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Wacker-type oxidation in vapor phase using a palladium-copper chloride catalyst in a liquid polymer medium supported on silica gel

机译:在硅胶上负载的液态聚合物介质中,使用钯-氯化铜催化剂在气相中进行瓦克型氧化

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摘要

Pd(II) chloride and Cu(II) chloride in various liquid polymer media supported on silica gel were prepared and used in a catalyst system for vapor-phase synthesis of acetaldehyde by Wacker-type oxidation of ethylene. This catalyst system supported on silica gel prepared by impregnation was quickly deactivated, while use of polyethylene glycol (PEG) as a liquid polymer medium supported on silica gel showed stable catalytic activity. PEG inhibited the formation of Pd metal particles, which deactivate the catalyst system. Addition of alkali metal salts, especially LiCl, to the PdCl2-CuCl2 catalyst system with PEG enhanced catalytic activity for 22 h, even when the I'd content was high, leading to high activity but poor stability. LiCl also inhibited the formation of metal particles. (C) 2008 Elsevier Inc. All rights reserved.
机译:制备了负载在硅胶上的各种液态聚合物介质中的氯化钯(II)和氯化铜(II),并将其用于通过Wacker型乙烯氧化气相合成乙醛的催化剂体系中。通过浸渍制备的负载在硅胶上的该催化剂体系迅速失活,而使用聚乙二醇(PEG)作为负载在硅胶上的液体聚合物介质显示出稳定的催化活性。 PEG抑制了Pd金属颗粒的形成,从而使催化剂体系失活。即使当Id含量高时,向具有PEG的PdCl2-CuCl2催化剂体系中添加碱金属盐(尤其是LiCl)也能提高催化活性达22 h,导致活性高但稳定性差。 LiCl也抑制金属颗粒的形成。 (C)2008 Elsevier Inc.保留所有权利。

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