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Catalytic Post-Treatment of Automotive Exhaust Gas from Natural Gas Combustion Engines: Potential Interest of Perovskite Materials

机译:天然气燃烧发动机汽车尾气的催化后处理:钙钛矿材料的潜在利益

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This study reports an investigation of the surface properties of Pd-modified perovskite catalysts for NO_x removal from Natural Gas engines. H2 production from reforming and water-gas-shift reactions can be profitably used for the reduction of NO_x. Particular attention has been paid to the nature of interactions between Pd and LaCoO3 according to in situ reductive thermal treatments. The catalytic properties have been investigated by temperature-programmed NO desorption and temperature-programmed NG/H2 reaction. Different experiments performed on partially and extensively reduced catalysts lead to changes in surface reactivity. Interestingly, beneficial interactions with a significant selectivity enhancement to the production of nitrogen is observed on pre-reduced Pd/LaCoO3 under smooth conditions at 250 °C particularly in the presence of oxygen. More extensive reduction at 450 °C leads to the loss of the structural properties of LaCoO3 accompanied with partial segregation of CoO_x and La2O3. Such structural changes lead to a detrimental effect on the catalytic performances.
机译:这项研究报告了对从天然气发动机中去除NO_x的Pd改性钙钛矿催化剂的表面性能的研究。重整和水煤气变换反应产生的氢气可用于减少NO_x。根据原位还原热处理,已经特别注意了Pd和LaCoO3之间相互作用的性质。催化性能已通过程序升温的NO解吸和程序升温的NG / H2反应进行了研究。对部分和大量还原的催化剂进行的不同实验导致表面反应性的变化。有趣的是,在预先还原的Pd / LaCoO3上,在250°C的平稳条件下,特别是在有氧条件下,观察到了有益的相互作用,选择性提高了氮的产生。在450°C下进行更广泛的还原会导致LaCoO3的结构性能丧失,同时CoO_x和La2O3会部分偏析。这种结构变化导致对催化性能的不利影响。

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