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南秦岭冷水沟铜钼金矿床年代学及其地质意义 被引量:1
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作者 陈雷 闫臻 +4 位作者 刘凯 代军治 郭现轻 聂潇 庞绪勇 《吉林大学学报(地球科学版)》 CAS CSCD 北大核心 2023年第3期713-727,共15页
冷水沟铜钼金矿床位于南秦岭山阳—柞水矿集区内,是南秦岭晚中生代斑岩-矽卡岩型铜(钼)矿床的代表性矿床之一。冷水沟矿区内除斑岩-矽卡岩型铜钼矿体外,还发育构造蚀变岩型金矿体,但对于铜钼矿化与金矿化之间是否存在成因联系一直存在... 冷水沟铜钼金矿床位于南秦岭山阳—柞水矿集区内,是南秦岭晚中生代斑岩-矽卡岩型铜(钼)矿床的代表性矿床之一。冷水沟矿区内除斑岩-矽卡岩型铜钼矿体外,还发育构造蚀变岩型金矿体,但对于铜钼矿化与金矿化之间是否存在成因联系一直存在疑惑。本次通过对斑岩-矽卡岩型铜钼矿体中辉钼矿与构造蚀变岩型金矿体中蚀变钾长石和绢云母分别进行Re-Os和^(40)Ar-^(39)Ar定年,以期能够通过成矿年代学研究来厘定两者之间的成因联系。测试结果显示,斑岩-矽卡岩型铜钼矿体的辉钼矿Re-Os等时线年龄为(147.4±8.4)Ma,构造蚀变岩型金矿体中蚀变钾长石和绢云母^(40)Ar-^(39)Ar年龄约为144 Ma,两者在误差范围内一致,说明铜钼矿体和金矿体均形成于晚侏罗世—早白垩世,是同一成矿作用的产物,并与区域内晚侏罗世—早白垩世岩浆岩具有密切的成因联系。结合区域构造演化特征,本次研究结果显示冷水沟铜钼金矿床形成于晚中生代秦岭造山带构造体制转变的动力学背景。同时,冷水沟地区金矿成矿时代的限定也表明南秦岭地区存在晚侏罗世—早白垩世金矿成矿作用。 展开更多
关键词 冷水沟铜钼金矿床 辉钼矿RE-OS定年 蚀变钾长石和绢云母^(40)Ar-^(39)Ar定年 南秦岭山阳—柞水矿集区
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小秦岭镰子沟金矿床辉钼矿Re-Os年龄和锆石U-Pb年龄及其地质意义 被引量:6
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作者 代军治 高菊生 +3 位作者 钱壮志 王渊 周金隆 高毅 《地质通报》 CAS CSCD 北大核心 2019年第8期1369-1377,共9页
镰子沟金矿床位于小秦岭金矿集区西部,矿体受断裂和石英脉体控制,围岩蚀变以钾化和硅化为主。矿床浅部以金矿为主,深部发现金钼(共)伴生矿体。为了确定镰子沟金矿床成岩、成矿时代,选择镰子沟金矿床正长斑岩和金钼矿石分别进行了LA-ICP... 镰子沟金矿床位于小秦岭金矿集区西部,矿体受断裂和石英脉体控制,围岩蚀变以钾化和硅化为主。矿床浅部以金矿为主,深部发现金钼(共)伴生矿体。为了确定镰子沟金矿床成岩、成矿时代,选择镰子沟金矿床正长斑岩和金钼矿石分别进行了LA-ICP-MS锆石U-Pb和辉钼矿Re-Os同位素研究。获得正长斑岩的207Pb/206Pb年龄加权平均值为1802.9±9.9Ma,此年龄明显早于小秦岭地区金矿床的形成时代;获得辉钼矿Re-Os等时线年龄为128.8±6.5Ma,指示矿床形成于早白垩世,晚于区域已知花岗岩形成时代。综合研究认为,镰子沟金矿床的形成与区域花岗岩无关,可能与深部流体或隐伏岩浆有关。 展开更多
关键词 地质特征 LA-ICP-MS锆石U-PB年龄 RE-OS年龄 成岩成矿时代 镰子沟金矿床
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小秦岭镰子沟金矿床地质特征、黄铁矿原位硫同位素组成及成因意义 被引量:7
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作者 代军治 高菊生 +4 位作者 钱壮志 张龙斌 周金隆 李平 高毅 《吉林大学学报(地球科学版)》 EI CAS CSCD 北大核心 2018年第6期1669-1682,共14页
镰子沟金矿床位于华北陆块南缘小秦岭金矿矿集区西部,矿体赋存于太华群上部岩层内,受断裂构造和石英脉控制,带状钾长石化是矿床典型的围岩蚀变,矿物组合为石英-黄铁矿-方铅矿-黄铜矿±重晶石±磁铁矿。为了探讨成矿物质来源及... 镰子沟金矿床位于华北陆块南缘小秦岭金矿矿集区西部,矿体赋存于太华群上部岩层内,受断裂构造和石英脉控制,带状钾长石化是矿床典型的围岩蚀变,矿物组合为石英-黄铁矿-方铅矿-黄铜矿±重晶石±磁铁矿。为了探讨成矿物质来源及矿床成因,采用LA-MC-ICP-MS技术对镰子沟金矿床黄铁矿进行原位微区硫同位素分析,获得单颗粒黄铁矿的硫同位素变化范围为-15.27‰^-11.98‰,平均-13.35‰,小于共生重晶石硫同位素值9.8‰~12.4‰。根据硫化物与共生硫酸盐矿物,估算成矿热源总硫值为-3.6‰,与新太古界太华群和燕山期华山花岗岩均不同。综合矿化蚀变、地球化学及同位素组成,认为太华群对金矿床成矿物质来源的影响较华山花岗岩明显,但非主要来源,金矿床成矿与深部流体或隐伏岩体有关,矿床受深部流体和构造控制,深部仍有寻找构造蚀变型或微细浸染型金矿体的潜力,但规模有限。 展开更多
关键词 镰子沟金矿床 原位硫同位素 成矿物质 深源流体 小秦岭
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Xiba Granitic Pluton in the Qinling Orogenic Belt, Central China: Its Petrogenesis and Tectonic Implications 被引量:13
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作者 ZHANG Fan LIU Shuwen +5 位作者 CHEN Xu LI Qiugen dai junzhi YANG Kai WU Fenghui CHEN Youzhang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2012年第5期1128-1142,共15页
Xiba granitic pluton is located in South Qinling tectonic domain of the Qinling orogenic belt and consists mainly of granodiorite and monzogranite with significant number of microgranular quartz dioritic enclaves. SHR... Xiba granitic pluton is located in South Qinling tectonic domain of the Qinling orogenic belt and consists mainly of granodiorite and monzogranite with significant number of microgranular quartz dioritic enclaves. SHRIMP zircon U-Pb isotopic dating reveals that the quartz dioritic enclaves formed at 214±3 Ma, which is similar to the age of their host monzogranite (218±1 Ma). The granitoids belong to high-K calc-alkaline series, and are characterized by enriched LILEs relative to HFSEs with negative Nb, Ta and Ti anomalies, and right-declined REE patterns with (La/Yb) N ratios ranging from 15.83 to 26.47 and δEu values from 0.78 to 1.22 (mean= 0.97). Most of these samples from Xiba granitic pluton exhibit εNd(t) values of 8.79 to 5.38, depleted mantle Nd model ages (T DM ) between 1.1 Ga and 1.7 Ga, and initial Sr isotopic ratios ( 87 Sr/ 86 Sr) i from 0.7061 to 0.7082, indicating a possible Meso-to Paleoproterozoic lower crust source region, with exception of samples XB01-2-1 and XB10-1 displaying higher ( 87 Sr/ 86 Sr) i values of 0.779 and 0.735, respectively, which suggests a contamination of the upper crustal materials. Quartz dioritic enclaves are interpreted as the result of rapid crystallization fractionation during the parent magmatic emplacement, as evidenced by similar age, texture, geochemical, and Sr-Nd isotopic features with their host rocks. Characteristics of the petrological and geochemical data reveal that the parent magma of Xiba granitoids was produced by a magma mingling process. The upwelling asthenosphere caused a high heat flow and the mafic magma was underplated into the bottom of the lower continent crust, which caused the partial melting of the lower continent crustal materials. This geodynamic process generated the mixing parent magma between mafic magma from depleted mantle and felsic magma derived from the lower continent crust. Integrated petrogenesis and tectonic discrimination with regional tectonic evolution of the Qinling orogen, it is suggested that the granitoids are most likely products in a post-collision tectonic setting. 展开更多
关键词 Xiba granitoids SHRIMP U-Pb ages geochemistry and Sr-Nd isotopic systematics petrogenesis and tectonic implication Qinling orogenic belt
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