谢添, 杨思琦, 杨志兆, 张永兵, 罗仙平. 江西宜丰圳口里低品位锂瓷石矿选矿试验研究[J]. 有色金属科学与工程, 2022, 13(6): 113-118. DOI: 10.13264/j.cnki.ysjskx.2022.06.015
引用本文: 谢添, 杨思琦, 杨志兆, 张永兵, 罗仙平. 江西宜丰圳口里低品位锂瓷石矿选矿试验研究[J]. 有色金属科学与工程, 2022, 13(6): 113-118. DOI: 10.13264/j.cnki.ysjskx.2022.06.015
XIE Tian, YANG Siqi, YANG Zhizhao, ZHANG Yongbing, LUO Xianping. Beneficiation of low grade lithium porcelain ore in the YifengZhenkouli Mining area, Jiangxi Province[J]. Nonferrous Metals Science and Engineering, 2022, 13(6): 113-118. DOI: 10.13264/j.cnki.ysjskx.2022.06.015
Citation: XIE Tian, YANG Siqi, YANG Zhizhao, ZHANG Yongbing, LUO Xianping. Beneficiation of low grade lithium porcelain ore in the YifengZhenkouli Mining area, Jiangxi Province[J]. Nonferrous Metals Science and Engineering, 2022, 13(6): 113-118. DOI: 10.13264/j.cnki.ysjskx.2022.06.015

江西宜丰圳口里低品位锂瓷石矿选矿试验研究

Beneficiation of low grade lithium porcelain ore in the YifengZhenkouli Mining area, Jiangxi Province

  • 摘要: 锂是实现“碳达峰碳中和”战略目标的重要支撑原料,江西宜春地区锂云母资源丰富,并成为国内重要的锂电原材料供应基地。随着采选规模的扩大,低品位难处理锂瓷石资源的开发利用问题亟需解决。以宜丰圳口里矿区低品位锂瓷石矿为研究对象,开展了工艺矿物学研究与选矿试验研究,结果表明,该类矿石中云母矿物晶格中钾含量较高(9.78%),而Li2O理论品位较低,仅1.72%左右,表现出白云母/绢云母性质;此外,矿石存在一定风化蚀变现象,不利于锂云母矿物浮选分离。针对该矿石的阴阳离子组合捕收剂JYM具有良好的选择性与捕收能力,在该捕收剂体系下,采用脱泥-浮选工艺,经“一粗两精两扫”工艺流程,获得了Li2O品位1.75%、回收率80.70%的选别指标,锂云母与脉石实现了良好的浮选分离。

     

    Abstract: Lithium is an important support for achieving the strategic goal of "carbon peaking and carbon neutralization". Yichun, Jiangxi Province, is rich in lepidolite resources and has become a crucial lithium battery raw material supply base in China. With the expansion of mining and dressing scales, the development and utilization of low-grade refractory lithium porcelain stone resources urgently need to be solved. In this paper, the low-grade lithium porcelain ore in the Zhenkouli mining area, Yifeng, was taken as the research object, and process mineralogy research and beneficiation test research were carried out. The results show that the mica mineral in the ore has high potassium content (9.78%) and low Li2O (1.72%) theoretical grade, showing the properties of muscovite/sericite, which exists in a certain weathering and alteration phenomenon. It is not conducive to the flotation separation of lepidolite. Fourth, the collector JYM has good selectivity and collection capacity, which is a combination of anionic and cationic collectors. Under this collector system, a separation index of 1.75% Li2O grade and recovery of 80.70% can be obtained by using the desliming flotation process, and a great flotation separation was achieved between lepidolite and gangue.

     

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