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碳酸盐黏土型锂资源的发现及意义 被引量:91

Carbonate-hosted clay-type lithium deposit and its prospecting significance
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摘要 黏土型锂资源具有矿床规模大、分布稳定、开发利用成本低的特点,成为近年来全球寻找新类型锂资源的一个重要方向.已报道的黏土型锂矿床成因上均与火山物质联系密切,本研究提出了成因机制与碳酸盐岩风化-沉积有关"碳酸盐黏土型锂矿床"的成矿新类型.主要地质地球化学特征可归纳为:(1)成矿物质来自基底的不纯碳酸盐岩;(2)主要以吸附方式存在于蒙脱石相中;(3)沉积环境对锂的富集具有重要的控制作用,还原、低能、滞留、局限的古地理环境有利于Li富集;(4)除Li外,还可能有Ga和REE的富集.根据这一新的成矿模型,通过科研示范性勘查,在滇中地区获得34×10~4t氧化锂资源量,达到超大型规模,验证了"碳酸盐黏土型锂矿床"这一新类型资源的成矿潜力.由于我国具有这一有利成矿条件的地区众多,可以预期,碳酸盐黏土型锂资源将有望成为我国新的重要的锂资源来源. In recent years,the clay-type lithium resources have attracted increasing attention due to their large scale,stable distribution,low cost of mining and utilization.Comparing with the traditional pegmatite-type and brine-type lithium deposits,it has become an important direction of exploration of new type lithium resources.The clay-type lithium resources reported have genetic relationship to volcanic materials.Through systematic research and review,this paper first proposed the genetic concept of"carbonate-hosted clay-type lithium deposit",which was related to carbonate weathering-sedimentation.Li-rich clay rocks found at present mainly include the Jiujialu formation(C1jj)of lower carboniferous in Guizhou Province and Daoshitou formation(P1d)of the lower Permian in central Yunnan Province.Although the different formation ages of the two sets of Li-rich strata in this study,their lithology is relatively similar to the section upward,including:(1)Aluminized clay rocks,local iron bearing;(2)compact aluminaceous clay rocks;(3)bean oolitic aluminaceous clay rocks;(4)loose soil-like clay rocks,among which the dense aluminaceous clay rocks and pisolitic aluminaceous clay rocks are the most favorable lithology for lithium enrichment.The results of XRD analysis show that the major minerals of clay rocks are hydralite,bomberite,montmorillonite,illite,kaolinite,anatase,rutile,zircon and pyrite.According to the analysis of more than 1000 samples from more than 30 profiles,it is shown that most of the samples from two sets of Li-rich strata have reached the comprehensive utilization index of lithium in bauxite(Li2O≥500μg/g),and the average Li2O content in the clay rocks is about 0.3%,and the highest is 1.1%.The detailed micro-analysis using Tof-SIMS technique has shown that lithium was mainly distributed in clay minerals,and mainly occurred in amorphous clay minerals identified as montmorillonite.The trace and major elements suggest that the weathering of underlying carbonate rocks provides a source of Li-rich clay rocks.Detailed field observations in combination with trace element geochemical analysis(such as high lithium samples of Sr/Ba ratio is generally less than 0.5,Mg O/Al2O3 ratio less than 1,Rb/K ratio is less than 0.003,Ni/Co ratio greater than 5),indicate that oxygen-poor and low-energy coastal marshes,lagoons and limited and closed ancient bay(basin)in the transitional environment may be ideal places for Li enrichment to form high-grade deposits.Therefore,the main geological and geochemical characteristics of this new type can be summarized as:(1)The ore-forming material is derived from the underlying carbonate formation;(2)lithium mainly exists in the smectite phase by adsorption;(3)the sedimentary environment plays an important role in the enrichment of lithium,the limnic basin in coastal plain was an ideal place for lithium accumulation;(4)in addition to Li,there may be Ga and REE enrichment occurring in this type clay.According to this new metallogenic model,it has obtained 340000 tons of lithium oxide resources in Dianzhong basin by geological exploration,reaching a super-large class deposit.Due to the numerous regions with similar ore-forming conditions of these type lithium resources,it can be expected that"carbonate-hosted clay-type lithium deposit"will become an important source of lithium resources in China.
作者 温汉捷 罗重光 杜胜江 于文修 顾汉念 凌坤跃 崔燚 李阳 杨季华 Hanjie Wen;Chongguang Luo;Shengjiang Du;Wenxiu Yu;Hannian Gu;Kunyue Ling;Yi Cui;Yang Li;Jihua Yang(State Key Laboratory of Ore Deposit Geochemistry,Institute of Geochemistry,Chinese Academy of Sciences,Guiyang 550081,China;College of Earth and Planetary Sciences,University of Chinese Academy of Sciences,Beijing 100049,China;State Key Laboratory of Nuclear Resources and Environment,East China University of Technology,Nanchang 330013,China;Faculty of Land Resource Engineering,Kunming University of Science and Technology,Kunming 650093,China)
出处 《科学通报》 EI CAS CSCD 北大核心 2020年第1期53-59,共7页 Chinese Science Bulletin
基金 国家重点研发计划(2017YFC0602500)资助
关键词 碳酸盐岩 黏土型 风化作用 lithium carbonate clay-type weathering
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