Preparation of LaFe0.95Pd0.05O3 perovskites and their catalytic performances in methane combustion

Xiaojing Zhang, Yong Li, Huaju Li, Wenjie Shen
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引用次数: 10

Abstract

The physic-chemical properties of LaFe0.95Pd0.05O3 perovskites were strongly dependent on the temperature of calcination. Most of the organic substances and inorganic impurities were readily removed at 723 K but single-phase and well crystallized perovskite structure was formed at 873 K. With further raising the calcination temperature, the crystallite size of LaFe0.95Pd0.05O3 increased considerably. The LaFe0.95Pd0.05O3 sample that calcined at 1073 K showed only comparable activity as the reference LaFeO3 catalyst, in particular below 923 K, but pretreatment with the reaction gas at 1223 K resulted in significantly enhanced activity due to the generation of active PdO species on the surface. The hysteresis feature upon heating-cooling cycle further confirmed the strong interaction between Pd and LaFeO3 in the perovskite structure.

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LaFe0.95Pd0.05O3钙钛矿的制备及其甲烷燃烧催化性能
LaFe0.95Pd0.05O3钙钛矿的物理化学性质与煅烧温度密切相关。在723 K时,大部分有机物质和无机杂质容易被去除,而在873 K时形成了单相且结晶良好的钙钛矿结构。随着煅烧温度的进一步升高,LaFe0.95Pd0.05O3的晶粒尺寸明显增大。在1073 K下煅烧的LaFe0.95Pd0.05O3样品的活性仅与参考LaFeO3催化剂相当,特别是在923 K以下,但在1223 K下进行反应气体预处理,由于在表面产生了活性的PdO物质,活性显著增强。加热-冷却循环的滞后特征进一步证实了钙钛矿结构中Pd与LaFeO3之间的强相互作用。
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来源期刊
Journal of Natural Gas Chemistry
Journal of Natural Gas Chemistry 化学-工程:化工
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