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Synthesis of propylene oxide in a paired electrolytic system: Studies on the mechanism and operating factors

机译:成对电解体系中环氧丙烷的合成:机理及操作因素研究

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Epoxidation of propylene to propylene oxide (PO) by means of paired electrolysis was studied in a bubbling system. An electrolytic cell, divided by an anion exchange membrane, was designed for producing PO in both anode and cathode compartments simultaneously. In the anode compartment, AgNO3 in the anolyte was used to form redox mediator, Ag+/AgO+, for indirect epoxidation of propylene. In the cathode compartment, oxygen was introduced into an acidic aqueous catholyte to form H2O2, hydrogen peroxide, which further epoxided propylene. The examined factors, which affected the amount of PO production per unit faraday, were the applied current, gas flow rate, electrolyte concentration and temperature. The optimum operating conditions of the anode and the cathode compartments were obtained. The overall amount of PO production per unit of energy consumption was evaluated, and a mechanism of paired electro-epoxidation of propylene is also proposed. [References: 22]
机译:在鼓泡系统中研究了通过成对电解将丙烯环氧化为环氧丙烷(PO)。设计了一个由阴离子交换膜分隔的电解池,用于同时在阳极室和阴极室中生产PO。在阳极室中,阳极电解液中的AgNO3用于形成氧化还原介体Ag + / AgO +,用于丙烯的间接环氧化。在阴极室中,将氧气引入酸性含水阴极电解液中以形成过氧化氢H2O2,进一步使丙烯环氧化。受检查的因素(每单位法拉法下的PO产量受到影响)是施加的电流,气体流速,电解质浓度和温度。获得了阳极室和阴极室的最佳操作条件。评估了每单位能耗的总PO产生量,并提出了丙烯成对电环氧化的机理。 [参考:22]

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