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Lead Isotopic Composition and Lead Source of the Huogeqi Cu-Pb-Zn Deposit,Inner Mongolia,China 被引量:5
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作者 ZHU Xiaoqing ZHANG Qian +1 位作者 HE Yuliang ZHU Chaohui 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2006年第4期528-539,共12页
The Huogeqi orefield located on the northern side of Mt. Langshan, Inner Mongolia occurs in the Middle Proterozoic Langshan Group metamorphic rocks, and the orebodies arc stratiform. In the past twenty years, many Chi... The Huogeqi orefield located on the northern side of Mt. Langshan, Inner Mongolia occurs in the Middle Proterozoic Langshan Group metamorphic rocks, and the orebodies arc stratiform. In the past twenty years, many Chinese geologists have conducted researches on the Huogeqi Cu-Pb-Zn deposit, but there has been still a controversy on its origin. Some advocate that the deposit is of sedimentary-metamorphic rcworking origin, some hold that it is of sea-floor SEDEX origin, and others have a preference for magmatic superimposition origin. The crux of the controversy is that there is no common understanding about the source of ore-forming materials. In this paper, the Pb isotopic compositions of regional Achaean-Early Proterozoic basement rocks, various types of sedimentary- metamorphic rocks and volcanic rocks in the mining district, Late Proterozoic and Hercynian magmatic rocks arc introduced and compared with the orc-lead composition, so as to constrain the source of the ore lead. The result indicates that (1) sulfides in the ores have homogeneous Pb isotopic compositions, showing a narrow variation range. Their ^206pb/^204pb ratios arc within a range of 17.027- 17.317; ^207Pb/^204pb ratios, 15.451-15.786 and ^208Pb/^204pb ratios, 36.747-37.669; (2) the Pb isotopic compositions of the regional Achaean-Early Proterozoic basement rocks arc characteristic of the old Pb isotopic composition at the early-stage evolution of the Earth, which varies over a wider range, reflecting significant differences in Pb isotopic compositions of the ores. All this indicates that the source of ore lead has no bearing on the basement rocks; (3) the sedimentary-metamorphic rocks in the mining district arc characterized by highly variable and more radiogenic Pb isotopic compositions and their Pb isotopic ratios arc obviously higher than those of ores, demonstrating that ore lead did not result from metamorphic rcworking of these rocks; (4) Pb isotopic compositions of Late Proterozoic diorite-gabbro and Hercynian granite are higher than those of ores. Meanwhile, the Pb isotopic compositions of sulfides in the small-sized strata-penetrating mineralized veinlets formed at later stages arc completely consistent with that of sulfides in stratiform-banded ores, suggesting that these veiniets arc the product of autochthonous rcworking of the stratiform-banded ores during the period of metamorphism and the late magmatic superimposition-mineralization can be excluded; (5) amphibolite, whose protolith is basic volcanic rocks, has the same Pb isotopic compositions as ores, implying that ore lead was derived probably from basic volcanism. So, the source of ore-forming materials for the Huogeqi deposit is like that of the volcanic massive sulfide (VMS) deposits. However, the orebodies do not occur directly within the volcanic rocks, and instead they overlie the volcanic rocks, showing some differences from those typical VMS-type deposits. 展开更多
关键词 Pb isotopic composition ore lead source Huogeqi cu-pb-zn deposit Inner Mongolia
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The Characteristics of Ore-Controlling Structure in Baoshan Cu-Pb-Zn Polymetallic Deposit,Hunan Province 被引量:3
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作者 QI Fan-yu1,ZHANG Zhi1,2,LI Yong-sheng1,ZHEN Shi-min1,JIA De-long1,GONG Fan-ying1,GONG Xiao-dong1,HE Peng1(1.School of Earth & Resources,China University of Geosciences Beijing,Beijing 100083,China 2.Development and Research Center,Beijing 100037 China) 《矿物学报》 CAS CSCD 北大核心 2011年第S1期823-824,共2页
The Baoshan Cu-Pb-Zn polymetallic deposit is lied in the central Nanling mineralization zone,and belongs to the junction area of the Chenzhou-Linwu fault zone and the Leiyang-Linwu fault zone.It is a significant part ... The Baoshan Cu-Pb-Zn polymetallic deposit is lied in the central Nanling mineralization zone,and belongs to the junction area of the Chenzhou-Linwu fault zone and the Leiyang-Linwu fault zone.It is a significant part of Nanling polymetallic deposit belt.The outcropping stratas consist of upper Devonian Shetianqiao,Xikuangshan Formation,Lower Carboniferous Menggong’ao,Shidengzi,Ceshui,and Zimenqiao Formation.Igneous rocks in the Baoshan ore area mainly comprise granodiorite porphyry.Furthermore,the radio isotopic age ranges from 123 Ma to 183 Ma,belonging to the early to middle Yanshanian. 展开更多
关键词 PB The Characteristics of Ore-Controlling Structure in Baoshan cu-pb-zn Polymetallic deposit Hunan Province ZN CU
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江西省村前铜多金属矿床罕见矿物的发现及意义 被引量:3
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作者 王强 肖渊甫 +5 位作者 张雪辉 杨玲 王瑜亮 张世铭 龚婷婷 张春茂 《岩石矿物学杂志》 CAS CSCD 北大核心 2013年第4期515-522,共8页
通过野外地质调查采样、显微镜鉴定、扫描电镜观察和X射线能谱仪测试分析,对钦杭成矿带村前铜铅锌矿床的矿石物质组分做了系统的研究,首次在矿石中发现了自然界罕见的自然铝及锌铜互化物矿物。这两类矿物均具有独特的形成条件,对研究矿... 通过野外地质调查采样、显微镜鉴定、扫描电镜观察和X射线能谱仪测试分析,对钦杭成矿带村前铜铅锌矿床的矿石物质组分做了系统的研究,首次在矿石中发现了自然界罕见的自然铝及锌铜互化物矿物。这两类矿物均具有独特的形成条件,对研究矿床成矿环境、形成条件、成矿物质来源具有重要的指示意义,表明矿床成矿初期为高温强还原、低硫逸度环境,成矿流体中有幔源物质混入。 展开更多
关键词 自然铝 锌铜互化物 铜多金属矿床 村前 钦杭成矿带
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江西省村前铜多金属矿床斜长花岗斑岩LA-ICP-MS锆石U-Pb年龄及地质意义 被引量:23
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作者 王强 孙燕 +3 位作者 张雪辉 张世铭 王瑜亮 张春茂 《中国地质》 CAS CSCD 北大核心 2012年第5期1143-1150,共8页
村前铜多金属矿床是产于钦杭成矿带东段的重要的斑岩-矽卡岩矿床,含矿岩体为黑云母斜长花岗斑岩和斜长花岗斑岩,具有多次侵入特点及钙碱性岩石的地球化学特征。本研究采用了LA-ICP-MS技术,首次对含矿的斜长花岗斑岩岩体中的锆石进行了U-... 村前铜多金属矿床是产于钦杭成矿带东段的重要的斑岩-矽卡岩矿床,含矿岩体为黑云母斜长花岗斑岩和斜长花岗斑岩,具有多次侵入特点及钙碱性岩石的地球化学特征。本研究采用了LA-ICP-MS技术,首次对含矿的斜长花岗斑岩岩体中的锆石进行了U-Th-Pb同位素分析,获得其成岩年龄为(169.3±1.1)Ma。这一年龄与钦杭成矿带中德兴花岗闪长斑岩、银山石英斑岩、冷水坑花岗斑岩、桐村花岗斑岩等岩体的年龄十分接近,揭示在钦杭成矿带175-156 Ma经历了一次大规模的岩浆侵位与成矿事件,形成了众多与埃达克质或钙碱质花岗岩有关的斑岩-矽卡岩型铜多金属矿床,进一步说明钦杭成矿带在此时期在同一岩浆-动力背景下形成了斑岩-矽卡岩型铜多金属矿成矿系列。 展开更多
关键词 铜多金属矿床 斜长花岗斑岩 锆石U-PB LA-ICP-MS 成矿系列 村前
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江西省村前夕卡岩+斑岩复合型铜铅锌矿地质特征 被引量:9
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作者 李均良 《地质找矿论丛》 CAS CSCD 2009年第2期142-145,共4页
江西省村前夕卡岩+斑岩复合型铜铅锌矿床产于燕山中期超浅成花岗斑岩与上石炭统黄龙-船山组白云质灰岩、白云岩接触带及其附近,具有接触带、斑岩体内成矿的特点。NE向村前倒转倾伏背斜轴部及倒转翼与岩体接触部位是矿区有利的成矿部... 江西省村前夕卡岩+斑岩复合型铜铅锌矿床产于燕山中期超浅成花岗斑岩与上石炭统黄龙-船山组白云质灰岩、白云岩接触带及其附近,具有接触带、斑岩体内成矿的特点。NE向村前倒转倾伏背斜轴部及倒转翼与岩体接触部位是矿区有利的成矿部位。矿体形态总体为不规则似层状,沿走向、倾向皆有膨大与收缩现象,倾角15°~68°。矿化主为铜铅锌。花岗斑岩、接触面的产状、围岩的夕卡岩化蚀变是矿化富集的主要控制因素。研究表明,含矿热液主要来自于上地幔,矿床成因类型属“夕卡岩+斑岩复合型”。 展开更多
关键词 夕卡岩型+斑岩型矿床 村前铜铅锌矿床 江西省
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江西省村前铜多金属矿床成矿流体性质与物质来源:流体包裹体及硫铅同位素证据 被引量:5
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作者 王强 沈利军 肖倩茹 《矿物岩石地球化学通报》 CSCD 北大核心 2017年第5期797-806,共10页
为揭示村前铜多金属矿床成矿流体性质与物质来源,为矿床成因的深入研究提供依据,对铁铜硫化物石英脉中的流体包裹体和金属硫化物进行硫、铅同位素分析测试。结果显示,铁铜硫化物石英脉中存在纯液相、气液两相、气液固三相和纯(极富)气相... 为揭示村前铜多金属矿床成矿流体性质与物质来源,为矿床成因的深入研究提供依据,对铁铜硫化物石英脉中的流体包裹体和金属硫化物进行硫、铅同位素分析测试。结果显示,铁铜硫化物石英脉中存在纯液相、气液两相、气液固三相和纯(极富)气相4种类型流体包裹体。流体包裹体均一温度范围为256~417℃,流体盐度则分为明显的两个族群,一为低盐度(7.15%~13.88%NaCl_(eqv))的气液两相包裹体,另一为高盐度(31.93%~43.79%NaCl_(eqv))的气液固三相包裹体,且二者在空间上具有共存关系,代表了流体的沸腾作用,成矿流体属中高温、高盐度岩浆热液流体。硫、铅同位素研究表明,矿石硫同位素组成为接近1的正值,属深源硫;铅同位素指示矿石中铅主要为上部地壳来源,有少量幔源铅或壳幔混源的造山带铅,表明上部地壳对矿质来源具有重要的贡献作用。 展开更多
关键词 流体包裹体 硫、铅同位素 钦杭成矿带 村前铜多金属矿床
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钦-杭成矿带东段村前含矿斑岩地球化学特征及其构造环境与成矿意义 被引量:2
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作者 郝哲敏 肖渊甫 +4 位作者 杜慧富 王强 常静 沈利军 林玲 《岩石学报》 SCIE EI CAS CSCD 北大核心 2016年第7期2069-2085,共17页
村前铜多金属矿床位于钦杭成矿带东段,为一具有矽卡岩型矿化和斑岩型矿化的铜多金属矿床,含矿岩体为燕山早期花岗闪长斑岩,岩石具有富硅、富铝、富碱的特点,属于偏铝-过铝质钙碱性花岗岩类。岩体具有从深部向浅部蚀变增强,大部分组分活... 村前铜多金属矿床位于钦杭成矿带东段,为一具有矽卡岩型矿化和斑岩型矿化的铜多金属矿床,含矿岩体为燕山早期花岗闪长斑岩,岩石具有富硅、富铝、富碱的特点,属于偏铝-过铝质钙碱性花岗岩类。岩体具有从深部向浅部蚀变增强,大部分组分活动性不明显,而成矿元素Cu-Mo-Fe-Pb-Zn-Au-Ag含量明显增加,Na2O、Sr含量降低,REE元素除Eu少量丢失外,其余均呈一致的迁入特征。岩体属Ⅰ型花岗质岩石,由具角闪石+石榴子石残留相的火成岩部分熔融形成的熔浆,混合或混染了地壳重熔型岩浆上侵就位而成。钦杭结合带东段,燕山期中酸性岩浆活动具有从176-150Ma的埃达克岩或具岛弧花岗岩特征的Ⅰ型花岗岩,至150-140Ma的S型花岗岩,向140-110Ma的A型花岗岩演化趋势,显示了地壳由厚减薄的过程,暗示其大地构造背景为岩石圈的伸展减薄环境,而形成于169.3±1.1Ma的村前斑岩体正处于伸展阶段早期。综合岩体成矿特征表明,钦杭成矿带东段及邻近地区,176-160Ma主要形成与Ⅰ型花岗质岩石有关的以Cu为主的多金属矿床;160-150Ma主要形成与Ⅰ型花岗质岩石有关的Cu-Mo矿床与W-Sn矿床;150-140Ma主要形成与S型花岗质岩石有关的以W-Sn-Mo为主的多金属矿床,以及以Ag-Pb-Zn为主的多金属矿床;140-110Ma主要形成与A型花岗质岩石有关的以W-Sn-Mo为主的多金属矿床,少量与Ⅰ型花岗质岩石有关的Pb-Zn矿床。 展开更多
关键词 村前铜多金属矿床 花岗闪长斑岩 Ⅰ型花岗岩 燕山早期 钦-杭成矿带东段
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Application of fractal content-gradient method for delineating geochemical anomalies associated with copper occurrences in the Yangla ore field,China 被引量:4
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作者 Zhen Chen Jianping Chen +1 位作者 Shufang Tian Bin Xu 《Geoscience Frontiers》 SCIE CAS CSCD 2017年第1期189-197,共9页
Fractal and multi-fractal content area method finds application in a wide variety of geological,geochemical and geophysical fields.In this study,the fractal content-gradient method was used on1:10,000 scale to deline... Fractal and multi-fractal content area method finds application in a wide variety of geological,geochemical and geophysical fields.In this study,the fractal content-gradient method was used on1:10,000 scale to delineate geochemical anomalies associated with copper mineralization.Analysis of geochemical data from the Yangla super large Cu-Pb-Zn polymetallic ore district using the fractal content-gradient method,combined with other geological data from this area,indicates that oreprospecting in the ore district should focus on Cu as the main metal and Pb-Zn and Au as the auxiliary metals.The types of deposits include(in chronological order) re-formed sedimentary exhalative(SEDEX),skarns,porphyries,and hydrothermal vein-type deposits.Three ore-prospecting targets are divided on a S-N basis:(1) the Qulong exploration area,in which the targets are porphyry-type Cu deposits;(2) the Zongya exploration area,where the targets are porphyry-type Cu and hydrothermal vein-type Cu-Pb polymetallic deposits;and(3) the Zarelongma exploration area,characterized mainly skarn-type "Yangla-style" massive sulfide Cu-Pb deposits.Our study demonstrates that the fractal content-gradient method is convenient,simple,rapid,and direct for delineating geochemical anomalies and for outlining potential exploration targets. 展开更多
关键词 Fractal method Geochemical data cu-pb-zn polymetallic deposits Mineral exploration
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