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Partial Oxidation of Methane to Synthesis Gas Using Supported Ga-Containing Bimetallic Catalysts and a Ti-Promoter

机译:使用负载的GA的双金属催化剂和Ti启动子部分氧化甲烷与合成气的氧化

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摘要

A series of bimetallic Ga-containing materials using TiO2 and TiO2-promoted SiO2 supports have been prepared. Rhodium, palladium, and platinum have been used as additional metals in this system. The materials are characterized and used as catalysts for the partial oxidation of methane into synthesis gas (H-2 and CO). The presence of a low quantity of titanium in the form of anatase TiO2 was shown to improve the overall activity of catalytic methane oxidation and to strongly increase the selectivity of partial oxidation products over the total oxidation of methane to carbon dioxide and water. Particular attention is paid to the formation of gallium-metal alloys on the surface of the catalyst supports. Rh-Ga-Ti-SiO2 was found to be the most active and selective catalyst, giving 89% conversion of methane and 99% selectivity to synthesis gas at 750 degrees C, as well as exhibiting catalytic activity and preferential conversion to partial oxidation products at temperatures as low as 350 degrees C.
机译:已经制备了一系列使用TiO2和TiO2促进的SiO 2支撑件的二氧化硅Ga的材料。铑,钯和铂在该系统中被用作额外的金属。该材料的特征在于并用作用于将甲烷部分氧化成合成气(H-2和CO)的催化剂。显示锐钛矿TiO 2形式的钛的存在,提高催化甲烷氧化的总体活性,并强烈增加部分氧化产物在甲烷的总氧化对二氧化碳和水中的选择性。特别注意在催化剂载体表面上形成镓金属合金。发现RH-GA-TI-SiO 2是最活性和选择性催化剂,使甲烷转化为89%,在750℃下对合成气的选择性和99%的选择性转化,以及表现出催化活性和优先转化为部分氧化产品温度低至350℃。

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