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Catalytic Combustion of Diesel Soot on Ce/Zr Series Catalysts Prepared by Sol-Gel Method

机译:溶胶 - 凝胶法制备Ce / Zr系列催化剂上柴油煤的催化燃烧

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摘要

Cerium-zirconium (Ce-Zr) solid solutions have been extensively used in a wide variety of catalytic processes due to their unique catalytic features in conjunction with lower cost compared to noble metal-based systems. A series of Ce-Zr-based catalysts was prepared by the sol-gel method. The structure and morphology of these catalysts were characterized by X-ray diffraction, thermogravimetric-differential scanning calorimetry, scanning electron microscopy, energy dispersive spectroscopy, and X-ray photoelectron spectroscopy. Furthermore, investigation on catalytic performance was carried out by constructing a test platform, and the result indicated that the catalysts apparently decreased the soot ignition temperature. These catalysts exhibited higher catalytic activity for soot oxidation under narrow contact conditions. The results revealed that some soot particles could react with adsorbed oxygen, and other part of diesel soot reacted with lattice oxygen. The activity of these catalysts was attributed to synergistic effect arising from the combination of K/Co/Zr and Ce-Zr solid solution, which led to the decrease in the ignition temperature to 294 °C (data from the test platform). The catalyst still keeps good stability and catalytic activity after the cycle oxidation experiment. A reaction pathway was proposed to explain catalytic combustion process of soot, i.e., combination of K/Co/Zr with Ce-Zr solid solution reduced the binding energy of Ce-Zr solid solution, which was conducive to provide more active sites to release the active oxygen (O2−) or lattice oxygen (O2−).
机译:铈 - 锆(CE-Zr)的固溶体已被广泛地在各种催化过程的使用,由于在以较低的成本结合其独特的催化功能相比贵金属基系统。一系列的Ce-Zr系催化剂是由溶胶 - 凝胶法制备。通过X射线衍射,热重 - 差示扫描量热法,扫描电子显微镜,能量色散光谱法和X射线光电子能谱,这些催化剂的结构和形貌进行了表征。此外,在催化性能调查通过构建一个测试平台进行,结果表明该催化剂明显降低烟灰着火温度。这些催化剂为窄接触条件下烟灰氧化表现出较高的催化活性。结果表明,一些烟尘颗粒可以与吸附的氧发生反应,和柴油机烟灰的其它部分与晶格氧反应。这些催化剂的活性归因于从K /钴/锆和铈锆固溶体的组合,这导致在点火温度至294℃(从测试平台数据)下降形成的协同效应。催化剂仍然保持循环氧化实验后良好的稳定性和催化活性。反应途径被提出来解释烟灰的催化燃烧过程中,即,K的组合/钴/ Zr的用铈锆固溶体降低的铈锆固溶体的结合能,这有利于提供更多活性位点以释放活性氧(O2-)或晶格氧(O2-)。

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