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新疆阿尔泰三叠纪锂矿化伟晶岩中热液成矿作用:来自单个流体包裹体组成LA-ICP-MS原位分析证据
Hydrothermal mineralization in Triassic Li-mineralized pegmatites in the Altay area of Xinjiang: Evidences from the in situ LA-ICP-MS analyses of individual fluid inclusions

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郭柳 1,2   张辉 1 *   吕正航 1   唐勇 1   安燚 1,2   陈剑争 1,2  
文摘 选取可可托海3号脉石英-锂辉石带、卡鲁安806号脉、库卡拉盖650脉,开展石英、锂辉石中流体包裹体显微测温以及石英中捕获的单个流体包裹体组成的LA-ICP-MS原位分析。结果表明,锂矿化伟晶岩晚期出溶流体相为H_2O-NaCl-CO_2体系,石英中流体包裹体均一温度为233~407 ℃,盐度为5.77%~20.15%;w(Li)为1527×10~(-6)~17767×10~(-6)、w(Cs)为32×10~(-6)~4563×10~(-6)、w(Rb)为10×10~(-6)~100×10~(-6)。Li与Cs、Rb与Cs之间存在正相关系,并且Li/Rb与Li、Cs/Rb与Cs显示正相关关系,表明Li、Rb、Cs强烈分配进入流体相。流体包裹体中K/Na<0.4,指示锂矿化伟晶岩晚期分异出的流体显示富钠性质。26个流体包裹体LA-ICP-MS分析结果显示锂矿化伟晶岩晚期流体相中含有0.33%~3.82% Li_2O(w(Li_2O)平均值为1.10%),考虑到Li、Cs、Rb在流体/熔体间的分配系数>1,由此提出伟晶岩型锂床具有岩浆热液成因的可能性。
其他语种文摘 In this paper, the quartz-spodumene zone of the Koktokay No. 3 dyke, Kaluan No.806 dyke, and Kukalagai No.650 dyke were selected as research objects to have conducted the microthermometric measurements of fluid inclusions in their quartz and spodumene crystals and the LA-ICP-MS in-situ analyses of compositions of individual fluid inclusions in their quartz crystals. Results show that the exsolved fluid phase from the melt of Li-mineralized pegmatite in the late stage belongs to the H_2O-NaCl-CO_2 system. Fluid inclusions in quartz crystals have homogenization temperatures varying from 233 ℃ to 407 ℃, salinities varying from 5.77% to 20.15% NaCleqv., contents of Li, Cs, and Rb ranging from 1527×10~(-6) to 17767×10~(-6), from 32×10~(-6) to 4563×10~(-6), and from 10×10~(-6) to 100×10~(-6), respectively. There are positive relationships between Li and Cs contents, Rb and Cs contents, and Li/Rb ratios and Li contents, and Cs/Rb ratios and Cs contents, indicating that Li, Rb, and Cs were largely partitioned into the fluid phase. The K/Na ratios of the fluid inclusions are commonly less than 0.4, indicating that the exsolved fluid phase from the melt of Li-mineralized pegmatite in the late stage was rich in sodium. The LA-ICP-MS analytical results of 26 fluid inclusions show that the exsolved fluid phase from the melt of Li-mineralized pegmatite in the late stage contained Li_2O contents of 0.33%-3.82% (with the average of 1.10%). Considering that the partition coefficients of Li, Cs, and Rb between fluid and melt phases are greater than 1, it is proposed that the pegmatite-type lithium deposit could be originated from the magmatic hydrothermal metallogenesis.
来源 矿物学报 ,2023,43(1):25-37 【核心库】
DOI 10.16461/j.cnki.1000-4734.2022.42.077
关键词 流体组成 ; 流体包裹体 ; LA-ICP-MS ; 锂矿化伟晶岩 ; 新疆阿尔泰
地址

1. 中国科学院地球化学研究所, 中国科学院地球内部物质与高温高压重点实验室, 贵州, 贵阳, 550081  

2. 中国科学院大学, 北京, 100049

语种 中文
文献类型 研究性论文
ISSN 1000-4734
学科 地质学
基金 国家自然科学基金项目 ;  中国科学院战略性先导科技专项
文献收藏号 CSCD:7509816

参考文献 共 48 共3页

1.  翟明国. 战略性关键金属矿产资源:现状与问题. 中国科学基金,2019,33(2):106-111 被引 186    
2.  张辉. 新疆阿尔泰造山带中伟晶岩型稀有金属矿床成矿规律、找矿模型及其找矿方向. 矿床地质,2019,38(4):792-814 被引 56    
3.  吕正航. 新疆科鲁木特112号伟晶岩脉岩浆-热液演化及成因初探,2013:1-194 被引 1    
4.  London D. Pegmatites. Canadian Mineralogist Special Publication,2008 被引 1    
5.  London D. Reading pegmatites: Part 4-What quartz and feldspars say. Rocks & Minerals,2018,93(4):320-336 被引 6    
6.  Cerny P. Fertile granites in the Archean and Proterozoic fields of rare element pegmatites: Crustal environment, geochemistry and petrogenetic relationships. Canadian Institute of Mining and Metallurgy, Special Publication. 39,1988:170-206 被引 1    
7.  Cerny P. Exploration strategy and methods for pegmatite deposits of tantalum. Lanthanides, Tantalum, and Niobium,1989:274-302 被引 3    
8.  Selway J B. A review of rare-element (Li-Cs-Ta) pegmatite exploration techniques for the Superi or Province, Canada, and large worldwide tantalum deposits. Exploration and Mining Geology,2005,14:1-30 被引 54    
9.  Dill H G. Pegmatites and aplites: Their genetic and applied ore geology. Ore Geology Reviews,2015,69:417-561 被引 39    
10.  Windley B F. Neoproterozoic to paleozoic geology of the Altai Orogen, NW China: New zircon age data and tectonic evolution. Journal of Geology,2002,110(6):719-737 被引 279    
11.  邹天人. 中国新疆稀有及稀土金属矿床,2006 被引 25    
12.  吴长年. 阿尔泰伟晶岩锂辉石中包裹体研究. 大地构造与成矿学,1994(4):353-362 被引 12    
13.  卢焕章. 岩浆-流体过渡和阿尔泰三号伟晶脉之成因. 矿物学报,1996,16(1):1-7 被引 37    
14.  朱金初. 新疆阿尔泰可可托海3号伟晶岩脉岩浆—热液演化和成因. 高校地质学报,2000(1):40-52 被引 56    
15.  郭伟. 单个流体包裹体LA-ICP-MS分析及应用进展. 地球科学,2020,45(4):1362-1374 被引 10    
16.  周云. 湖南锡田钨锡多金属矿床流体包裹体显微测温和LA-ICP-MS原位分析对成矿流体演化的制约. 地球科学,2021,46(4):1248-1268 被引 3    
17.  Windley B F. Tectonic models for accretion of the Central Asian Orogenic Belt. Journal of the Geological Society,2007,164(1):31-47 被引 925    
18.  Xiao W J. Accretion leading to collision and the Permian Solonker suture, Inner Mongolia, China: Termination of the central Asian orogenic belt. Tectonics,2003,22(6):1069 被引 513    
19.  Xiao W J. Paleozoic accretionary and collisional tectonics of the Eastern Tianshan (China): implications for the continental growth of central Asia. American Journal of Science,2004,304(4):370-395 被引 436    
20.  何国琦. 中国阿尔泰造山带的构造分区和地壳演化. 新疆地质科学(第2辑),1990:14-25 被引 5    
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