Preferential oxidation (PROX) of CO is an important practical process to purify H-2 for use in polymer electrolyte fuel cells. Although many supported noble metal catalysts have been reported so far, their catalytic performances remain insufficient for operation at low temperature. We found that Pt nanoparticles in mesoporous silica give unprecedented activity, selectivity, and durability in the PROX reaction below 353 K. We also studied the promotional effect of mesoporous silica in the Pt-catalyzed PROX reaction by infrared spectroscopy using the isotopic tracer technique. Gas-phase O-2 is not directly used for CO oxidation, but the oxygen of mesoporous silica is incorporated into CO2. These results suggest that CO oxidation is promoted by the attack of the surface OH groups to CO on Pt without forming water.
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页码:10120 / 10125
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BERGERET G, 1997, HDB HETEROGENEOUS CA, V1, P439
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Osaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, JapanOsaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, Japan
Echigo, M
Tabata, T
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Osaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, JapanOsaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, Japan
机构:
Osaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, JapanOsaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, Japan
Echigo, M
Tabata, T
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机构:
Osaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, JapanOsaka Gas Co Ltd, Residential Cogenerat Dev Dept, Shimogyo Ku, Kyoto 6008815, Japan