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首页> 外文期刊>Chemical engineering journal >Process parameter impacts on adiponitrile current efficiency and cell voltage of an electromembrane reactor using emulsion-type catholyte
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Process parameter impacts on adiponitrile current efficiency and cell voltage of an electromembrane reactor using emulsion-type catholyte

机译:工艺参数对使用乳液型阴极电解液的电膜反应器中己二腈电流效率和电池电压的影响

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摘要

The major route for the synthesis of adiponitrile (ADN) involves electrosynthesis, starting from acry-lonitrile (AN) in an electrochemical reactor. In this paper the effects of various operating parameters on both the ADN current efficiency (CE) and the overall cell voltage in a laboratory-scale membrane reactor were studied. The electrochemical system includes a DSA/O2 electrode as anode, a lead electrode as cathode, Nation~R 115 membrane as separator, and tetra methyl ammonium chloride as the supporting electrolyte. Taguchi method was used for experimental design and ANOVA technique was employed for data analysis. Five process parameters studied include (1) cell temperature, (2) initial AN concentration, (3) current density, (4) catholyte flow rate and (5) catholyte pH which were determined at four levels. According to the results obtained, catholyte flow rate and current density were found to have the most striking impacts on the CE of ADN with contribution percentage (P value) of 35% and 28%, respectively. Current density and initial AN concentration were also found to be the most dominant parameters on the overall cell voltage with contribution percentage of 40% and 30%, respectively.
机译:合成己二腈(ADN)的主要途径涉及电合成,从电化学反应器中的丙烯腈(AN)开始。本文研究了在实验室规模的膜反应器中各种操作参数对ADN电流效率(CE)和整个电池电压的影响。电化学系统包括以DSA / O2电极为阳极,以铅电极为阴极,以Nation〜R 115膜为隔膜和以四甲基氯化铵为辅助电解质的电化学系统。 Taguchi方法用于实验设计,ANOVA技术用于数据分析。研究的五个过程参数包括(1)电池温度,(2)初始AN浓度,(3)电流密度,(4)阴极电解液流速和(5)阴极电解液pH值,它们在四个级别上确定。根据获得的结果,发现阴极电解液的流速和电流密度对ADN的CE的影响最为显着,贡献率(P值)分别为35%和28%。还发现电流密度和初始AN浓度是整个电池电压的最主要参数,贡献百分比分别为40%和30%。

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