2002
DOI: 10.1016/s0378-7753(01)01027-8
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Steam reforming of methanol over a Cu/ZnO/Al2O3 catalyst: a kinetic analysis and strategies for suppression of CO formation

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Cited by 307 publications
(151 citation statements)
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“…However, when studying the process differentially, it is clear that O 2 and water are converted consecutively-O 2 through total oxidation and water by steam reforming. This pathway, a consecutive reaction scheme consisting of methanol combustion followed by SRM, was proposed in a previous paper from our laboratory [5] and also gains support in the literature [30,32,33,37]. An interesting feature is that water formation by combustion reactions in the low-conversion regime consumes O 2 , hence increasing the H 2 O/CH 3 OH ratio and suppressing CO formation by RWGS.…”
Section: Reaction Pathwayssupporting
confidence: 66%
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“…However, when studying the process differentially, it is clear that O 2 and water are converted consecutively-O 2 through total oxidation and water by steam reforming. This pathway, a consecutive reaction scheme consisting of methanol combustion followed by SRM, was proposed in a previous paper from our laboratory [5] and also gains support in the literature [30,32,33,37]. An interesting feature is that water formation by combustion reactions in the low-conversion regime consumes O 2 , hence increasing the H 2 O/CH 3 OH ratio and suppressing CO formation by RWGS.…”
Section: Reaction Pathwayssupporting
confidence: 66%
“…The temperature at which complete conversion is obtained can be significantly lowered by decreasing the space velocity, as demonstrated in a previous paper from our laboratory [5]. However, an optimization with respect to this parameter was not the objective of the present study.…”
Section: Steam Reforming Of Methanolmentioning
confidence: 69%
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