2016•RSC AdvancesRequires access

Low temperature catalytic combustion of o-dichlorobenzene over supported Mn–Ce oxides: effect of support and Mn/Ce ratio

Yan‐Ping Ren, Aidong Tang, Liqin Hu, Hui Xiang

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Abstract

Mn 9 Ce 1 /cordierite represents the lowest reduction temperature among three supports (cordierite, TiO 2 and Al 2 O 3 ) and higher combustion activity for o -DCB due to containing a higher Mn 3+ species concentration and surface hydroxides.

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What this paper is about

Mn 9 Ce 1 /cordierite represents the lowest reduction temperature among three supports (cordierite, TiO 2 and Al 2 O 3 ) and higher combustion activity for o -DCB due to containing a higher Mn 3+ species concentration and surface hydroxides.

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Available abstract

Mn 9 Ce 1 /cordierite represents the lowest reduction temperature among three supports (cordierite, TiO 2 and Al 2 O 3 ) and higher combustion activity for o -DCB due to containing a higher Mn 3+ species concentration and surface hydroxides.

Key concepts: Cordierite, Catalysis, Catalytic combustion, Manganese oxide, Manganese, Atmospheric temperature range, Combustion, Inorganic chemistry

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Low temperature catalytic combustion of o-dichlorobenzene over supported Mn–Ce oxides: effect of support and Mn/Ce ratio — Research Paper | ScholarLens