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Optimized synthesis method for K/Co3O4 catalyst towards direct decomposition of N2O

机译:K / Co3O4催化剂直接分解N2O的优化合成方法

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摘要

The potassium-doped Co3O4 catalysts were prepared by impregnation of potassium sources on commercial cobalt carbonate and on the precursors synthesized by homogeneous precipitation, combustion with glycine, gradual oxidation, and hydrothermal methods. The activities of these catalysts for the direct decomposition of nitrous oxide in the presence of oxygen with or without water vapor were examined. The effects of potassium sources on the catalyst activity were also examined by impregnation of various potassium salts on commercial cobalt carbonate. The catalyst prepared by impregnation of an aqueous solution of KOH on commercial cobalt carbonate showed the highest activity. The catalysts prepared by various methods were analyzed by powder X-ray diffraction, N2 adsorption, scanning electron microscope, temperature-programmed reduction with H2, temperature-programmed desorption of O2, and X-ray photoelectron spectroscopy. These results suggest that crystallite size and reduction property are key factors for the activity of the catalyst for the direct decomposition of nitrous oxide in the presence of oxygen.
机译:钾掺杂的Co3O4催化剂是通过将钾源浸渍在商品碳酸钴上以及通过均相沉淀,甘氨酸燃烧,逐步氧化和水热法合成的前体上制备的。检查了这些催化剂在有氧或无水蒸气的情况下在氧气存在下直接分解一氧化二氮的活性。还通过在商业碳酸钴上浸渍各种钾盐来检查钾源对催化剂活性的影响。通过将KOH水溶液浸渍在商品碳酸钴上制备的催化剂显示出最高的活性。通过粉末X射线衍射,N2吸附,扫描电子显微镜,H2的程序升温还原,O2的程序升温脱附和X射线光电子能谱分析了用各种方法制备的催化剂。这些结果表明,微晶尺寸和还原性能是催化剂在氧气存在下直接分解一氧化二氮的活性的关键因素。

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