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Synthesis of dimethyl carbonate by urea alcoholysis over Zn/Al bi-functional catalysts

机译:Zn / Al双功能催化剂上尿素醇解合成碳酸二甲酯

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摘要

Zn/Al mixed oxides (ZAO) were prepared via thermal decomposition of hydrotalcite-type precursors derived from urea precipitation. Specially, ZAO catalysts with a Zn/Al molar ratio of 4:1 exhibited high dimethyl carbonate (DMC) yield (~36.5%) when utilized for the DMC synthesis from urea and methanol. The XRD, IR, TPD and computational analysis revealed that the formation of ZnAl2O4 spinel significantly modified the surface acidity and basicity of ZAO catalysts, which were beneficial for the DMC synthesis. We thus opened up a bi-functional mechanism that urea and methanol were respectively activated on the weak acidic and basic sites, advancing the DMC synthesis synergistically.
机译:通过热分解尿素沉淀得到的水滑石型前驱体制备Zn / Al混合氧化物(ZAO)。特别地,当锌/铝摩尔比为4:1的ZAO催化剂用于尿素和甲醇的DMC合成时,显示出较高的碳酸二甲酯(DMC)产率(〜36.5%)。 XRD,IR,TPD和计算分析表明,ZnAl2O4尖晶石的形成显着改变了ZAO催化剂的表面酸度和碱度,有利于DMC的合成。因此,我们打开了双功能机制,尿素和甲醇分别在弱酸性和碱性位点上被激活,从而协同促进了DMC的合成。

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