首页> 外文期刊>Journal of Catalysis >REACTION MECHANISM OF OXIDATIVE CARBONYLATION OF METHANOL TO DIMETHYL CARBONATE IN CU-Y ZEOLITE
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REACTION MECHANISM OF OXIDATIVE CARBONYLATION OF METHANOL TO DIMETHYL CARBONATE IN CU-Y ZEOLITE

机译:CU-Y沸石中甲醇氧化羰基化为碳酸二甲酯的反应机理

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The Cu(I)Y catalyst, as prepared by solid-state ion exchange at 650 degrees C, shows higher productivity and less deactivation than the known carbon-supported CuCl2 catalyst for gas-phase oxidative carbonylation of methanol to make dimethyl carbonate. The ion-exchanged Cu(II)Y showed very little activity for the same reaction. An in situ FTIR technique was applied to elucidate the reaction mechanism. The first step is the oxidation of methanol and Cu(I) to from Cu(II)-methoxide. The insertion of CO to Cu(II)-methoxide, forming probably a carbomethoxide, is the rate-limiting step. Finally, methanol and oxygen react with carbomethoxide to from dimethyl carbonate. (C) 1996 Academic Press, Inc. [References: 16]
机译:通过在650℃下进行固态离子交换制备的Cu(I)Y催化剂比用于甲醇气相氧化羰基化以制备碳酸二甲酯的已知碳载CuCl 2催化剂显示出更高的生产率和更少的失活。离子交换的Cu(II)Y对相同的反应几乎没有活性。应用原位FTIR技术阐明了反应机理。第一步是将甲醇和Cu(I)氧化为甲醇(Cu)(II)。限速步骤是将CO插入甲醇(可能形成碳甲醇盐)中。最后,甲醇和氧气与碳氧化合物反应生成碳酸二甲酯。 (C)1996 Academic Press,Inc. [参考:16]

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