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Effect of process parameters on the concentration, current efficiency and energy consumption of electro-generated silver(II)

机译:工艺参数对电生银(II)浓度,电流效率和能耗的影响

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Electro-membrane generation of Ag(II) in nitric acid was experimentally explored in a three-electrode laboratory cell with respect to various operating parameters. DSA-O-2, titanium plate and saturated Ag/AgCl were employed as the anode, cathode and reference electrode, respectively. The considered process parameters included anolyte temperature and Ag(I) initial concentration, electrolysis time, current density and supporting electrolyte concentration. Parameter effect on the Ag(II) concentration, current density and energy consumption were determined by the Taguchi and ANOVA methods for test design and data analysis, respectively. The results revealed that current density, AgNO3 concentration and temperature had noticeable effect on the generation of Ag(II). On the other hand, AgNO3 concentration and current density showed the most dominant effect on the Ag(II) current efficiency: 48.5 % and 30.3 %, respectively. AgNO3 concentration and current density were also found to have the highest effect on the energy consumption: 72.4 % and 15.9 %, respectively. Validity of the Taguchi method was also assessed by collecting the actual data. (C) 2015 Institute of Chemistry, Slovak Academy of Sciences
机译:在三电极实验室电池中,针对各种操作参数,实验性地探索了硝酸中Ag(II)的电膜生成。 DSA-O-2,钛板和饱和Ag / AgCl分别用作阳极,阴极和参比电极。所考虑的工艺参数包括阳极电解液温度和Ag(I)初始浓度,电解时间,电流密度和辅助电解质浓度。通过Taguchi和ANOVA方法分别确定参数对Ag(II)浓度,电流密度和能耗的影响,以进行测试设计和数据分析。结果表明,电流密度,AgNO3浓度和温度对Ag(II)的生成有显着影响。另一方面,AgNO3浓度和电流密度对Ag(II)电流效率表现出最主要的影响:分别为48.5%和30.3%。还发现AgNO3浓度和电流密度对能耗的影响最大:分别为72.4%和15.9%。还通过收集实际数据来评估田口方法的有效性。 (C)2015年,斯洛伐克科学院化学研究所

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