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The Selective Epoxidation of Propylene over Nad-modified Cu-SiO_2 Catalysts Using Molecular Oxygen as the Oxidant

机译:使用分子氧作为氧化剂的丙烯和改性Cu-SiO2催化剂的选择性环氧化

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Propylene oxide (PO) is one of the most important chemical feedstocks for making polyurethane, unsaturated resins, surfactant, and other products. There are two industrial processes for PO production: the chlorohydrin and the Halcon processes. The former generates chlorinated wastes which give rise to serious problems of environmental pollution; The latter needs heavy capital investment and generates a large amount of the organic co-products. Now numerous efforts have been made in searching for an alternative method for these conventional processes. Up to now, most current researches have focused on three routes. The first is to generate PO from C_3H_6 and H_2O_2 over TS-1 catalysts; the second is to generate PO from C_3H_6 and H_2O_2 produced in situ using O_2 and H_2 over noble metal catalysts such as Au catalysts; the third is to generate PO from C_3H_6 and O_2 over metal catalysts such as Ag and Cu catalysts. The former two routes basically use H_2O_2 as the oxidant, the third route directly uses O_2 as the oxidant and has been highly desirable. In this paper, we report our results for the epoxidation of propylene over NaCl-Modified Cu-SiO_2 catalyst using molecular oxygen as the oxidant.
机译:环氧丙烷(PO)是制备聚氨酯,不饱和树脂,表面活性剂和其他产品中最重要的化学原料之一。 PO生产有两种工业过程:氯醇和稳定法。前者产生氯化废物,这引起了环境污染的严重问题;后者需要沉重的资本投资,并产生大量的有机共同产品。现在在寻找这些传统过程的替代方法时已经进行了许多努力。到目前为止,大多数目前的研究都集中在三条路线上。首先是在TS-1催化剂上产生从C_3H_6和H_2O_2的PO;第二代是使用O_2和H_2在贵金属催化剂如Au催化剂中使用O_2和H_2产生的C_3H_6和H_2O_2;第三是在金属催化剂如Ag和Cu催化剂中从C_3H_6和O_2产生PO。前两条路线基本上使用H_2O_2作为氧化剂,第三路线直接使用O_2作为氧化剂,并且非常理想。在本文中,我们将通过作为氧化剂的分子氧对NaCl改性的Cu-SiO_2催化剂对丙烯环氧化的结果报告。

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