合成锰锌铁氧体回收废锰锌电池的初步工艺

Junxi Zhang, Xinxin Du, Lingsong Zhang, Zhang Wanyou
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引用次数: 0

摘要

本文介绍了以混合酸和水为浸出液,草酸为还原剂,回收废电池合成锰锌铁氧体的溶解工艺。考察了混合酸的配比及用量、液固比、还原剂用量、时间和温度等因素。结果表明:混合酸(HNO3/HCl=1:3-1:4 V/V)过量0 ~ 20%,草酸过量10 ~ 20%,在温度低于40℃,液固比约为4.6,第一步浸出时间大于10h,第二步浸出时间为1 h的条件下,浸出效果良好。Mn、Zn、Fe、Ni、Cu、Hg的回收率均在99%左右,甚至可达100%,残渣中汞含量极低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Initial Process of Recycling Waste Mn-Zn Batteries through Synthesizing Mn -Zn Ferrite
This paper describes the dissolving process of recycling waste batteries through synthesizing Mn-Zn ferrite by using mixed acid and water as leaching solution and oxalic acid as reductant. Some factors were investigated that include the proportion of mixed acid and its dosage, liquid-solid ratio, dosage of reductant time and temperature. Results show that an excellent dissolving effectiveness was gotten when the leaching solution composed of mixed acid (HNO3/HCl=1:3-1:4 V/V) which was 0-20% in excess and oxalic acid which was 10-20% in excess at a condition that the temperature was under 40¿, liquid/solid ratio was about 4.6, the time for first leaching step was longer than 10h and second leaching step was 1 hour. The recovery ratios of Mn, Zn, Fe, Ni, Cu and Hg were about 99%, even up to 100%, and the residue had a very low mercury content level.
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