This paper presents a fundamental model-based analysis for the applicability of integration of a highly active Rh/CeaZr1-aO2 catalyst with two candidate CO2 sorbents for pure H2 production in low temperature sorption-enhanced steam reforming of methane. K-promoted hydrotalcite and lithium zirconate solids are considered in the investigation as CO2 sorbents. The process is analyzed using multi-scale modeling levels of a heterogeneous particle-based model, a heterogeneous bulk-scale model, and a homogenous bulk-scale model. The presence of this active catalyst dictates strict requirements on the sorbent in terms of fast adsorption kinetics for an efficient process performance. The maximum CH4 conversion enhancement is determined to be a stron...
The hydrogen production performance of sorption-enhanced methane steam reforming (SESMR) was investi...
This paper presents the intrinsic kinetics of CH4 steam reforming developed over Rh/Ce0.6Zr0.4O2 cat...
An alternative process for hydrogen production through steam methane reforming (SMR), based on the c...
This paper presents a fundamental model-based analysis for the applicability of integration of a hig...
This paper presents a performance analysis for the sorption-enhanced autothermal reforming of CH4 in...
The steam methane reforming (SMR) process for hydrogen production with in situ CO2 capture on adsorb...
The process of sorption-enhanced autothermal reforming of methane is mathematically analyzed in a fi...
A 1-D heterogeneous model of sorption-enhanced steam methane reforming (SE-SMR) process in a packed ...
This paper presents an experimental and modeling investigation for a novel technique of low temperat...
This paper presents an experimental investigation for an improved process of sorption-enhanced steam...
The hydrogen production performance of sorption-enhanced methane steam reforming (SESMR) was investi...
This paper presents the intrinsic kinetics of CH4 steam reforming developed over Rh/Ce0.6Zr0.4O2 cat...
An alternative process for hydrogen production through steam methane reforming (SMR), based on the c...
This paper presents a fundamental model-based analysis for the applicability of integration of a hig...
This paper presents a performance analysis for the sorption-enhanced autothermal reforming of CH4 in...
The steam methane reforming (SMR) process for hydrogen production with in situ CO2 capture on adsorb...
The process of sorption-enhanced autothermal reforming of methane is mathematically analyzed in a fi...
A 1-D heterogeneous model of sorption-enhanced steam methane reforming (SE-SMR) process in a packed ...
This paper presents an experimental and modeling investigation for a novel technique of low temperat...
This paper presents an experimental investigation for an improved process of sorption-enhanced steam...
The hydrogen production performance of sorption-enhanced methane steam reforming (SESMR) was investi...
This paper presents the intrinsic kinetics of CH4 steam reforming developed over Rh/Ce0.6Zr0.4O2 cat...
An alternative process for hydrogen production through steam methane reforming (SMR), based on the c...