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察尔汗盐湖别勒滩区段固态锂的赋存状态与分布特征
引用本文:张宇萌,胡宇飞,王笛,刘成林,李瑞琴,王罗海,刘万平,沈立建,焦距.察尔汗盐湖别勒滩区段固态锂的赋存状态与分布特征[J].矿床地质,2023,42(1):77-89.
作者姓名:张宇萌  胡宇飞  王笛  刘成林  李瑞琴  王罗海  刘万平  沈立建  焦距
作者单位:中国地质科学院矿产资源研究所 自然资源部深地资源成矿作用与矿产资源预测重点实验室, 北京 100037;中国地质大学, 北京 100083;中国地质科学院矿产资源研究所 自然资源部深地资源成矿作用与矿产资源预测重点实验室, 北京 100037;中国地质大学, 湖北 武汉 430074;青海盐湖工业股份公司, 青海 格尔木 816000
基金项目:本文得到青海省自然科学基金项目“察尔汗盐湖低品位固态钾锂溶采机理与应用研究”(编号:2019-ZJ-917)和国家重点研发计划项目“盐湖资源开采与综合利用关键技术研究与示范”项目第一课题“深部盐湖资源勘查与开采技术”(编号:2018YFC0604801)共同资助
摘    要:察尔汗盐湖别勒滩区段赋存大量具有开发潜力的固态锂资源,但目前对固态锂的赋存状态和分布特征研究较少。文章利用水溶法、稀酸溶法和全岩溶解法3种方法对该区4个钻孔的15件岩芯样品进行主微量元素分析。研究结果显示,水溶法的w(Li)(Li溶出量,余同)为23.37×10-6~85.98×10-6,稀酸溶法的w(Li)为47.77×10-6~139.58×10-6,全岩溶解法w(Li)为49.47×10-6~151.64×10-6。以同一样品全岩溶解所得的w(Li)为100%,水溶法、稀酸溶法的w(Li)平均值分别为56.44%和92.83%。结合矿物薄片鉴定、扫描电镜分析和X射线衍射的鉴定结果,岩芯样品中的矿物主要是石盐、杂卤石、光卤石、石英、绿泥石、钠长石、硬石膏、白云石、伊利石、菱镁矿和方解石等,推测固态锂大部分赋存于易溶盐类矿物,其余赋存于不易溶的碳酸盐、硫酸盐和硅酸盐等矿物中。根据4个钻孔岩芯样品的Li溶出量来看,察尔汗盐湖别勒滩区段固体钾盐层中固态锂的分...

关 键 词:地质学  固态锂  赋存状态  分布特征  别勒滩区段  察尔汗盐湖
收稿时间:2022/4/16 0:00:00
修稿时间:2022/12/24 0:00:00

Occurrence state and distribution characteristics of solid lithium in Bieletan section of Qarhan Salt Lake
ZHANG YuMeng,HU YuFei,WANG Di,LIU ChengLin,LI RuiQin,WANG LuoHai,LIU WanPing,SHEN LiJian,JIAO Ju.Occurrence state and distribution characteristics of solid lithium in Bieletan section of Qarhan Salt Lake[J].Mineral Deposits,2023,42(1):77-89.
Authors:ZHANG YuMeng  HU YuFei  WANG Di  LIU ChengLin  LI RuiQin  WANG LuoHai  LIU WanPing  SHEN LiJian  JIAO Ju
Institution:MNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, CAGS, Beijing 100037, China;China University of Geosciences, Beijing 100083, China;MNR Key Laboratory of Metallogeny and Mineral Assessment, Institute of Mineral Resources, CAGS, Beijing 100037, China;China University of Geosciences, Wuhan 430074, Hubei, China;Qinghai Salt Lake Industry Co. Ltd., Golmud 816000, Qinghai, China
Abstract:The Bieletan section of Qarhan Salt Lake hosts abundant solid lithium resources with high potential for exploitation. However the studies with respect to the distribution and characteristics of those solid lithium resources are very scanty. This study analyzed the major and trace elements of 15 samples from 4 boreholes dissolved by distilled water, dilute acid, and strong acid, respectively. The results show that the samples dissolved by above solvents generate solutions with Li concentrations ranging from 23.37×10-6~85.98×10-6, 47.77×10-6~139.58×10-6 and 49.47 × 10-6~151.64 × 10-6, respectively. We postulate the leaching amount of Li by strong acid was thorough (100%), then the average leaching efficiencies by distilled water and dilute acid are 56.44% and 92.83%, respectively. Those samples are composed of halite, polyhalite, carnallite, quartz, chlorite, albite, anhydrite, dolomite, illite, magnesite, calcite, etc., based on thin section observation, XRD and SEM analyses. Thus it is suggested that most Li resources are present in soluble salt minerals, and the rest Li resources occur within silicates, sulfate and carbonates. In the light of leaching amount of Li from 4 boreholes, the contents of solid Li within Bieletan section of the Qarhan Salt Lake show a decreasing trend from west to east, which is consistent with the distribution pattern of Li concentrations of brines, thus suggesting the contents of solid Li is influenced by Li concentrations of brines.
Keywords:geology  solid lithium  occurrence state  distribution characteristics  Beletan section  Qarhan Salt Lake
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