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首页> 外文期刊>Journal of Catalysis >Gas-phase oxycarbonylation of methanol for the synthesis of dimethyl carbonate using copper-based Supported Ionic Liquid Phase (SILP) catalysts
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Gas-phase oxycarbonylation of methanol for the synthesis of dimethyl carbonate using copper-based Supported Ionic Liquid Phase (SILP) catalysts

机译:铜的负载型离子液体(SILP)催化剂用于甲醇气相氧化羰基化以合成碳酸二甲酯

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摘要

Catalyst systems for the gas-phase oxycarbonylation of methanol often suffer from low catalyst activities and strong catalyst deactivation. In this work, the continuous gas-phase oxycarbonylation of methanol was realized by using Supported Ionic Liquid-Phase (SILP) catalysts. Copper(I) bromide dissolved in various ionic liquids and dispersed on Polymer-Based Spherical Activated Carbon (PBSAC) as supporting material was found to be an active catalyst. The poor activity and stability of copper halide catalysts reported in literature was substantially increased by the presence of ionic liquids. In particular, trioctylmethylammonium bromide in combination with a basic salt additive increased the activity of the CuBr catalyst and led to comparatively stable SILP catalyst operation reaching a total turnover number of 600 over 50h time-on-stream.
机译:用于甲醇的气相羰基化的催化剂体系经常遭受低催化剂活性和强催化剂失活的困扰。在这项工作中,使用负载型离子液体(SILP)催化剂实现了甲醇的连续气相氧羰基化。发现溶解在各种离子液体中并分散在作为载体材料的基于聚合物的球形活性炭(PBSAC)上的溴化铜(I)是一种活性催化剂。文献中报道的卤化铜催化剂的不良活性和稳定性由于离子液体的存在而大大增加。尤其是,三辛基甲基溴化铵与碱性盐添加剂的结合可提高CuBr催化剂的活性,并导致相对稳定的SILP催化剂运行,在运行50小时内的总周转数达到600。

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