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湘东北正冲金矿床成矿物质来源的S-Pb同位素示踪 被引量:7
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作者 孙思辰 杨立强 +5 位作者 张良 王久懿 韩松昊 李智琪 张福 蔺福强 《岩石学报》 SCIE EI CAS CSCD 北大核心 2020年第5期1461-1476,共16页
长沙-平江(长-平)成矿带位于江南造山带中段,金资源储量达250余吨。该区金矿床是典型的沉积变质岩容矿的热液脉状金矿床,构造控矿特征清晰,然而巨量金来源与矿床成因尚不明确。正冲金矿床主体赋存于新元古代变质沉积岩中,矿区内同时发... 长沙-平江(长-平)成矿带位于江南造山带中段,金资源储量达250余吨。该区金矿床是典型的沉积变质岩容矿的热液脉状金矿床,构造控矿特征清晰,然而巨量金来源与矿床成因尚不明确。正冲金矿床主体赋存于新元古代变质沉积岩中,矿区内同时发育少量花岗岩体,是识别不同地质体对成矿贡献的理想选择。因此,本文选取正冲金矿床,在野外宏观地质工作基础上,系统开展了成矿阶段划分与载金硫化物同位素地球化学测试等工作。正冲金矿床严格受控于NNE-NE向的长-平断裂及其次级断裂系统,矿体呈脉状,走向NW或NNE,蚀变分带不明显。正冲金矿床矿物组合简单:早阶段发育有乳白色贫矿石英与白云母;成矿主阶段为石英细脉与自然金黄铁矿毒砂-多金属硫化物-少量绿泥石;成矿晚阶段发育有石英-方解石脉。其中,黄铁矿与毒砂是矿床内自然金与不可见金重要的载体。为弱化毒砂和黄铁矿裂隙中细粒多金属硫化物对同位素地球化学结果的干扰,本次研究挑选自形、未变形的毒砂、黄铁矿颗粒测试研究。实验结果表明载金毒砂铅同位素组成208Pb/204Pb、207Pb/204Pb与206Pb/204Pb分别为37.867~38.285、15.555~15.663与17.743-18.073,略高于黄铁矿铅同位素组成37.774~38.268、15.547~15.660与17.670~18.021;毒砂δ34S变化幅度较小(-4.7‰^-0.9‰,均值为-3.0%),略高于黄铁矿δ34S值(-9.1‰^-1.1‰,均值为-4.4‰),成矿流体氧逸度约为10-30.7。正冲金矿床硫、铅同位素组成与赋矿围岩、区域内岩体和斑岩型矿床同位素特征具有较大差异,说明区内岩体与赋矿地层并不是正冲金矿床成矿物质的主要来源。金矿床成矿物质具有深源特征,可能来源于比冷家溪群地层变质程度更高、沉积位置更深的变质沉积岩。结合区域地质背景、金矿床地质-地球化学特征与成矿年代学资料,推断正冲金矿床为造山型金矿床。 展开更多
关键词 硫同位素 铅同位素 成矿物质来源 正冲金矿床 造山型金矿床
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Petrogenesis and Geodynamic Implications of Early Cretaceous(~130 Ma)Magmatism in the Baingoin Batholith,Central Tibet:Products of Subducting Slab Rollback
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作者 LI Faqiao TANG Juxing +7 位作者 WANG Nan LIU Zhibo SONG Yang ZhanG Jing MA Xudong FU Bin LI Haifeng han songhao 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2022年第6期1960-1978,共19页
The Baingoin batholith is one of the largest granitic plutons in the North Lhasa terrane.Its petrogenesis and tectonic setting have been studied for decades,but remain controversial.Here we report data on geochronolog... The Baingoin batholith is one of the largest granitic plutons in the North Lhasa terrane.Its petrogenesis and tectonic setting have been studied for decades,but remain controversial.Here we report data on geochronology,geochemistry and isotopes of Early Cretaceous granitoids within the Baingoin batholith,which provide more evidence to uncover its petrogenesis and regional geodynamic processes.The Early Cretaceous magmatism yields ages of 134.4–132.0 Ma and can be divided into I-type,S-type and highly fractionated granites.The I-and S-type granites exhibit medium SiO2,high K_(2)O/Na_(2)O with negativeεNd(t)andεHf(t)values,whereas,the albite granites have very high SiO_(2)(79.04%–80.40%),very low K_(2)O/N_(2)O,negativeεNd(t)and a large variation inεHf(t).Our new data indicate that these granitoids are derived from unbalanced melting in a heterogeneous source area.The granodiorites involved had a hybrid origin from partial melting of basalt-derived and Al-rich rocks in the crust,the porphyritic monzogranites being derived from partial melting of pelitic rocks.The albite granites crystallized from residual melt separated from K-rich magma within the‘mush’process and underwent fractionation of K-feldspar.We believe that the Early Cretaceous magmatism formed in an extensional setting produced by the initial and continuous rollback of a northward-subducting slab of the NTO. 展开更多
关键词 petraluminous granites highly fractionated granites Baingoin batholith subducting slab rollback TIBET
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