西北地质2026,Vol.59Issue(3):60-79,20.DOI:10.12401/j.nwg.2025174
东天山镜儿泉花岗伟晶岩型锂铍矿床成矿流体演化与稀有金属富集机制
Characteristics of Ore-forming Fluids of the Jing'erquan Granitic Pegmatite-type Lithium-Beryllium Deposit in the Eastern Tianshan
摘要
Abstract
Crystal-rich fluid inclusions serve as a crucial carrier in the evolution of pegmatitic melts-fluids,pro-viding the most direct evidence for unraveling the origin,migration,phase transitions,and associated element enrichment mechanisms of pegmatitic fluids.The Jing'erquan rare metal deposit is a typical granite-pegmatite type lithium-beryllium deposit in the East Tianshan,western Central Asian Orogenic Belt.However,the source and evolutionary characteristics of its ore-forming fluids remain unclear.This study conducted detailed petro-graphic observations,along with laser Raman spectroscopy,microthermometry,gas chromatography,and ion chromatography analyses on fluid inclusions from pegmatites in this deposit.The results indicate that the fluid inclusions at Jing'erquan are diverse in type.They are generally characterized by moderate-low temperatures(mainly ranging from 240℃to 380℃)and salinities(predominantly between 1.0 wt%NaCleqv and 5.5 wt%Na-Cleqv),as well as low densities(0.5~0.9 g/cm3).The fluid is rich in CO2,H2O,and N2,with minor amounts of C2H2 and CH4,and is relatively enriched in F-,Cl-,and alkali metal cations.This study proposes that the ore-forming fluids for the Jing'erquan Li-Be deposit were primarily magmatic in origin,resulting from the high frac-tional crystallization of granitic magma in a relatively closed environment.Two distinct pegmatite veins,domi-nated by spodumene and beryl,respectively,were formed during different stages of granitic magma differentia-tion.During the mineralization process,the fluid properties transitioned from moderate-low temperature-low salinity-low density to low temperature-moderate-low salinity-low density.The primary reason for this shift is that CO2 gradually reached saturation and separated from the ore-forming fluid,as the temperature,pressure,and solubility of CO2 and NaCl-H2O decreased.In this process,CO2 acted as an important carrier,facilitating the transportation and enrichment of lithium.Furthermore,the relative enrichment of F-,Cl-,and alkali metal cations played a significant role.Specifically,F-was conducive to the formation of complexes or compounds with rare metal cations such as Li+and Be2+,aiding their migration and subsequent precipitation and enrichment to form ore.关键词
稀有金属伟晶岩/流体包裹体/成矿流体/镜儿泉/东天山/气相色谱及离子色谱Key words
rare-metal pegmatite/fluid inclusions/ore-forming fluid/Jing'erquan/eastern Tianshan/gas and ion chromatography分类
天文与地球科学引用本文复制引用
依力扎提·居马洪,涂其军,凤永刚,吴世保,钟岳蔚,李平,吴昌志..东天山镜儿泉花岗伟晶岩型锂铍矿床成矿流体演化与稀有金属富集机制[J].西北地质,2026,59(3):60-79,20.基金项目
新疆维吾尔自治区重点研发计划"天山成矿带铜镍钴资源预测与潜力评价"(2023B03006-4)资助. (2023B03006-4)