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Dissolution kinetics of metallic zinc obtained from spent zinc-carbon batteries in nitric acid solutions

机译:金属锌的溶解动力学在硝酸锌-碳化电池解决方案

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In this study, the dissolution kinetics of metallic zinc pieces obtained from waste zinc-carbon batteries was investigated using nitric acid solutions. The effects of the concentration of nitric acid, amount of metallic zinc, reaction temperature and stirring speed on the dissolution process were determined, and a mathematical model to represent the dissolution kinetics was presented. It was observed that the dissolution rate increased with increasing nitric acid concentration, stirring speed and reaction temperature and with decreasing amount of metallic zinc. While the concentration of nitric acid, reaction temperature, stirring speed, amount of zinc, and reaction time were 0.15 M, 30 degrees C, 400 rpm, 0.1 g, and 20 min, respectively, the amount of dissolved zinc was found to be 98.3%. The result of the kinetic analysis showed that the dissolution rate fit to the pseudo-first order kinetic. The activation energy for the dissolution process was calculated to be 12.89 kJ/mol. It was determined that the dissolution process was controlled by diffusion. Zinc ions in the resulting solution after the dissolution treatment was recovered by precipitation method using sodium bicarbonate solution. It was determined that zinc ions were precipitated as zinc hydroxy-carbonate compound. Zinc compound obtained was subjected to the calcination treatment, and zinc oxide was produced.
机译:在这项研究中,溶解动力学金属锌块从浪费锌-碳化研究使用电池硝酸的解决方案。硝酸浓度、金属锌、反应温度和搅拌速度溶解过程确定,数学模型来表示解散给出了动力学。溶解率氮的增加而增加酸浓度、搅拌速度和反应温度和减少的数量金属锌。酸、反应温度、搅拌速度、锌量,反应时间0.15米,30岁摄氏度,400 rpm, 0.1 g, 20分钟,分别溶解锌的数量发现是98.3%。分析表明,溶解率适合准一阶动力学。能源溶解过程进行了计算12.89焦每摩尔。溶解过程由扩散控制。锌离子后的最终解决方案溶解治疗恢复了使用碳酸氢钠沉淀方法解决方案。沉淀锌hydroxy-carbonate化合物。锌化合物受到获得煅烧处理,氧化锌生产。

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