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Promotion Effects of Cesium on Perovskite Oxides for Catalytic Soot Combustion

机译:铯对钙钛矿氧化物催化烟灰燃烧的促进作用

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The cesium-promoted LaCoO3 perovskite-type catalysts were synthesized for catalytic soot combustion. The cesium promoter was introduced into the perovskite system via two different ways with the same Cs loading: one is Cs doping (La0.8Cs0.2CoO3), and the other is Cs supporting (Cs/LaCoO3). The physicochemical properties of the catalysts were characterized by XRD, N-2-sorption, SEM, EDS, H-2-TPR, NO oxidation and NOx sorption techniques. For Cs-supported sample, the promotion effect on the redox properties of transition metal has been observed. The catalytic NO oxidation activity on Cs-supported sample was higher than that on Cs-doped sample due to the improved reducibility. Under O-2 atmospheres, the two kinds of Cs-containing catalysts exhibited similar ignition activities under tight conditions with soot ignition temperature decreased to about 350 A degrees C, which can be related to the enhanced oxygen mobility and the improved contact between soot and catalysts. In the presence of NOx, the superior soot oxidation activity on Cs-supported catalyst was related to its higher NO2 productivity, larger NO2 consumption and more stored nitrates accessible in soot oxidation process. Thus, the different ways to introduce cesium have different impacts on the properties and activities of the perovskite catalysts.
机译:合成了铯促进的LaCoO3钙钛矿型催化剂,用于烟灰的催化燃烧。铯促进剂通过两种不同的方式以相同的Cs负载量引入钙钛矿体系中:一种是Cs掺杂(La0.8Cs0.2CoO3),另一种是Cs支撑(Cs / LaCoO3)。通过XRD,N-2-吸附,SEM,EDS,H-2-TPR,NO氧化和NOx吸附技术表征了催化剂的理化性质。对于Cs负载的样品,已观察到对过渡金属氧化还原性能的促进作用。 Cs负载样品的催化NO氧化活性比Cs掺杂样品的NO氧化活性高,这归因于还原性的提高。在O-2气氛下,两种含Cs的催化剂在严密条件下表现出相似的着火活性,烟灰着火温度降至约350 A摄氏度,这可能与提高的氧迁移率以及改善的烟灰与催化剂之间的接触有关。 。在存在NOx的情况下,Cs负载型催化剂上优异的烟灰氧化活性与其在烟灰氧化过程中更高的NO2生产率​​,更大的NO2消耗和更多的硝酸盐储存有关。因此,引入铯的不同方式对钙钛矿催化剂的性质和活性具有不同的影响。

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