Mechanistic relationships in the activation of methane and the conversion of methanol on heteropoly oxometallates

Shamsuddin Ahmed, S. Kasztelan, J. Moffat
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引用次数: 13

Abstract

Heteropoly oxometallates have been employed in the heterogeneous catalysis of the conversion of methanol to hydrocarbons and the partial oxidation of methane. In the former process methanol is first protonated at Bronsted-acid sites, but at higher temperatures the heteropoly anions are partially methylated subsequent to scission of the C—O bonds in protonated methanol. With silica-supported 12-molybdophosphoric acid the exchange of the protons by cations effectively poisons the catalyst for the conversion of methane. Introduction of a chloro-additive to the feedstream in the latter process produces changes in the conversion and selectivity which are markedly different for the molybdenum- and tungsten-containing catalysts. With the former the conversion of methane is increased while the selectivity to partial oxidation products is decreased. With the latter the former comments are also applicable but selectivities to methyl chloride reach as high as 90 mol %. The results from cation exchange and the addition of a chloro-additive are interpreted and a mechanism with common features is proposed for the methanol and methane conversion processes.
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甲烷活化与甲醇在异多金属氧酸盐上转化的机理关系
杂多金属氧酸盐已被应用于甲醇转化为烃类和甲烷部分氧化的多相催化。在前一过程中,甲醇首先在Bronsted-acid位点被质子化,但在较高温度下,异多阴离子在质子化的甲醇中C-O键断裂后被部分甲基化。在硅负载的12-钼磷酸中,阳离子交换质子有效地毒害了甲烷转化的催化剂。在后一过程中,在进料流中引入氯添加剂会对含钼和含钨催化剂的转化率和选择性产生明显不同的变化。前者提高了甲烷的转化率,但降低了部分氧化产物的选择性。对于后者,前者的评论也适用,但对氯甲烷的选择性高达90摩尔%。对阳离子交换和添加氯添加剂的结果进行了解释,并提出了甲醇和甲烷转化过程具有共同特征的机理。
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