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Lead Isotopic Composition and Lead Source in the Bainiuchang Ag-polymetallic Deposit, Yunnan Province, China 被引量:8
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作者 ZHU Chaohui ZHANG Qian +2 位作者 SHAO Shuxun ZHU Xiaoqing WANG Dapeng 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2008年第4期845-857,共13页
The Bainiuchang deposit in Yunnan Province, China, is located geographically between the Gejiu ore field and the Dulong ore field. In addition to the 〉7000 t Ag reserves, the deposit also boasts of large-scale Pb, Zn... The Bainiuchang deposit in Yunnan Province, China, is located geographically between the Gejiu ore field and the Dulong ore field. In addition to the 〉7000 t Ag reserves, the deposit also boasts of large-scale Pb, Zn and Sn reserves with a lot of dispersed elements (In, Cd, Ge, Ga, etc.). We have determined systematically the Pb isotope composition of the deposit. The Pb isotope ratios of the ores that are of sea-floor exhalative sedimentary origin in the northwest of the mining district, are 206pb/204pb = 17.758-18.537, 207pb/204pb = 15.175-15.862 and 206pb/204pb = 37.289-39.424, while those of ores that are of magmatic hydrothermal superimposition origin in the southeast of the mining district, are 206pb/204pb = 17.264-18.359, 207pb/204pb = 14.843-15.683 and 208pb/204pb = 36.481-38.838, respectively. In terms of the Pb isotope composition of feldspar in magmatic rocks or magmatic whole- rock samples from the mining district, we have determined the Pb isotope composition and acquired the Pb isotope ratios as: 206pb/204pb -- 18.224-18.700, 207pb/204pb -- 15.595-15.797 and 208pb/204pb -- 38.193-39.608. Then, in the light of the Pb isotope composition of metamorphic rock samples from the Proterozoic basement exposed in the Dulong ore field, we have determined the Pb isotope composition and obtained the isotope ratios as: 206pb/204pb -- 18.434-19.119, 207pb/204pb -- 15.644-15.693, and 208pb/204pb = 38.514-38.832. And the Pb isotope ratios of Cambrian sedimentary rocks, which are exposed in the Bainiuchang mining district, are 206pb/204pb = 18.307-19.206, 207pb/204pb = 15.622-15.809, and 208pb/204pb = 38.436-39.932. By comparing the two types of ores with respect to their Pb isotope compositions, it is indicated that lead in the Bainiuchang deposit was derived largely from the lower-crust granulite which is earlier than Neoproterozoic in age, but the Yanshanian magmatic hydrothermal fluids probably provided a part of ore-forming elements such as Sn for the ore blocks in the south of the mining district. 展开更多
关键词 Bainiuchang ag-polymetallic deposit lead isotope lead source southeast Yunnan Province
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Genesis of the Weiquan Ag-Polymetallic Deposit in East Tianshan, China: Evidence from Zircon U-Pb Geochronology and C-H-O-S-Pb Isotope Systematics 被引量:3
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作者 DING Hui GE Wensheng +4 位作者 DONG Lianhui ZHANG Liangliang CHEN Xiaodong LIU Yan NIE Junjie 《Acta Geologica Sinica(English Edition)》 CAS CSCD 2018年第3期1100-1122,共23页
The Weiquan Ag-polymetallic deposit is located on the southern margin of the Central Asian Orogenic Belt and in the western segment of the Aqishan-Yamansu arc belt in East Tianshan,northwestern China. Its orebodies, c... The Weiquan Ag-polymetallic deposit is located on the southern margin of the Central Asian Orogenic Belt and in the western segment of the Aqishan-Yamansu arc belt in East Tianshan,northwestern China. Its orebodies, controlled by faults, occur in the lower Carboniferous volcanosedimentary rocks of the Yamansu Formation as irregular veins and lenses. Four stages of mineralization have been recognized on the basis of mineral assemblages, ore fabrics, and crosscutting relationships among the ore veins. Stage I is the skarn stage(garnet + pyroxene), Stage Ⅱ is the retrograde alteration stage(epidote + chlorite + magnetite ± hematite 士 actinolite ± quartz),Stage Ⅲ is the sulfide stage(Ag and Bi minerals + pyrite + chalcopyrite + galena + sphalerite + quartz ± calcite ± tetrahedrite),and Stage IV is the carbonate stage(quartz + calcite ± pyrite). Skarnization,silicification, carbonatization,epidotization,chloritization, sericitization, and actinolitization are the principal types of hydrothermal alteration. LAICP-MS U-Pb dating yielded ages of 326.5±4.5 and 298.5±1.5 Ma for zircons from the tuff and diorite porphyry, respectively. Given that the tuff is wall rock and that the orebodies are cut by a late diorite porphyry dike, the ages of the tuff and the diorite porphyry provide lower and upper time limits on the age of ore formation. The δ13C values of the calcite samples range from-2.5‰ to 2.3‰, the δ18OH2 Oand δDVSMOWvalues of the sulfide stage(Stage Ⅲ) vary from 1.1‰ to 5.2‰ and-111.7‰ to-66.1‰, respectively,and the δ13C, δ18OH2 Oand δDV-SMOWvalues of calcite in one Stage IV sample are 1.5‰,-0.3‰, and-115.6‰, respectively. Carbon, hydrogen, and oxygen isotopic compositions indicate that the ore-forming fluids evolved gradually from magmatic to meteoric sources. The δ34SV-CDTvalues of the sulfides have a large range from-6.9‰ to 1.4‰, with an average of-2.2‰, indicating a magmatic source, possibly with sedimentary contributions. The206Pb/204Pb,207Pb/204Pb, and208Pb/204Pb ratios of the sulfides are 17.9848-18.2785,15.5188-15.6536, and 37.8125-38.4650, respectively, and one whole-rock sample at Weiquan yields206Pb/204Pb,207Pb/204Pb, and208Pb/204Pb ratios of 18.2060, 15.5674, and 38.0511,respectively. Lead isotopic systems suggest that the ore-forming materials of the Weiquan deposit were derived from a mixed source involving mantle and crustal components. Based on geological features, zircon U-Pb dating, and C-H-OS-Pb isotopic data, it can be concluded that the Weiquan polymetallic deposit is a skarn type that formed in a tectonic setting spanning a period from subduction to post-collision. The ore materials were sourced from magmatic ore-forming fluids that mixed with components derived from host rocks during their ascent, and a gradual mixing with meteoric water took place in the later stages. 展开更多
关键词 zircon U-Pb geochronology C-H-O-S-Pb isotopes skarn-type ag-polymetallic deposit Weiquan East Tianshan China
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内蒙古花敖包特银多金属矿床成矿作用:来自锆石和锡石U-Pb年龄的约束
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作者 陈公正 武广 +4 位作者 李振祥 杨飞 李士辉 易慧能 李英雷 《岩石学报》 SCIE EI CAS CSCD 北大核心 2023年第6期1771-1790,共20页
花敖包特超大型银多金属矿床位于大兴安岭南段,矿体主要呈脉状赋存于二叠系寿山沟组的断裂中,部分矿体呈囊状产于寿山沟组与华力西期蛇绿岩的接触带中。矿体主要包括银铅锌锑矿体、锡铜矿体、铜铅锌矿体、锡矿体和银矿体。花敖包特矿床... 花敖包特超大型银多金属矿床位于大兴安岭南段,矿体主要呈脉状赋存于二叠系寿山沟组的断裂中,部分矿体呈囊状产于寿山沟组与华力西期蛇绿岩的接触带中。矿体主要包括银铅锌锑矿体、锡铜矿体、铜铅锌矿体、锡矿体和银矿体。花敖包特矿床可划分为4个成矿阶段,分别为石英-锡石-毒砂-黄铁矿阶段(Ⅰ阶段)、石英-绢云母-锡石-黄铜矿-毒砂-磁黄铁矿-闪锌矿-黝铜矿阶段(Ⅱ阶段)、石英-绢云母-萤石-方解石-闪锌矿-方铅矿-黄铁矿-辉锑矿-含银硫盐矿物阶段(Ⅲ阶段)和石英-方解石-黄铁矿-辉银矿-深红银矿阶段(Ⅳ阶段)。对花敖包特矿区2件次流纹岩样品开展了LA-ICP-MS锆石U-Pb定年,分别获得135.4±0.8Ma和134.8±0.8Ma的年龄。对成矿Ⅰ阶段锡矿石和Ⅱ阶段锡铜矿石进行了LA-ICP-MS锡石U-Pb定年,分别获得136.3±2.0Ma和134.3±1.7Ma的加权平均年龄。定年结果表明,花敖包特矿床次流纹岩、锡矿体和锡铜矿体均形成于早白垩世。尽管二者形成时间相近,但脉体穿切关系及矿化分带特征均表明次流纹岩并非成矿物质和成矿流体的主要来源。本文认为,花敖包特矿床真正的成矿地质体为隐伏于矿区深部的次火山岩钟,其矿床成因类型为与次火山岩相关的热液矿床。 展开更多
关键词 锆石U-Pb定年 锡石U-Pb定年 花敖包特银多金属矿床 大兴安岭南段
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内蒙古花敖包特铅锌银多金属矿床成因探讨:流体包裹体及硫、铅、氢、氧同位素证据 被引量:36
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作者 陈永清 周顶 郭令芬 《吉林大学学报(地球科学版)》 EI CAS CSCD 北大核心 2014年第5期1478-1491,共14页
内蒙古花敖包特铅锌银多金属热液型脉状矿床位于大兴安岭成矿带中南段。结合其蚀变矿化特征,依据矿石矿物与脉石矿物的生成顺序,矿化阶段可划分为自形石英-黄铁矿阶段、闪锌矿-方铅矿阶段及他形黄铁矿-毒砂阶段。流体包裹体研究表明:该... 内蒙古花敖包特铅锌银多金属热液型脉状矿床位于大兴安岭成矿带中南段。结合其蚀变矿化特征,依据矿石矿物与脉石矿物的生成顺序,矿化阶段可划分为自形石英-黄铁矿阶段、闪锌矿-方铅矿阶段及他形黄铁矿-毒砂阶段。流体包裹体研究表明:该矿床的成矿流体具有中—低温(146.7~274.3℃)、低盐度(w(NaCl)为0.54%~8.52%)及低密度(0.790~0.943g/cm3)的特点;流体成矿压力及成矿深度估算结果表明,该矿床形成于中深—浅成的环境。矿石中金属硫化物的硫、铅同位素分析结果显示,该矿床的成矿物质来源具有壳幔混合来源的特征。成矿流体氢、氧同位素组成:δ18 OSMOW为-11.78‰^-6.01‰,δD为-110.90‰^-70.30‰,表明该矿床的成矿流体主要由岩浆水与下渗的大气降水混合组成。结合区域地质特征及构造演化,认为该矿床是在大兴安岭南段中生代伸展造山构造背景下形成的受深断裂、早白垩世构造岩浆活动及寿山沟组多重地质因素控制的中—低温热液型脉状铅锌银多金属矿床。 展开更多
关键词 花敖包特 多金属矿床 流体包裹体 硫、铅、氢、氧同位素 成因探讨
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内蒙花敖包特Pb-Zn-Ag多金属矿床原生晕分带特征与深部矿体预测模型 被引量:48
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作者 陈永清 韩学林 +3 位作者 赵红娟 程志中 唐宇 陈武 《地球科学(中国地质大学学报)》 EI CAS CSCD 北大核心 2011年第2期236-246,共11页
花敖包特Pb-Zn-Ag多金属矿床构造上位于滨西太平洋成矿域内蒙古大兴安岭成矿带南段,是一个近年来发现的与白垩纪早期构造岩浆活动有关的隐伏热液脉状矿床.研究表明:(1)矿体原生晕发育,且分带明显.据其异常强度建立的元素横向分带顺序(... 花敖包特Pb-Zn-Ag多金属矿床构造上位于滨西太平洋成矿域内蒙古大兴安岭成矿带南段,是一个近年来发现的与白垩纪早期构造岩浆活动有关的隐伏热液脉状矿床.研究表明:(1)矿体原生晕发育,且分带明显.据其异常强度建立的元素横向分带顺序(从强到弱)为Cd→Pb→Zn→Ag→Sb→In→Hg→As→Cu→Sn→W→Mo→Bi,排在序列前面的Cd、Pb、Zn、Sb、Ag等5种元素,可作为远矿指示元素;排在序列后端的As、Bi、Mo、W等4种元素,可作为近矿指示元素.(2)根据Grigorian原生晕分带计算方法,获得矿体原生晕轴向分带序列(自矿体头部至尾部)为Sb→Pb→Cd→Ag→Zn→Hg→Cu→In→As→Bi→Sn→Mo→W,与Grigorian建立热液矿床标准分带基本一致.(3)构建深部矿体找矿模型,其预测评价指标(Sb×Pb×Cd×Ag)D/(As×Sn×Mo×W)D在矿体头部为1.30、矿体中上部为0.35、矿体中下部为0.056、矿体尾部为0.005,这表明该指标随深度的增加有规律地降低,是预测深部矿体资源潜力的有效指标. 展开更多
关键词 花敖包特铅锌银矿床 原生晕分带 深部矿体预测模型 成矿带 中国东北
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