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Extraction of Zinc and Manganese from Alkaline and Zinc-Carbon Spent Batteries by Citric-Sulphuric Acid Solution

机译:用柠檬酸溶液从碱金属和锌 - 碳含量的电池提取锌和锰

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摘要

The paper is focused on the recovery of zinc and manganese from alkaline and zinc-carbon spent batteries. Metals are extracted by sulphuric acid leaching in the presence of citric acid as reducing agent. Leaching tests are carried out according to a 24 full factorial design, and empirical equations for Mn and Zn extraction yields are determined from experimental data as a function of pulp density, sulphuric acid concentration, temperature, and citric acid concentration. The highest values experimentally observed for extraction yields were 97% of manganese and 100% of zinc, under the following operating conditions: temperature 40∘C, pulp density 20%, sulphuric acid concentration 1.8 M, and citric acid 40 g L-1. A second series of leaching tests is also performed to derive other empirical models to predict zinc and manganese extraction. Precipitation tests, aimed both at investigating precipitation of zinc during leaching and at evaluating recovery options of zinc and manganese, show that a quantitative precipitation of zinc can be reached but a coprecipitation of nearly 30% of manganese also takes place. The achieved results allow to propose a battery recycling process based on a countercurrent reducing leaching by citric acid in sulphuric solution.
机译:本文的重点是从碱性和锌 - 碳的电池中恢复锌和锰。在柠檬酸存在下通过硫酸浸出作为还原剂来提取金属。浸出试验根据24个完整的因子设计进行,并且根据纸浆密度,硫酸浓度,温度和柠檬酸浓度的函数确定Mn和Zn提取产率的经验方程。实验所观察到的最高值为萃取产率为97%的锰和100%锌,在以下操作条件下:温度40℃,纸浆密度20%,硫酸浓度1.8m,柠檬酸40g l-1。还进行了第二系列浸出试验,以推导出其他实证模型来预测锌和锰提取。沉淀试验,旨在在浸出过程中调查锌的沉淀以及评估锌和锰的回收选择,表明可以达到锌的定量沉淀,但近30%的锰也发生了近30%的植物。实现的结果允许基于硫酸中柠檬酸的逆流降低浸出的电池再循环过程。

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