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Geochronology,Fluid Inclusions and Isotopic Characteristics of the Dongjun Pb-Zn-Ag Deposit,Inner Mongolia,NE China 被引量:4
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作者 XIE Wei WEN Shouqin +1 位作者 ZHANG Guangliang TANG Tieqiao 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2021年第5期1611-1633,共23页
The Dongjun Pb-Zn-Ag deposit in the northern part of the Great Xing’an Range(NE China)consists of quartzsulfide vein-type and breccia-type mineralization,related to granite porphyry.Hydrothermal alteration is well-de... The Dongjun Pb-Zn-Ag deposit in the northern part of the Great Xing’an Range(NE China)consists of quartzsulfide vein-type and breccia-type mineralization,related to granite porphyry.Hydrothermal alteration is well-developed and includes potassic-silicic-sericitic alteration,phyllic alteration and propylitic alteration.Three stages of mineralization are recognized on the basis of field evidence and petrographic observation,demarcated by assemblages of quartz-pyritearsenopyrite(early stage),quartz-polymetallic sulfide(intermediate stage)and quartz-carbonate-pyrite(late stage).Zircon LA-ICP-MS U-Pb dating indicates that the granite porphyry was emplaced at 146.7±1.2 Ma(Late Jurassic).Microthermometry and laser Raman spectroscopy shows that ore minerals were deposited in conditions of intermediate temperatures(175-359℃),low salinity(0.5-9.3 wt% Na Cl eqv.)and low density(0.60-0.91 g/cm^(3)).Ore-forming fluids were derived largely from magmatic hydrothermal processes,with late-stage addition of meteoric water,belonging to a H_(2)O-NaCl-CO_(2)±CH_(4) system.The δ^(34)SV-CDT values range from 0.75‰ to 4.70‰.The ^(206)Pb/^(204)Pb,^(207)Pb/^(204)Pb,and ^(208)Pb/^(204)Pb values of the ore minerals are in the ranges of 18.240-18.371,15.542-15.570,and 38.100-38.178,respectively.Data for the S and Pb isotopic systems indicate that the ore-forming metals and sulfur were derived from Mesozoic magma.Based on the geological characteristics and geochemical signatures documented in this study,we conclude that the Dongjun deposit is a mesothermal magmatic hydrothermal vein-type Pb-Zn-Ag deposit controlled by fractures and related to granite porphyry,in response to Late Jurassic tectonic-magmatic-hydrothermal activity.We further conclude that fluid immiscibility,fluid mixing and fluid-rock interactions were the dominant mechanisms for deposition of the ore-forming materials. 展开更多
关键词 zircon U-Pb dating fluid inclusions H-O-S-Pb isotopes mesothermal pb-zn-ag deposit Dongjun northern Great Xing’an Range
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Pb-Zn-Ag-bearing M anganoan Skarns of China 被引量:3
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作者 ZHAOYiming LIDaxin 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2004年第2期524-528,共5页
Manganoan skarns consist of special Mn (Ca, Mg, Fe, Al) silicate metasomatic minerals and are usually associated with Pb-Zn(Ag) mineralization. They occur chiefly along the lithologic contacts or faults and fractures ... Manganoan skarns consist of special Mn (Ca, Mg, Fe, Al) silicate metasomatic minerals and are usually associated with Pb-Zn(Ag) mineralization. They occur chiefly along the lithologic contacts or faults and fractures of carbonate wall rocks distal from the intrusive contact zone, and are combined with Fe, Cu, W, Sn and Cu-bearing calcic or magnesian skarns occurring in the contact zones to constitute certain metasomatic zoning. Manganoan skarns are formed later than calcic or magnesian skarns. Their rock-forming temperatures are lower than those of calcic or magnesian skarns. The mineral assemblages of manganoan skarns occurring in different carbonate rocks (limestone or dolomite) are notably different. 展开更多
关键词 manganoan skarn calcic skarn magnesian skarn continental-margin orogenic belt exocontact carbonate rocks pb-zn-ag skarn deposit
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内蒙古额尔古纳地区比利亚谷大型铅锌银矿床稀土微量元素地球化学特征及成矿意义 被引量:11
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作者 马玉波 邢树文 +5 位作者 张彤 邵积东 肖克炎 王海坡 关继东 范建福 《地质学报》 EI CAS CSCD 北大核心 2015年第10期1841-1852,共12页
比利亚谷铅锌银矿位于海拉尔-根河中生代火山盆地北西缘。该矿床赋存于上侏罗统满克头鄂博组酸性火山岩中,受NW向断裂构造控制,主矿体呈脉状产出。火山岩围岩及主要矿石矿物的微量稀土特征相似:具有富集Rb、Th等大离子亲石元素,而亏损Sr... 比利亚谷铅锌银矿位于海拉尔-根河中生代火山盆地北西缘。该矿床赋存于上侏罗统满克头鄂博组酸性火山岩中,受NW向断裂构造控制,主矿体呈脉状产出。火山岩围岩及主要矿石矿物的微量稀土特征相似:具有富集Rb、Th等大离子亲石元素,而亏损Sr、Nb、Ta等高场强元素的特点,表明其均产于板内构造环境。不同之处为:1矿石矿物的稀土微量元素总量明显小于火山岩围岩;2火山岩围岩呈现出明显的负Eu异常,而矿石矿物则具有强弱不等的正Eu异常。综合分析认为比利亚谷铅锌银矿为火山-次火山热液型矿床,其主要成矿作用与晚侏罗世-早白垩世(140Ma左右)火山活动有着密切联系,区域地质背景上对应于构造体制大转折的晚期,但是成矿期后矿体受到了120Ma大规模岩浆活动的影响,本期岩浆活动是区域岩石圈快速减薄引起,产生了一期深变质作用以及壳幔相互作用有关的深部流体活动,受其强烈改造,引起了矿石矿物微量稀土元素含量的改变。 展开更多
关键词 火山-次火山热液型矿床 稀土-微量元素 地球化学特征 成矿意义 比利亚谷铅锌银矿床
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内蒙古比利亚谷铅锌银矿床地质地球化学特征及成因 被引量:22
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作者 吴涛涛 赵东芳 +2 位作者 邵军 鲍庆中 王宏博 《中国地质》 CAS CSCD 北大核心 2014年第4期1242-1252,共11页
比利亚谷铅锌银矿位于海拉尔—根河中生代火山盆地北西缘地区。该矿床赋存于上侏罗统满克头鄂博组酸性火山岩中,受北西向断裂构造控制,主矿体呈脉状产出。赋矿围岩流纹质火山角砾熔岩LA-ICP-MS锆石U-Pb测年结果表明,其成岩时代为(159.2&... 比利亚谷铅锌银矿位于海拉尔—根河中生代火山盆地北西缘地区。该矿床赋存于上侏罗统满克头鄂博组酸性火山岩中,受北西向断裂构造控制,主矿体呈脉状产出。赋矿围岩流纹质火山角砾熔岩LA-ICP-MS锆石U-Pb测年结果表明,其成岩时代为(159.2±1.8)Ma,并依据赋矿围岩与成矿的关系推测成矿时代为晚侏罗世。矿床赋矿围岩流纹质火山角砾熔岩和流纹岩的主量元素具有富硅(68.31%~77.18%)、富钾(3.39%~4.28%)、低钠(0.14%~0.18%)、高铝(11.74%~14.93%)的特征,属高钾钙碱性系列;岩石REE总量较低(93.65×10^(-6)98.94×10^(-6)),以轻稀土相对富集、轻稀土和重稀土分异明显、弱的Ce负异常和Eu负异常为特征;结合岩石具有亏损Sr、高度富集轻稀土等特征认为火山岩产于板内,与其有关的岩浆可能来源于上地幔,并混染了壳源物质。综合本次研究和区域构造演化特征,初步认为矿床形成于鄂霍次克板块剪刀式闭合时期的拉张伸展环境。 展开更多
关键词 铅锌银矿床 地球化学 LA-ICP-MS锆石U-PB测年 矿床成因 比利亚谷
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大兴安岭北部比利亚谷铅锌矿黄铁矿Re-Os同位素年龄及He-Ar同位素地球化学特征 被引量:2
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作者 马玉波 张勇 +6 位作者 李立兴 邢树文 张增杰 张彤 肖克炎 王海坡 范建福 《地质学报》 EI CAS CSCD 北大核心 2022年第4期1265-1278,共14页
比利亚谷铅锌矿位于海拉尔-根河中生代火山盆地北西缘的得尔布干成矿带。该矿床赋存于上侏罗统满克头鄂博组酸性火山岩中,受NW向断裂构造控制,主矿体呈脉状产出。由于缺少适合传统放射性同位素定年的矿物,其成矿时代未得到很好的限定,... 比利亚谷铅锌矿位于海拉尔-根河中生代火山盆地北西缘的得尔布干成矿带。该矿床赋存于上侏罗统满克头鄂博组酸性火山岩中,受NW向断裂构造控制,主矿体呈脉状产出。由于缺少适合传统放射性同位素定年的矿物,其成矿时代未得到很好的限定,制约了对矿床成因的认识。本文采用矿床中与矿石矿物密切共生的黄铁矿Re-Os同位素定年技术对比利亚谷铅锌矿的成矿时代进行研究。定年结果显示,热液成因黄铁矿Re-Os等时线年龄为133.4±4.4 Ma,与成矿带内其他铅锌矿成矿时间相似,说明得尔布干成矿带内中生代铅锌银矿床基本形成于同一时代。比利亚谷矿床硫化物包裹体He-Ar同位素分析显示,^(3)He/^(4)He比值为0.02~2.37 Ra,^(40)Ar/^(36)Ar比值为293.5~306,表明主成矿期多金属成矿流体主要为地壳流体和饱和大气水的混合,但有少量幔源成分参与。比利亚谷矿床形成于蒙古-鄂霍茨克洋闭合后的碰撞后伸展环境,得尔布干成矿带属于蒙古-鄂霍茨克成矿省的一部分。 展开更多
关键词 比利亚谷铅锌矿 黄铁矿Re-Os同位素定年 HE-AR同位素 成矿时代 成矿物质来源
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内蒙古根河市比利亚谷铅锌矿成矿地质特征及找矿方向探讨 被引量:1
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作者 刘星旺 王永茂 +3 位作者 孙建国 梁中朋 王富强 王占兵 《化工矿产地质》 CAS 2019年第4期262-269,共8页
比利亚谷铅锌矿床是近年来新发现的中型铅锌矿床,通过对其矿区地层、构造、脉岩等的分析,及其矿体特征、矿石特征的详细解剖,认为比利亚谷铅锌矿床充填于得耳布干深大断裂的次一级NW向张性构造(F35、F37)和裂隙中,赋矿围岩主要为中生界... 比利亚谷铅锌矿床是近年来新发现的中型铅锌矿床,通过对其矿区地层、构造、脉岩等的分析,及其矿体特征、矿石特征的详细解剖,认为比利亚谷铅锌矿床充填于得耳布干深大断裂的次一级NW向张性构造(F35、F37)和裂隙中,赋矿围岩主要为中生界侏罗系中统塔木兰沟组安山质凝灰岩和角砾凝灰岩。矿体规模极不均匀,矿体倾角基本陡倾,一般在70°~90°之间。主要矿体在3勘探线附近发生扭转,以东为NE倾,以西为SW倾,矿体常见分支复合、尖灭再现等现象。该矿床具有大中型矿床的成矿潜力,对其矿床特征和成矿规律的研究可以指导下一步找矿。 展开更多
关键词 比利亚谷 铅锌矿床 断裂张性构造 分支复合 尖灭再现 找矿方向
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Age and Genesis of the Laodaizhanggou Pb-Zn-Ag Deposit in the Fudian Ore Field,Southern North China Craton:Implications for Regional Mineral Prospecting 被引量:3
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作者 Zhanke Li Xiaoming Li +1 位作者 Xiaoye Jin Kai Gao 《Journal of Earth Science》 SCIE CAS CSCD 2021年第1期195-207,共13页
The Fudian ore field in the southern North China Craton hosts the giant Donggou porphyry Mo deposit and several Pb-Zn-Ag vein deposits. Ore genesis of the Pb-Zn-Ag deposits and their relationships with the Donggou por... The Fudian ore field in the southern North China Craton hosts the giant Donggou porphyry Mo deposit and several Pb-Zn-Ag vein deposits. Ore genesis of the Pb-Zn-Ag deposits and their relationships with the Donggou porphyry-related system are still controversial, which further restricts the regional prospecting and exploration. The Laodaizhanggou Pb-Zn-Ag deposit in the northwest of the ore field was focused in this study, to investigate its ore-forming age and genesis, and further to explore the implications for regional prospecting of Pb-Zn-Ag and Mo. The Pb-Zn-Ag veins at Laodaizhanggou are structurally controlled by the east-striking fault zones transecting the host volcanic rocks of Proterozoic Xiong’er Group. Field observations and textural relationships indicate that there are four paragenetic stages during ore-forming process, including the quartz-pyrite veins(stage I), siderite-polymetallic sulfide veins(stage II), ankerite-polymetallic sulfide veins(stage III), and quartz-calcite veins(stage IV). Ore-related sericite 40 Ar/39 Ar dating shows that the Pb-Zn-Ag mineralization at Laodaizhanggou was formed at 124.7±1.2 Ma. Carbonate minerals(siderite, ankerite, and calcite) have δ13 CPDB values of-9.1‰ to-3.9‰ and δ18 OSMOW of 12.1‰ to 15.6‰, corresponding to calculated values for the ore fluids of-8.0‰ to-2.8‰ and 4.9‰ to 10.1‰, respectively. These isotope values are in accordance with those of magmatic fluids. Sulfide minerals at Laodaizhanggou have δ34 S values of 5.3‰ to 10.1‰, and galena separates have 206 Pb/204 Pb ratios of 17.380 to 17.458, 207 Pb/204 Pb ratios of 15.459 to 15.485, and 208 Pb/204 Pb ratios of 38.274 to 38.370. Both S and Pb isotope data of Laodaizhanggou are consistent with those of the Donggou porphyry Mo deposit and distal Sanyuangou and Wangpingxigou Pb-Zn-Ag deposits, suggesting they share a similar magmatic origin. However, the Laodaizhanggou deposit was not the distal product of the giant Donggou porphyry-related magmatic-hydrothermal system, as the former is about 7 Ma older than the latter. The ore-forming age of Laodaizhanggou is consistent with that of the phase 1 magmatism of Taishanmiao batholith, indicating the Laodaizhanggou deposit is genetically related to ca. 125 Ma magmatism in the area. Combined the geochronological and geochemical data on Laodaizhanggou and the regional geological setting, we propose that the fracture systems in the northeast of the Taishanmiao batholith are potential sites for prospecting Pb-Zn-Ag deposit and the deep part among Laodaizhanggou, Xizaogou, and Liezishan is a target for prospecting porphyry Mo deposit. 展开更多
关键词 age and genesis Laodaizhanggou pb-zn-ag deposit mineral prospecting Fudian ore field North China Craton
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Geochronology and Ore Genesis of the Niujuan-Yingfang Pb-Zn-Ag Deposit in Fengning,Northern North China Craton:Constraints from Fluid Inclusions,H-O-S Isotopes and Fluorite Sr-Nd Isotopes
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作者 Xiang Yan Bin Chen +1 位作者 Xiaoxia Duan Zhiqiang Wang 《Journal of Earth Science》 SCIE CAS CSCD 2021年第1期81-102,共22页
The Niujuan-Yingfang Pb-Zn-Ag deposit in northern North China Craton(NCC)is hosted at the contact zone between Permian biotite monzogranite and Hongqiyingzi Group migmatitic gneiss.The orebodies are structurally contr... The Niujuan-Yingfang Pb-Zn-Ag deposit in northern North China Craton(NCC)is hosted at the contact zone between Permian biotite monzogranite and Hongqiyingzi Group migmatitic gneiss.The orebodies are structurally controlled by NE-trending F1 fault.Mineralization can be divided into three stages:(1)siliceous-chlorite-pyrite stage,(2)quartz-Ag-base metal stage,and(3)fluorite-calcite stage.Four types of fluid inclusions were identified,including:(1)liquid-rich aqueous inclusions,(2)vapor-rich inclusions,(3)liquid-rich,solid-bearing inclusions,and(4)CO2-bearing inclusions.Mi-crothermometric measurements reveal that from stage I to III,the homogenization temperatures range from 317 to 262℃,from 297 to 192℃,and from 248 to 151℃,respectively,and the fluid salinities are in the ranges from 1.1 wt.%to 6.5 wt.%,1.2 wt.%to 6.0 wt.%and 0.7 wt.%to 4.0 wt.%NaCl equiva-lents,respectively.Fluid boiling and cooling are the two important mechanisms for ore precipitation according to microthermometric data,and fluid-rock interaction is also indispensable.Laser Raman spectroscopic analyses indicate the fluid system of the deposit is composed of CO2-NaCl-H2O±N2.Me-tallogenic fluorites yielded a Sm-Nd isochron age of 158±35 Ma.Theδ34SV-CDt values of sulfides range from-1.3‰ to 6.3‰,suggesting that the sulfur may be inherited from the basement metamorphic ig-neous rocks.Hydrogen and oxygen isotopic compositions of quartz indicate a metamorphic origin for the ore-forming fluid,and the proportion of meteoric water increased during the ore-forming processes.Sr-Nd isotopes of fluorites show a crustal source for the ore-forming fluid,with primary metamorphic fluid mixed with meteoric water during ascent to lower crustal levels.Combined with the geological,metallogenic epoch,fluid inclusions,H-O-S and Sr-Nd isotopes characteristics of the deposit,we suggest that the Niujuan-Yingfang deposit belongs to the medium-low temperature hydrothermal vein-type Pb-Zn-Ag polymetallic deposit,with ore-forming fluids dominantly originated from metamorphic fluids. 展开更多
关键词 fluid inclusion GEOCHRONOLOGY H-O-S isotopes fluorite Sr-Nd isotopes Niujuan-Yingfang pb-zn-ag deposit NCC
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