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从废混合电池中通过一系列湿法冶金工艺回收其他金属中的锌的研究。

A study on Zn recovery from other metals in the spent mixed batteries through a sequence of hydrometallurgical processes.

机构信息

Resources Recovery Research Center, Korea Institute of Geoscience and Mineral Resources , Daejeon , Republic of Korea.

Department of Materials Science and Engineering, Yonsei University , Seoul , Republic of Korea.

出版信息

Environ Technol. 2019 Nov;40(26):3512-3522. doi: 10.1080/09593330.2018.1480664. Epub 2018 Jun 4.

Abstract

A study on selective separation of Zn from a leaching solution by disposal batteries including various type batteries was carried out to understand the recovery behaviour of Zn in leaching solution. Selective recovery of Zn in leaching solution including Mn, Cd, Cu ion was difficult due to its similar physicochemical behaviour. Experiment results by present leaching solution with 279 µm undersize indicated that the best condition for leaching is 1 M HSO, 250 rpm, 5 vol.% HO and 353 K and the leaching efficient of Zn, Co and Mn is approximately 97%, respectively. The exclusive extraction behaviour of Zn by using D2EHPA is indicated that the best conditions for solvent extraction are to be 0.6 M D2EHPA diluted with kerosene, 30% saponification, 298 K, 5-min contact time and three-stage countercurrent extraction, and the O/A ratio 1, respectively. Recovery of Zn was with approximately 99.7% selectively from Mn, Co, Ni, Cd and Li. After scrubbing 5 times by pH 2 modified solution and single stripping experiment by 1.5 M HSO, the solution including Zn of 9.0 g/L can be produced.

摘要

开展了一项关于从包括各种类型电池在内的废电池浸出液中选择性分离锌的研究,以了解浸出液中锌的回收行为。由于其相似的物理化学行为,浸出液中包括 Mn、Cd、Cu 离子在内的 Zn 的选择性回收较为困难。目前对 279μm 以下粒径的浸出液进行实验的结果表明,浸出的最佳条件是 1M HSO、250rpm、5vol.%HO 和 353K,Zn、Co 和 Mn 的浸出效率分别约为 97%。使用 D2EHPA 对 Zn 进行专属性萃取表明,溶剂萃取的最佳条件为 0.6M D2EHPA 用煤油稀释,皂化度 30%,298K,接触时间 5min,三级逆流萃取,O/A 比 1。分别从 Mn、Co、Ni、Cd 和 Li 中以约 99.7%的选择性回收 Zn。用 pH 2 改性溶液洗涤 5 次,再用 1.5M HSO 进行单次洗脱后,可得到含 9.0g/L Zn 的溶液。

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