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Melt extraction and mineralization: A case study from the Shuangjianzishan supergiant Ag-Pb-Zn deposit(208 Mt), Inner Mongolia, NE China 被引量:1
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作者 Meng Dai Guang-sheng Yan +3 位作者 Yong-sheng Li Wen-bin Jia Fan-yu Qi Xing Ju 《China Geology》 CAS CSCD 2023年第4期623-645,I0001-I0003,共26页
The supergiant Shuangjianzishan(SJZ) Ag-Pb-Zn deposit is in the southern segment of the Great Hinggan Range(SGHR), northeast China. Previous studies suggest the ore-forming material and fluid originated from the magma... The supergiant Shuangjianzishan(SJZ) Ag-Pb-Zn deposit is in the southern segment of the Great Hinggan Range(SGHR), northeast China. Previous studies suggest the ore-forming material and fluid originated from the magmatic system, and the mineralization age was consistent with the diagenetic age. However,the relationship between granitic magmatism and mineralization is still unclear in the SJZ. In this study, CH-O-He-Ar and in-situ S-Pb isotope analyses were conducted to determine the sources of ore-forming fluids and metals, which were combined with geochemistry data of SJZ granitoids from previous studies to constrain the relationship between the magmatism and the mineralization. The C-H-O-He-Ar-S-Pb isotopic compositions suggested the SJZ ore-forming material and fluids were derived from a magmatic source, which has mixed a small amount of mantle-derived materials. In addition, the disseminated sulfide from the syenogranite has comparable S-Pb isotopic composition with the sulfide minerals from ore veins,suggesting that the generation of the SJZ ore-forming fluids has a close relationship with the syenogranite magmatism. Combining with the geochemical characters of the syenogranite, the authors proposed that the mantle-derived fingerprint of the SJZ ore-forming fluid might be caused by the parent magma of the syenogranite, which was derived from partial melting of the juvenile lower crust, and underwent the residual melts segregated from a crystal mush in the shallow magma reservoir. The extraction of the syenogranite parent magma further concentrated the fertilized fluids, which was crucial to mineralization of the SJZ Ag-Pb-Zn deposit. 展开更多
关键词 ag-pb-zn deposit D-O-C-He-Ar isotope In-situ S and Pb isotope analysis Melt extraction Ore-forming fluid Syenogranite Metallogenic belt Mineral exploration engineering Southern Great Hinggan Range
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Metallogenic model of the Shuangjianzishan Ag-Pb-Zn district,Northeast China:Revealed from integrated geophysical investigation
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作者 Yihao Wu Jiangtao Han +9 位作者 Yunhe Liu Guoqing Ma Fuxing Han Yanchen Yang Lijia Liu Lei Guo Ye Guan Yinghui Zhang Zhenyu Guo Qian Mu 《Geoscience Frontiers》 SCIE CAS CSCD 2022年第2期110-124,共15页
The Shuangjianzishan deposit in Inner Mongolia is a typical Ag-Pb-Zn deposit of the southern Great Xing’an Range.Proven reserves of Ag,Pb,and Zn in this deposit have reached the scale of super-large deposits,with fav... The Shuangjianzishan deposit in Inner Mongolia is a typical Ag-Pb-Zn deposit of the southern Great Xing’an Range.Proven reserves of Ag,Pb,and Zn in this deposit have reached the scale of super-large deposits,with favorable metallogenic conditions,strong prospecting signs,and high metallogenic potential.This paper reports a study involving integrated geophysical methods,including controlled-source audio-frequency magnetotelluric,gravity,magnetic,and shallow-seismic-reflection methods,to determine the spatial distribution of ore-controlling structures and subsurface intrusive rock for a depth range of<2000 m in the Shuangjianzishan ore district.The objective of this study is to construct a metallogenic model of the ore district and provide a scientific basis for the exploration of similar deposits in the deep and surrounding regions.We used three-dimensional inversion for controlled-source audio-frequency magnetotelluric data based on the limited memory quasi-Newton algorithm,and three-dimensional physical-property inversion for the gravity and magnetic data to obtain information about the subsurface distribution of ore-controlling structures and intrusive rocks.Under seismic reflection results,regional geology,petrophysical properties,and borehole information,the geophysical investigation shows that the Dashizhai group,which contains the main ore-bearing strata in the ore district,is distributed within a depth range of<1239 m,and is thick in the Xinglongshan ore block and the eastern part of the Shuangjianzishan ore block.The mineralization is spatially associated with a fault system characterized by NE-,NW-,and N-trending faults.The magnetic and electrical models identify large,deep bodies of intrusive rock that are inferred to have been involved in mineralization,with local shallow emplacement of some intrusions.Combining the subsurface spatial distributions of ore-bearing strata,ore-controlling faults,and intrusive rock,we propose two different metallogenic models for the Shuangjianzishan ore district,which provide a scientific basis for further prospecting in the deep regions of the ore district and surrounding areas. 展开更多
关键词 ag-pb-zn deposit Integrated geophysical investigation 3D geophysical inversion Metallogenic model Shuangjianzishan in Inner Mongolia
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西藏夏垅铅锌银矿床绢云母^40Ar^39Ar年龄及其地质意义 被引量:7
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作者 赵晓燕 杨竹森 +3 位作者 刘英超 纪现华 费凡 徐玉涛 《矿床地质》 CAS CSCD 北大核心 2013年第5期963-971,共9页
西藏冈底斯成矿带位于班公湖-怒江缝合带与雅鲁藏布江缝合带之间,从北向南依次可划分为3个成矿亚带:勒青拉-洞中松多铅锌银多金属成矿亚带,驱龙-甲马-邦铺斑岩铜钼成矿亚带,克鲁-冲木达斑岩-矽卡岩铜钼金成矿亚带。驱龙-甲马-邦铺成矿... 西藏冈底斯成矿带位于班公湖-怒江缝合带与雅鲁藏布江缝合带之间,从北向南依次可划分为3个成矿亚带:勒青拉-洞中松多铅锌银多金属成矿亚带,驱龙-甲马-邦铺斑岩铜钼成矿亚带,克鲁-冲木达斑岩-矽卡岩铜钼金成矿亚带。驱龙-甲马-邦铺成矿亚带内矿床的类型以斑岩型为主,部分伴生有矽卡岩型及热液脉型矿床。夏垅矿床位于驱龙-甲马-邦铺斑岩铜钼成矿亚带的西段,产于黑云母二长花岗岩基中,属于隐爆角砾岩型铅锌银多金属矿床。对夏垅矿床内与石英、方铅矿、闪锌矿密切共生的绢云母进行了40Ar-39Ar定年,确定其坪年龄及反等时线年龄分别为(23.56±0.22)Ma和(23.9±1.6)Ma。该矿床作为隐爆角砾岩型铅锌银多金属矿床的发现以及冈底斯火山岩自西向东逐渐变年轻的时空迁移规律说明在冈底斯成矿带的西侧存在着岩浆活动。夏垅矿床成矿年龄的精确测定把驱龙-甲马-邦铺斑岩铜钼成矿亚带向西延伸了120 km,增大了该成矿亚带的找矿潜力,为在该成矿亚带内寻找此类铅锌银多金属矿床提供了理论及实际依据。 展开更多
关键词 地球化学 40Ar/39Ar定年 绢云母 夏垅铅锌银矿床 驱龙-甲马-邦铺斑岩铜钼成矿亚带 西藏
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西藏夏垅隐爆角砾岩型铅锌银矿床成矿流体及成矿物质来源 被引量:3
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作者 徐玉涛 杨竹森 +3 位作者 刘英超 龚雪婧 赵晓燕 费凡 《地质学报》 EI CAS CSCD 北大核心 2015年第3期618-631,共14页
夏垅铅锌银矿床位于冈底斯斑岩铜钼成矿带的西端,产于花岗岩基中,属于隐爆角砾岩型矿床。本文对其流体包裹体及H-O-S-Pb同位素组成进行了分析。成矿流体物理性质具有从中高温(240~340℃)、低盐度(2.2%~3.8%NaCl eqv)向低温(160~180℃)... 夏垅铅锌银矿床位于冈底斯斑岩铜钼成矿带的西端,产于花岗岩基中,属于隐爆角砾岩型矿床。本文对其流体包裹体及H-O-S-Pb同位素组成进行了分析。成矿流体物理性质具有从中高温(240~340℃)、低盐度(2.2%~3.8%NaCl eqv)向低温(160~180℃)、低盐度(0.8%~1.7%NaCl eqv)演化的特征。矿石中石英的δD值为-156‰^-145‰,δ18 O值为-0.4‰~7.1‰,按流体包裹体均一温度换算的δ18 OH2O值为-16.7‰^-3.0‰,表明成矿流体来源于岩浆水和大气降水的混合。金属硫化物的δ34 S值变化范围较小,在-3.0‰^+5.9‰之间,按照同位素平衡系数外推法获得总硫同位素组成δ34SΣ为+9.80‰和+13.13‰,表明硫主要来源于岩浆岩,并反映成矿岩浆演化过程中可能经历了H2S去气作用。方铅矿的206 Pb/204 Pb=18.627~18.758、207 Pb/204Pb=15.598~15.682和208 Pb/204 Pb=38.637~39.298,黄铁矿的206 Pb/204 Pb=18.639~18.678、207 Pb/204 Pb=15.587~15.691和208Pb/204Pb=38.649~38.703,显示部分矿石铅富集放射性成因铅,反映铅的多来源性,即来源于上地幔铅与上地壳铅的混合。反映与夏垅铅锌银矿床成矿相关的岩浆来自于下地壳的部分熔融,并有地幔物质的补给,在岩浆上侵就位过程中又与上地壳中的岩浆房发生了岩浆混合。这也表明该地区可能存在有古老地壳,显示了区域上的独特性,为南拉萨地体区域找矿提供特有的指示意义。 展开更多
关键词 成矿流体 成矿物质来源 同位素 夏垅铅锌银矿床 西藏冈底斯带
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四川巴塘县夏隆银铅锌矿床特征与找矿前景 被引量:10
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作者 林青 《四川地质学报》 2010年第4期447-449,461,共4页
夏隆银铅锌矿床产在燕山晚期绒依措黑云母二长花岗岩体北西侧,矿体赋存于上三叠统图姆沟组变质砂岩、板岩中的北北西向构造破碎带中,为富银铅锌矿床,已圈定矿体6个,其中KT1、KT2是主矿体。该矿床位于夏塞矿床南侧,成矿条件、控矿因素、... 夏隆银铅锌矿床产在燕山晚期绒依措黑云母二长花岗岩体北西侧,矿体赋存于上三叠统图姆沟组变质砂岩、板岩中的北北西向构造破碎带中,为富银铅锌矿床,已圈定矿体6个,其中KT1、KT2是主矿体。该矿床位于夏塞矿床南侧,成矿条件、控矿因素、成因类型及矿体特征均与夏塞相似,工作程度低,矿化线索多,找矿潜力大。 展开更多
关键词 夏隆银铅锌矿床 构造破碎带 找矿前景 四川巴塘
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浙江永嘉下龙银金矿蚀变分带及矿床成因 被引量:1
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作者 于春 杨仲可 《地质学刊》 CAS 2020年第3期271-277,共7页
浙江永嘉下龙矿区属火山岩型金属矿床。分析下龙矿区银金地质特征和蚀变分带,发现矿区蚀变垂直分带有一定的规律性,自上而下分为绿泥石蚀变带、石英-绢云母-黄铁矿蚀变带、黄铁矿-绿泥石-碳酸盐蚀变带3个带,其中石英-绢云母-黄铁矿蚀变... 浙江永嘉下龙矿区属火山岩型金属矿床。分析下龙矿区银金地质特征和蚀变分带,发现矿区蚀变垂直分带有一定的规律性,自上而下分为绿泥石蚀变带、石英-绢云母-黄铁矿蚀变带、黄铁矿-绿泥石-碳酸盐蚀变带3个带,其中石英-绢云母-黄铁矿蚀变带蚀变在空间分布上与金银矿体分布一致,成因上与成矿密切相关,是该区良好的直接找矿标志。成矿作用与金银丰度较高的西山头组控矿层位、构造、潜火山岩侵入密切相关,矿床成因为中低温火山热液蚀变型矿床。研究其地质特征和成矿规律,可为该地区寻找同类型矿床提供借鉴。 展开更多
关键词 下龙银金矿 地质特征 蚀变分带 成因 浙江永嘉
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Factors Controlling Deposition of Metallic Minerals in the Meng’entaolegai Ag-Pb-Zn Deposit, Inner Mongolia, China: Evidence from Fluid Inclusions, Isotope Systematics, and Thermodynamic Model 被引量:2
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作者 He Yang Wanli Ma +2 位作者 Rui Wang Xueli Ma Keyong Wang 《Journal of Earth Science》 SCIE CAS CSCD 2020年第2期271-286,共16页
The Meng’entaolegai Ag-Pb-Zn vein-type deposit in Inner Mongolia,NE China is hosted in biotite/muscovite granite.This deposit includes the western(Zn-rich,deepest),middle(Zn-Pb rich)and eastern(Pb-Ag-rich,shallowest)... The Meng’entaolegai Ag-Pb-Zn vein-type deposit in Inner Mongolia,NE China is hosted in biotite/muscovite granite.This deposit includes the western(Zn-rich,deepest),middle(Zn-Pb rich)and eastern(Pb-Ag-rich,shallowest)ore-blocks.To better understand the metallogenic processes in ore district,we have undertaken a series of studies including fluid inclusion microthermometry,H-O-S-Pb isotope compositions and thermodynamic modeling.Based on fluid inclusion petrography,microthermometry results and HO isotope compositions,the ore-forming H2O-NaCl fluid inclusions are characterized by medium temperature and medium salinity.And two kinds of fluid processes(boiling in western and middle ore-block and fluid mixing in the eastern ore-block)were identified to explain the ore fluid evolution.More importantly,log ?O2-pH diagrams of δ^34S contours with the stability fields of Fe-and Cu-,Zn-,Pb-,and Ag-bearing minerals were constructed to restore the physicochemical conditions of ore-forming fluid in the western(270℃ and 80 bars),middle(250℃ and 70 bars),and eastern(230℃ and 50 bars)ore-blocks.As a result,the ore-forming conditions in the western and middle ore-block were similar.In the eastern ore-block,the fluids may have changed from acidic,S-poor and δ^34S(ΣS)≈2.8 to neutral,S-richer and δ^34S(ΣS)≈0.5,which imply that neutral S-rich meteoric water was mixed with the magmatic fluid.Meanwhile,the activity of Ag+was estimated to be about 10 ppm–9 ppm in the middle ore-block,but in the eastern ore-block it was about^10 ppm–12 ppm.We proposed that the key for Ag ore deposition was likely to be neutralization led by fluid mixing. 展开更多
关键词 fluid INCLUSIONS isotope SYSTEMATICS thermodynamic model ag-pb-zn deposit Meng'entalegai NE China
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Geology,Mineralogy,and Isotopic Characteristics of the Zhonghe Ag-Pb-Zn Deposit,Western Henan Province,Central China 被引量:1
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作者 Jiannan Xu Changqian Ma +4 位作者 Shuo Yin Yunzhen Chang Huimin Jia Zhongjie Wang Liangliang Shi 《Journal of Earth Science》 SCIE CAS CSCD 2022年第1期177-192,共16页
Located in Luoning County,western Henan Province,Central China,the Zhonghe Ag-Pb-Zn ore field,is a newly discovered deposit in the Xiaoshan District.Ore bodies controlled by NNW Faults occur as veins within the Paleop... Located in Luoning County,western Henan Province,Central China,the Zhonghe Ag-Pb-Zn ore field,is a newly discovered deposit in the Xiaoshan District.Ore bodies controlled by NNW Faults occur as veins within the Paleoproterozoic Xiong’er Group or the Early Cretaceous porphyritic granite.Given that the Zhonghe deposit has been covered by thick Quaternary sediments,the paragenetic mineral assemblage was determined mainly by microscopic observations,including the quartzsiderite-pyrite alteration (StageⅠ),polymetallic sulfide precipitation (StageⅡ),silver mineralization(Stage Ⅲ),and quartz-carbonate stage (StageⅣ).The host minerals for silver are diverse,such as freibergite,pyrargyrite,polybasite,argyrodite,canfieldite,argentite,and native silver,whereas those for Pb and Zn are galena and sphalerite,respectively.In order to constrain the ore-forming components of the Zhonghe deposit,a combined in-situ analysis was conducted on represented sulfides from StageⅡand Stage Ⅲ.In-situ δ^(34)S values of the analyzed sulfides,including the pyrite,chalcopyrite,sphalerite,and galena,display a relatively narrow range (0.90‰-5.0‰),which is close to magmatic sulfur source.The ^(206)Pb/^(204)Pb and^(207)Pb/^(204)Pb ratios show a narrow range (17.140-17.360 and 15.385-15.490),whereas the ^(208)Pb/^(204)Pb ratios exhibit a broad variation (36.601-37.943),indicating a contamination of the Xiong’er Group.Synthesis of geochronological and geochemical data from the Xiaoshan District,we contend that the ore-forming materials of the Zhonghe Ag-Pb-Zn deposit are originated from the lower crust,which has presumably been influenced by the large-scale lithospheric delamination of the eastern North China Craton during the Early Cretaceous.In consideration of the geological setting,mineralogy,and geochemical compositions,we suggest that the Zhonghe Ag-Pb-Zn deposit is characterized as intermediate sulfidation type epithermal deposit,and may be a potential exploration target for porphyry Mo-Cu deposits. 展开更多
关键词 S-Pb isotopes ag-pb-zn deposit metal source ISOTOPES ore deposit geology
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永嘉下龙银金矿床地质特征及找矿方法初步总结 被引量:2
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作者 周洲强 罗炎水 《浙江国土资源》 1997年第2期22-30,共9页
本文在野外地质工作基础上,总结了永嘉下龙银金矿床的成矿地质背景,矿床地质特征和找矿方法等。进一步确认该矿体受上侏罗统西山头组酸性火山岩层所控制,矿石自然类型为含金银细脉浸染状黄铁矿化蚀变凝灰岩。属火山热液蚀变型。
关键词 银金矿床 地质特征 火山热液蚀变型 找矿方法 永嘉下龙
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Fluid-rock interactions leading to the formation of the epithermal Ag-Pb-Zn veins:A perspective of thermodynamic modeling 被引量:2
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作者 Degao Zhai 《Fundamental Research》 CAS CSCD 2023年第4期570-578,共9页
Although vein-type silver-lead-zinc ore deposits have been extensively studied,the factors controlling their formation are still poorly understood and their genesis is a matter of ongoing debate.In this contribution,I... Although vein-type silver-lead-zinc ore deposits have been extensively studied,the factors controlling their formation are still poorly understood and their genesis is a matter of ongoing debate.In this contribution,I present new mineralogical data and the results of thermodynamic modeling that constrain the conditions of metal transport and deposition for the Aerhada epithermal Pb-Zn-Ag deposit(reserves of>1,000 t Ag@58 g/t and 1.0 Mt Pb+Zn@5.2%)in NE China.Three primary paragenetic stages have been identified,the second of which(Stage II)is the main base metal and silver mineralization.Freibergite,argentite,pyrargyrite,and canfieldite are the main Ag-bearing minerals and are spatially associated with an alteration assemblage of quartz-muscovite±chlorite±epidote.Dissolution textures and evidence of compositional heterogeneity for freibergite suggest that its decomposition may have redistributed the Ag and contributed in part to the high Ag grade ores in the deposit.Thermodynamic calculations indicate that there was extensive silver ore deposition from a strongly reducing(e.g.,∆log fO_(2)(HM)of<-8.6 to-2.4)and nearly neutral to weakly alkaline(e.g.,pH of 5.5 to 6.8)aqueous fluid at temperatures between 220℃ and 170℃.These calculations reveal that a reduction in fO_(2)and decreasing temperature,both as a result of fluid-rock interactions,were the key factors leading to silver and base metal mineral deposition.Further path modeling showed that the sole evolution of a magmatic-derived fluid is capable of forming the large Ag-Pb-Zn veins via fluid-rock interactions,which is contrary to the conclusions of some other studies that the mixture of an externally derived fluid is required to explain their formation.The genetic model for Ag-Pb-Zn ore formation developed in this study is applicable to other polymetallic vein-type deposits in comparable geological settings elsewhere. 展开更多
关键词 Epithermal deposit ag-pb-zn veins Metal transport Thermodynamic modeling NE China
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