothermal reforming of methane is mathematically analyzed in a fixed bed reformer for pure H2 production with in situ CO2 capture at low temperature. A conventional Ni/MgO steam reforming catalyst is used. K-promoted hydrotalcite and lithium zirconate materials are examined as potential sorbents. A 1D heterogeneous dynamic fixed bed reactor model is constructed and employed in the study. The model accounts for mass and thermal dispersion in the axial direction, pressure drop, and intraparticle and interfacial resistances. The process performance is analyzed under dynamic conditions with respect to key operational parameters: gas hourly space velocity, oxygen/carbon ratio, steam/carbon ratio, catalyst/sorbe...
The present work deals with the Sorption-Enhanced Methane Steam Reforming (SE-MSR), an interesting a...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
A comparative evaluation of alternative methane reforming processes as an option to steam reforming ...
The process of sorption-enhanced autothermal reforming of methane is mathematically analyzed in a fi...
This paper presents a performance analysis for the sorption-enhanced autothermal reforming of CH4 in...
This paper presents an experimental and modeling investigation for a novel technique of low temperat...
A 1-D heterogeneous model of sorption-enhanced steam methane reforming (SE-SMR) process in a packed ...
This paper presents a performance analysis for the autothermal reforming process of methane in a fix...
This paper presents a fundamental model-based analysis for the applicability of integration of a hig...
Sorption enhanced chemical looping steam reforming of methane (SE-CLSR) relies on the exothermicity ...
The paper presents a comparison of steam methane reforming (SMR), sorption enhanced steam methane re...
The present work deals with the Sorption-Enhanced Methane Steam Reforming (SE-MSR), an interesting a...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
A comparative evaluation of alternative methane reforming processes as an option to steam reforming ...
The process of sorption-enhanced autothermal reforming of methane is mathematically analyzed in a fi...
This paper presents a performance analysis for the sorption-enhanced autothermal reforming of CH4 in...
This paper presents an experimental and modeling investigation for a novel technique of low temperat...
A 1-D heterogeneous model of sorption-enhanced steam methane reforming (SE-SMR) process in a packed ...
This paper presents a performance analysis for the autothermal reforming process of methane in a fix...
This paper presents a fundamental model-based analysis for the applicability of integration of a hig...
Sorption enhanced chemical looping steam reforming of methane (SE-CLSR) relies on the exothermicity ...
The paper presents a comparison of steam methane reforming (SMR), sorption enhanced steam methane re...
The present work deals with the Sorption-Enhanced Methane Steam Reforming (SE-MSR), an interesting a...
This paper addresses the experimental demonstration and model validation of chemical looping reformi...
A comparative evaluation of alternative methane reforming processes as an option to steam reforming ...