Removing antimony from waste lead storage batteries alloy by vacuum displacement reaction technology.

Author(s) Liu, T.; Qiu, K.
Journal J Hazard Mater
Date Published 2018 Apr 05
Abstract

With the wide application of lead acid battery, spent lead acid battery has become a serious problem to environmental protection and human health. Though spent battery can be a contaminant if not handled properly, it is also an important resource to obtain refined lead. Nowadays, the Sb-content in lead storage batteries is about 0.5-3 wt%, which is higher than the Sb-content in the crude lead. However, there are few reports about the process of removing antimony from high-antimony lead bullion. In this study, vacuum displacement reaction technology, a new process for removing antimony from high-antimony lead melts, was investigated. During this process, lead oxide was added to the system and antimony from lead melts was converted into antimony trioxide, which easily was evaporated under vacuum so that antimony was removed from lead melts. The experimental results demonstrated that Sb-content in lead melts decreased from 2.5% to 23 ppm under following conditions: mass ratio of PbO/lead bullion of 0.33, residual gas pressure of 30 Pa, melt temperature of 840 °C, reaction time of 60 min. The distillate gotten can be used as by-product to produce antimony white. Moreover, this study is of importance to recycling of waste lead storage batteries alloy.

DOI 10.1016/j.jhazmat.2018.01.017
ISSN 1873-3336
Citation Liu T, Qiu K. Removing antimony from waste lead storage batteries alloy by vacuum displacement reaction technology. J Hazard Mater. 2018;347:334-340.

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