首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Low-temperature CO oxidation over Co3O4-based catalysts: Significant promoting effect of Bi2O3 on Co3O4 catalyst
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Low-temperature CO oxidation over Co3O4-based catalysts: Significant promoting effect of Bi2O3 on Co3O4 catalyst

机译:基于Co3O4的催化剂上的低温CO氧化:Bi2O3对Co3O4催化剂的显着促进作用

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摘要

The modification of Co3O4 by Bi2O3 significantly enhanced its catalytic performance for CO oxidation. The 20 wt.% Bi2O3-Co3O4 exhibited the best catalytic performance. The results of H2-TPR and CO-TPR revealed that the mobility of oxygen was accelerated greatly and the ability of low-temperature oxygen activation was the crucial factor to improve the catalytic performance. Bi2O3 entered the lattice of Co3O4 caused the structural defect and lattice distortion, which should be the origin of the high O2 activation ability and mobility. Structure-performance correlation demonstrated that the low-temperature oxygen activation was dependent on the defective degree of structure, which was determined by the content of Bi2O3. The catalytic behaviors under different reaction conditions revealed that CO could effectively adsorb on the surface active sites and CO2 could competitively adsorb on the active sites. The ability to supply the active O2 species was suggested to be a key step. The kinetic data showed not only the amount of surface active sites were increased on the surface of CO3O4 but also the catalytic ability of single active site was enhanced greatly.
机译:Bi2O3对Co3O4的改性显着增强了其对CO氧化的催化性能。 20重量%的Bi 2 O 3 -Co 3 O 4表现出最佳的催化性能。 H2-TPR和CO-TPR的结果表明,氧的迁移率大大提高,低温氧活化能力是提高催化性能的关键因素。 Bi2O3进入Co3O4的晶格引起结构缺陷和晶格畸变,这应该是高O2活化能力和迁移率的起源。结构性能相关性表明,低温氧活化取决于结构缺陷度,缺陷度由Bi2O3的含量决定。在不同反应条件下的催化行为表明,CO可以有效地吸附在表面活性位上,而CO 2可以竞争性吸附在活性位上。提供活性O2物质的能力被认为是关键的一步。动力学数据表明,不仅CO3O4表面活性中心的数量增加,而且单个活性中心的催化能力也大大提高。

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