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Insights into the Pyrolysis Processes of Ce-MOFs for Preparing Highly Active Catalysts of Toluene Combustion

机译:用于制备甲苯燃烧高活性催化剂的Ce-MOF的热解过程中的见解

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Metal organic frameworks (MOFs) have recently been used as precursors of the catalysts for the combustion of volatile organic compounds (VOCs). In the present work, three kinds of CeO 2 catalysts were successfully synthesized from Ce-MOF-808, Ce-BTC, and Ce-UiO-66, with specific topological structures and coordinate environments. Catalysts with small particle size, stacking mode, and structural defects could be created by pyrolysis of Ce-MOFs, which affects the activity in the toluene combustion significantly. Raman spectra, XPS, and OSC studies were performed to reveal the formation of defect sites. The thermal redox properties were determined by H 2 -TPR. Catalytic activity tests were conducted on the toluene combustion, and CeO 2 -MOF-808 showed the best catalytic performance (T90 = 278 °C) due to its having the largest specific surface area, abundant active surface oxygen species, and low-temperature reducibility.
机译:最近用金属有机框架(MOF)作为挥发性有机化合物(VOC)燃烧催化剂的前体。在本作工作中,使用特定的拓扑结构和坐标环境,成功合成了三种CeO 2催化剂..使用特定的拓扑结构和坐标环境,成功地合成了CE-MOF-808,CE-BTC和CE-UIO-66。具有小粒度,堆叠模式和结构缺陷的催化剂可以通过CE-MOF的热解产生,这显着影响甲苯燃烧中的活性。进行拉曼光谱,XPS和OSC研究以揭示缺陷部位的形成。通过H 2 -TPR测定热氧化还原性质。在甲苯燃烧上进行催化活性试验,CEO 2 -MOF-808由于其具有最大的特异性表面积,丰富的活性表面氧物质和低温还原性而显示出最佳的催化性能(T90 = 278℃)。 。

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