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A Novel Synthetic Route to Prepare High Surface Area Mayenite Catalyst for TCE Oxidation

机译:一种新的合成途径,制备高表面积腐蚀催化剂的高表面积腐蚀催化剂

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摘要

Mayenite (Ca12Al14O33) was synthesized by a novel route based on the use of polymethyl methacrylate (PMMA) as a soft templating agent. The material was tested for the total oxidation of trichloroethylene in the gas phase and the catalytic performance was analysed when using different initial amounts of PMMA in the catalyst synthesis. The results were compared with those obtained with a mayenite synthetized by a classical hydrothermal method. The highest activity in terms of TCE conversion was achieved in the presence of mayenite prepared using 10% w/w of PMMA; its activity was also higher than that of the hydrothermal mayenite. The surface area and the number of superoxide anions (O2−) seem to be the main properties determining the catalytic activity of the material.
机译:通过基于使用聚甲基丙烯酸甲酯(PMMA)作为软模板剂,通过新型途径合成莫萝钛矿(CA12AL14O33)。在气相中,在气相中进行三氯乙烯的总氧化,在催化剂合成中使用不同初始量的PMMA,分析催化性能。将结果与通过经典水热法合成的莫奈特获得的结果进行比较。在使用10%w / w的PMMA制备的莫奈特的存在下实现了TCE转化的最高活动;其活性也高于水热型腐蚀性的活性。表面积和超氧化物阴离子(O2-)的数量似乎是确定材料催化活性的主要性质。

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