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Origin of Ore-Forming Fluids of Mississippi Valley-Type (MVT) Pb-Zn Deposits in Kangdian Area, China 被引量:7
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作者 王奖臻 李泽琴 倪师军 《Chinese Journal Of Geochemistry》 EI CAS 2003年第4期369-376,共8页
Analyses of fluid\|inclusion leachates from ore deposits show that Na/Br ratios are within the range of 75-358 and Cl/Br 67-394, respectively, and this variation trend coincides with the seawater evaporation trajector... Analyses of fluid\|inclusion leachates from ore deposits show that Na/Br ratios are within the range of 75-358 and Cl/Br 67-394, respectively, and this variation trend coincides with the seawater evaporation trajectory on the basis of the Na/Br and Cl/Br ratios. The average Cl/Br and Na/Br ratios of mineralizing fluids are 185 and 173 respectively, which are very close to the ratios (120 and 233) of the residual evaporated seawater past the point of halite precipitation. It is suggested that the original mineralizing brine was derived from highly evaporated seawater with a high salinity. However, the inclusion fluids have absolute Na values of \{69.9\}-\{2606.2\} mmol kg\+\{-1\} and Cl values of \{106.7\}-\{1995.5\} mmol kg\+\{-1\}. Most of the values are much less than those of seawater: Na, 485 mmol kg\+\{-1\} and Cl, 566 mmol kg\+\{-1\}, respectively; the salinity measured from fluid inclusions of the deposits ranges from \{2.47 wt%\} to \{15.78 wt%\} NaCl equiv. The mineralizing brine has been diluted. The \{δ\{\}\+\{18\}O\} and δD values of ore\|forming fluids vary from \{-8.21‰\} to \{9.51‰\} and from \{-40.3‰\} to \{-94.3‰\}, respectively. The δD values of meteoric water in this region varied from \{-80‰\} to \{-100‰\} during the Jurassic. This evidenced that the ore\|forming fluids are the mixture of seawater and meteoric water. Highly evaporated seawater was responsible for leaching and extracting Pb, Zn and Fe, and mixed with and diluted by descending meteoric water, which resulted in the formation of ores. 展开更多
关键词 MISSISSIPPI valley-type pb-zn deposit ORE fluid Kangdian area Cl-Br-Na SYSTEMATICS
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青海南部地区MVT型Pb-Zn矿床研究回顾 被引量:6
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作者 王进寿 郑有业 +3 位作者 王秉璋 黄青华 张林 拜永山 《中国矿业》 北大核心 2011年第12期67-71,共5页
通过对青海南部地区铅锌矿床的研究总结,认为青海南部地区发育新生代大规模逆冲推覆构造系统,以及相伴产生的第三纪前陆盆地。东莫扎抓、莫海拉亨和茶曲帕查等大型Pb-Zn矿床,就分布于逆冲推覆与前陆盆地叠合部位的囊谦-上拉秀盆地、沱... 通过对青海南部地区铅锌矿床的研究总结,认为青海南部地区发育新生代大规模逆冲推覆构造系统,以及相伴产生的第三纪前陆盆地。东莫扎抓、莫海拉亨和茶曲帕查等大型Pb-Zn矿床,就分布于逆冲推覆与前陆盆地叠合部位的囊谦-上拉秀盆地、沱沱河盆地中,其形成受印度-欧亚大陆碰撞带中大型逆冲推覆构造控制。成矿地质构造背景、成矿机制及矿床成矿流体研究表明,其具有MVT型铅锌矿床的特征,这对于在青海南部地区勘查逆冲推覆构造机制制约下的MVT型铅锌矿床具有重要的启示意义。 展开更多
关键词 mvtpb-zn矿床 逆冲推覆构造 第三纪前陆盆地 青海南部地区
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西藏昌都地区拉拢拉类MVT铅锌矿床矿化特征与成因研究 被引量:16
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作者 刘英超 侯增谦 +3 位作者 于玉帅 田世洪 李玉龙 杨竹森 《岩石学报》 SCIE EI CAS CSCD 北大核心 2013年第4期1407-1426,共20页
昌都地区位于青藏高原碰撞造山带东北部,是西南三江Pb-Zn-Cu-Ag成矿带重要组成部分,区内碳酸盐岩容矿铅锌矿床大量产出,成矿明显受到新生代区域逆冲推覆构造系统控制。拉拢拉铅锌矿床位于昌都地区最具代表性的碳酸盐岩容矿铅锌矿集区西... 昌都地区位于青藏高原碰撞造山带东北部,是西南三江Pb-Zn-Cu-Ag成矿带重要组成部分,区内碳酸盐岩容矿铅锌矿床大量产出,成矿明显受到新生代区域逆冲推覆构造系统控制。拉拢拉铅锌矿床位于昌都地区最具代表性的碳酸盐岩容矿铅锌矿集区西南部,是区内铅锌矿床的典型代表。为了填补三江带昌都地区碳酸盐岩容矿铅锌矿床的研究空白,笔者在对拉拢拉矿区详细地质填图基础上,深入剖析了铅锌矿化成因,建立了铅锌成矿模型。矿区铅锌矿体产于逆冲断层上盘,主要呈透镜体状沿上三叠统甲丕拉组泥页岩和波里拉组灰岩岩性分界面展布,角砾状和网脉状为主要矿石构造,方铅矿、闪锌矿和菱锌矿为主要矿石矿物,矿体控矿要素和产状代表了三江带碳酸盐岩容矿铅锌矿床的一种全新矿床式,命名为拉拢拉式。矿区主要成矿过程划分为硫化物期(I)和硫化物-碳酸盐期(II),两期之间以一期构造活动相隔。I期发育富液相LV流体包裹体和富CO2和CH4的LV流体包裹体两种类型,显微测温显示出低温(130~140℃)、高盐(23%~24%NaCleqv)、中高密度(1.10~1.12g·cm-3)和中低温(170~180℃)、高盐(23%~24%NaCleqv)、中低密度(1.06~1.08g·cm-3)两种特征。两期矿化流体均为Ca2+-Mg2+-Na+-K+-SO42--Cl--F--NO3-卤水体系,其离子含量相近,H-O同位素组成相似(δDV-SMOW为-137‰~-110‰,δ18OV-SMOW为-2.92‰~13.42‰),形成方解石的C-O同位素分布规律一致(δ13CV-PDB为0.9‰~7.2‰,δ18OV-SMOW为9.1‰~26.5‰),揭示矿区至少存在两种流体来源,分别为中低温度、高盐度盆地卤水和由大气降水、地层封存蒸发浓缩海水及区域变质水混合而成的区域流体。两期矿化中矿物S同位素组成相近,硫化物δ34S为负值(-24.7‰~-11.5‰),重晶石δ34S为正值(11.3‰~22.9‰),第三纪石膏δ34S值(2‰~4.7‰)介于二者之间,反映还原硫主要来自生物还原第三纪盆地下渗的盆地卤水和灰岩地层封存的蒸发浓缩海水中的硫酸盐,富含金属物质的外来流体与富含还原硫的本地流体的混合是金属物质在矿区卸载的主要方式。两期方铅矿Pb同位素组成一致,206Pb/204Pb、207Pb/204Pb和208Pb/204Pb比值分别为18.8646~18.8835,15.6619~15.6677和38.9404~38.9796,推测成矿物质来自造山带内从变质基底到盖层灰岩(甚至碎屑岩)的多套地层。综合对比拉拢拉矿床与三江带内碳酸盐岩容矿铅锌矿床,提出拉拢拉矿床与区域铅锌矿床成因类型一致,为受逆冲推覆构造控制的类MVT铅锌矿床,其代表的拉拢拉式矿床成矿模型可简述如下:逆冲推覆构造在碳酸盐岩地层中形成构造圈闭,第三纪盆地卤水下渗汇聚及伴随的硫酸盐生物还原作用形成富含H2S的本地流体储库;区域挤压变形释放的区域流体沿逆冲推覆主滑脱带运移,交换基底及盖层中的成矿物质,形成富含Pb-Zn-卤素络合物的外来流体;逆冲断层断后伸展导致区域流体沿相关开放空间上升至灰岩与泥页岩分界面这一上下封闭的有利空间与本地流体混合,铅锌硫化物及铅锌碳酸盐沉淀,金属物质卸载,形成以透镜状为主的矿体沿岩性分界面展布。 展开更多
关键词 mvt铅锌矿床 拉拢拉式pb-zn矿床 成矿特征 矿床成因 昌都 西藏
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西藏昌都赵发勇溶洞控矿MVT铅锌矿床地质特征与矿床成因 被引量:7
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作者 刘英超 杨竹森 +3 位作者 于玉帅 马旺 岳龙龙 唐波浪 《地球学报》 EI CAS CSCD 北大核心 2019年第6期853-870,共18页
赵发勇铅锌矿床位于三江成矿带中段昌都地区,铅锌矿化发育在新生代区域逆冲推覆构造中,以逆冲断层相关的古溶洞构造为主要控矿构造,代表了逆冲褶皱系MVT铅锌矿床中一种新的成矿模式——溶洞控矿成矿模式。因此,笔者在对赵发勇矿区详细... 赵发勇铅锌矿床位于三江成矿带中段昌都地区,铅锌矿化发育在新生代区域逆冲推覆构造中,以逆冲断层相关的古溶洞构造为主要控矿构造,代表了逆冲褶皱系MVT铅锌矿床中一种新的成矿模式——溶洞控矿成矿模式。因此,笔者在对赵发勇矿区详细地质填图基础上,对其成矿流体特征、成矿期方解石和硫化物的同位素组成进行了系统研究,以期对逆冲褶皱系MVT铅锌矿床中这一新成矿模式的成因机制进行探讨。赵发勇铅锌矿床矿体呈漏斗状-筒状发育在逆(冲)断层上、下盘的下二叠统和上三叠统灰岩古溶洞中,以角砾状、块状和皮壳状为主要矿石构造,以方铅矿、闪锌矿为主要矿石矿物,经历了硫化物期(I)和硫化物-碳酸盐期(II)两期成矿过程。I期成矿流体总体具低温度(130~140℃)、高盐度(23%~24%NaCl eq.)特征,部分呈现中高温度(约高达400℃)、中低盐度(约低达8%NaCl eq.)特征;δDV-SMOW值介于–147‰~–94‰,δ18O流体值介于1.25‰~13.62‰;同成矿期方解石δ13CV-PDB值为–2.4‰~5.1‰,δ18OV-SMOW值为15.1‰~27.4‰。两期硫化物δ34S均为负值(–15.1‰~–1.6‰),206Pb/204Pb、207Pb/204Pb、208Pb/204Pb组成分别为18.703 0~18.966 2、15.638 9~15.687 2、38.554 8~38.924 0。研究表明,I期铅锌矿化由①封存在地层中的蒸发浓缩的海水或/和区域古近纪—新近纪盆地下渗的盆地卤水形成的低温度、高盐度的本地流体和②由区域或矿区地层释放的蒸发浓缩海水和变质基底释放的变质水混合而成的中低温、中高盐度的区域流体两种流体组成;两期矿化的成矿金属来自造山带中从基底变质岩到盖层灰岩或/和碎屑岩等在内的多套地层,还原硫来自古近纪—新近纪盆地卤水中的硫酸盐±灰岩地层封存水中的硫酸盐的细菌还原作用;富还原硫的本地流体和富金属物质的区域流体的混合是铅锌硫化物沉淀的主要机制。结合对三江带区域溶洞控矿MVT铅锌矿床研究认识,笔者初步建立了逆冲褶皱系溶洞控矿MVT铅锌矿床成矿模型。 展开更多
关键词 mvt铅锌矿床 溶洞控矿 赵发勇pb-zn矿床 成矿特征 矿床成因 逆冲褶皱带 三江成矿带 西藏
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Sediment-hosted Pb-Zn Deposits in Southwest Sanjiang Tethys and Kangdian Area on the Western Margin of Yangtze Craton 被引量:36
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作者 WANG Changming DENG Jun +4 位作者 ZHANG Shouting XUE Chunji YANG Liqiang WANG Qingfei SUN Xiang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2010年第6期1428-1438,共11页
The western margin of Yangtze Craton is known as a significant sediment-hosted base-metal aggregate cluster,especially for Pb-Zn deposits in China,e.g.Jinding,Daliangzi,Tianbaoshan, Kuangshanchang and Qinlinchang depo... The western margin of Yangtze Craton is known as a significant sediment-hosted base-metal aggregate cluster,especially for Pb-Zn deposits in China,e.g.Jinding,Daliangzi,Tianbaoshan, Kuangshanchang and Qinlinchang deposits.In comparison with the classic MVT deposits in the world, based on the basic geology of the sediment-hosted Pb-Zn deposits,this paper focuses on temporal-spatial distribution of this deposit to further discuss its large scale mineralization and tectonic evolution history.In the SW Sanjiang Thethys,Jinding deposit is typically thrust fault-controlled and hosted mainly in the sandstones and breccia-bearing sandstones,whereas MVT-type deposits are controlled by lithology and faulting/fracturing with a strong preference for carbonate-hosted rocks.Most importantly,Jinding Pb-Zn deposit differs from the other types of sediment-hosted Pb-Zn deposits in which it was formed in a strongly deformed foreland basin within a continental collision zone.In the Kangdian area,the sediment-hosted Pb-Zn deposits were formed in the extensional basin on the side of the continental orogenic belt along the Yangtze Craton.Compared with classic MVT deposits,the Pb-Zn deposits in the Kangdian area belong to MVT deposits.This paper is significant not only for interpretation of the genesis of sediment-hosted Pb-Zn deposits but also for exploiting large base metal deposits in large sedimentary target areas. 展开更多
关键词 Sediment-hosted pb-zn deposits mvt SW Sanjiang Thethys Kangdian area China
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Geological Characteristics and Genesis of the Jiamoshan MVT Pb–Zn Deposit in the Sanjiang belt, Tibetan Plateau 被引量:4
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作者 LIU Yingchao YANG Zhusen +3 位作者 YUE Longlong YU Yushuai MA Wang TANG Bolang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第4期1238-1255,共18页
The carbonate-hosted Pb–Zn deposits in the Sanjiang metallogenic belt on the Tibetan Plateau are typical of MVT Pb–Zn deposits that form in thrust-fold belts. The Jiamoshan Pb–Zn deposit is located in the Changdu a... The carbonate-hosted Pb–Zn deposits in the Sanjiang metallogenic belt on the Tibetan Plateau are typical of MVT Pb–Zn deposits that form in thrust-fold belts. The Jiamoshan Pb–Zn deposit is located in the Changdu area in the middle part of the Sanjiang belt, and it represents a new style of MVT deposit that was controlled by karst structures in a thrust–fold system. Such a karst-controlled MVT Pb–Zn deposit in thrust settings has not previously been described in detail, and we therefore mapped the geology of the deposit and undertook a detailed study of its genesis. The karst structures that host the Jiamoshan deposit were formed in Triassic limestones along secondary reverse faults, and the orebodies have irregular tubular shapes. The main sulfide minerals are galena, sphalerite, and pyrite that occur in massive and lamellar form. The ore-forming fluids belonged to a Mg2+–Na+–K+–SO2-4–Cl-–F-–NO-3–H2 O system at low temperatures(120–130°C) but with high salinities(19–22% NaCl eq.). We have recognized basinal brine as the source of the ore-forming fluids on the basis of their H–O isotopic compositions(-145‰ to-93‰ for δDV-SMOW and-2.22‰ to 13.00‰ for δ18 Ofluid), the ratios of Cl/Br(14–1196) and Na/Br(16–586) in the hydrothermal fluids, and the C–O isotopic compositions of calcite(-5.0‰ to 3.7‰ for δ13 CV-PDB and 15.1‰ to 22.3‰ for δ18 OV-SMOW). These fluids may have been derived from evaporated seawater trapped in marine strata at depth or from Paleogene–Neogene basins on the surface. The δ34 S values are low in the galena(-3.2‰ to 0.6‰) but high in the barite(27.1‰), indicating that the reduced sulfur came from gypsum in the regional Cenozoic basins and from sulfates in trapped paleo-seawater by bacterial sulfate reduction. The Pb isotopic compositions of the galena samples(18.3270–18.3482 for 206 Pb/204 Pb, 15.6345–15.6390 for 207 Pb/204 Pb, and 38.5503–38.5582 for 208 Pb/204 Pb) are similar to those of the regional Triassic volcanic-arc rocks that formed during the closure of the Paleo-Tethys, indicating these arc rocks were the source of the metals in the deposit. Taking into account our new observations and data, as well as regional Pb–Zn metallogenic processes, we present here a new model for MVT deposits controlled by karst structures in thrust–fold systems. 展开更多
关键词 ore genesis thrust-fold belt karst-controlled style Jiamoshan pb-zn deposit mvt(Mississippi Valley Type)pb-zn deposit Sanjiang metallogenic belt Tibetan Plateau
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川西尔呷地吉Pb-Zn矿床方解石Sm-Nd等时线年龄及其地质意义 被引量:1
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作者 张进平 黄从俊 《地质与资源》 CAS 2021年第5期561-569,共9页
尔呷地吉中型铅锌矿床位于扬子地块西南缘川滇黔交界地带.矿体主要呈似层状、透镜状赋存于震旦系灯影组白云岩中,顶板为下寒武统筇竹寺组含炭质砂页岩.主要金属矿物为闪锌矿和方铅矿,Zn平均品位5.30%,Pb平均品位3.25%;主要非金属矿物为... 尔呷地吉中型铅锌矿床位于扬子地块西南缘川滇黔交界地带.矿体主要呈似层状、透镜状赋存于震旦系灯影组白云岩中,顶板为下寒武统筇竹寺组含炭质砂页岩.主要金属矿物为闪锌矿和方铅矿,Zn平均品位5.30%,Pb平均品位3.25%;主要非金属矿物为方解石和石英.矿石结构主要有自形晶结构、交代-侵蚀结构和固溶体分离结构,矿石构造主要有细脉-浸染状、块状和角砾状.矿床中铅锌矿化与硅化、沥青化和方解石化密切相关.对尔呷地吉Pb-Zn矿床成矿期8件与铅锌矿共生的方解石样品进行了Sm-Nd同位素体系研究,结果表明方解石的^(147)Nd/^(144)Nd值变化于0.058489~0.663246,^(143)Nd/^(144)Nd值变化于0.511852~0.512626,获得Sm-Nd等时线年龄为203±6 Ma(MSWD=1.2),该年龄代表了尔呷地吉MVT Pb-Zn矿床的成矿年龄.尔呷地吉Pb-Zn矿床是典型的MVT Pb-Zn矿床,其矿床成矿作用与峨眉山玄武岩岩浆活动无关,与古特提斯洋闭合背景下的造山运动密切相关. 展开更多
关键词 mvt pb-zn矿床 方解石 SM-ND等时线年龄 尔呷地吉 四川省
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Conditions of Ore-Mineralization and Geochemical Correlation of Rare-Elements at the Robat Pb-Zn Deposit, West of Khomein, Central Iran
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作者 Golrokh Mahdavi Ahmad Khakzad Mohammad Lotfi 《Open Journal of Geology》 2016年第9期1118-1136,共19页
The Robat geological study area is located 32 Km west-northwest of Khomein town. From the geo-structural point of view, it is in the median part of the Sanandaj-Sirjan zone [1], and from the mineralization aspect it i... The Robat geological study area is located 32 Km west-northwest of Khomein town. From the geo-structural point of view, it is in the median part of the Sanandaj-Sirjan zone [1], and from the mineralization aspect it is part of the Malayer-Esfahan Pb-Zn metallogenic belt [2]. The main hostrock of Pb-Zn ore-mineralization at the Robat deposit is the upper parts of the orbitolina-bearing limestone at its contact with the overlying unit of marl. Ore mineralization is characterized by vein-veinlet, fracture-filling and replacement textures, associated with silica, carbonate, argillic and hematitic alterations [3]. Geochemical trends of minor elements in ore represent positive correlation of Sb, Ag, Cu, Bi, Sn, Fe, U, Th, W, V, Zr and Y with Pb and Zn. Fluid inclusion study of samples indicates that primary fluid inclusions mainly consist of liquid, having an average temperature of homogeneity in the range of 160°C to 270°C, having the most frequency in the range of 180°C to 190°C at an average of 5 to 10 wt% NaCl equivalent for salinity. Based on the graph of pressure variations versus salinity (representing paleo-depth), it is understood that ore-mineralization at the Robat deposit is estimated to have formed at less than 50 bars pressure representing depths shallower than 200 m. Fluid inclusion study renders that the low salinity could be resulted from dilution by meteoric waters, also indicating that boiling could be the major mineral precipitation process. Therefore, it is concluded, based on these studies, besides field evidence, that the Robat Pb-Zn deposit shows strong affinity with MVT Pb-Zn mineralization type. 展开更多
关键词 Robat pb-zn Deposit Ore-Mineralization mvt Fluid Inclusion
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Palynological constraints on the age of the Mississippi Valley-type Changdong Pb-Zn deposit,Sanjiang belt,West China 被引量:2
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作者 Yingchao LIU Yucai SONG +5 位作者 Zengqian HOU Dangpeng XI Suping LI Longlong YUE Wang MA Bolang TANG 《Science China Earth Sciences》 SCIE EI CSCD 2022年第1期167-181,共15页
Mississippi Valley-type(MVT)Pb-Zn deposits serve as the world’s major supply of Pb-Zn resources.However,the age constraint of MVT Pb-Zn deposits has long been a big challenge,due to the lack of minerals that are uneq... Mississippi Valley-type(MVT)Pb-Zn deposits serve as the world’s major supply of Pb-Zn resources.However,the age constraint of MVT Pb-Zn deposits has long been a big challenge,due to the lack of minerals that are unequivocally related to ore deposition and that can be used for radioisotopic dating.Here we show sporopollens can provide useful chronological information on the Changdong MVT Pb-Zn deposit in the Simao basin,Sanjiang belt,West China.The Pb-Zn ores in the Changdong deposit are hosted by internal sediments in paleo-karst caves of meteoric origin.Sphalerite and galena occur as replacements of carbonate minerals and void infillings in the internal sediments.The relations suggest that the Pb-Zn mineralization occurred after the deposition of the internal sediments.A palynological assemblage mainly composed of angiosperm pollen dominated by Castanea,Quercus,and Carya and fern spores dominated by Polypodiaceae,Pteris,and Athyriaceae was identified.These pollen and spores place the ore-hosting internal sediments and the Changdong paleo-karst at early to middle Oligocene.Consequently,the Changdong Pb-Zn deposit must have formed after the early Oligocene(~34 Ma).These age constraints,together with the geological characteristics,indicate that the Changdong Pb-Zn deposit is a paleo-karst-controlled MVT deposit related to fold-thrust systems in the Sanjiang belt.The Changdong deposit is similar to other MVT Pb-Zn deposits in the northern part of the Sanjiang belt,making it possible to extend this Pb-Zn belt 500 km further to the South.Results presented here highlights the potential of sporopollens in dating the age of MVT deposits related to paleo-karst formation in young orogenic belts. 展开更多
关键词 Mississippi valley-type(mvt)pb-zn deposits Age constraint PALYNOMORPHS Internal sediments Paleo-karst Changdong deposit Sanjiang fold-thrust belt
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Enrichment of Mississippi Valley-type(MVT) deposits in the Tethyan domain linked to organic matter-rich sediments 被引量:2
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作者 Yucai SONG Zhiming YANG Liangliang ZHUANG 《Science China Earth Sciences》 SCIE EI CAS CSCD 2023年第12期2853-2870,共18页
The Tethyan domain hosts the world's most abundant hydrocarbon and Mississippi Valley-type(MVT) Pb-Zn resources. The relations among organic matter-rich sediments, MVT Pb-Zn mineralization, and the Tethyan tectoni... The Tethyan domain hosts the world's most abundant hydrocarbon and Mississippi Valley-type(MVT) Pb-Zn resources. The relations among organic matter-rich sediments, MVT Pb-Zn mineralization, and the Tethyan tectonic evolution history are an important scientific issue. The data of paleogeographic reconstruction indicate that the Proto-, Paleo-, and NeoTethys oceans mainly lay in low latitude areas between 30°N and 45°S. The high temperature and precipitation and the lack of sea water overturning in stagnant basins resulted in high marine biological productivity and good preservation conditions for organic matter-rich sediments. Consequently, abundant organic matter-rich sediments were developed and preserved in the Tethyan domain and thus created abundant hydrocarbon resources. Mineralization age data demonstrate that MVT deposits mainly formed during the continent-continent convergence in the late stage of the Tethyan tectonic evolution. Deposits are located in the fold-and-thrust belts and forelands of the continent-continent convergence orogen, and spatially associated with hydrocarbon basins. Organic matter-rich sediments are well developed in MVT ore districts, where hydrocarbon activity appeared earlier than or nearly simultaneous with the Pb-Zn mineralization event. Hydrocarbon activity generally began earlier than the Pb-Zn mineralization in individual deposits. Organic matter-rich sediments and hydrocarbons mainly play the role of reducing agents in the MVT Pb-Zn mineralization process. Through bacterial or thermal reduction, dissolved sulfates from sedimentary strata were reduced to generate reduced sulfur for Pb-Zn sulfide mineralization. In summary, the Tethyan oceans have long been in low latitude areas near the equator, making the Tethyan domain develop abundant organic matterrich sediments and associated hydrocarbon resources which reduce sulfates to provide sufficient reduced sulfur for MVT PbZn mineralization in the region. 展开更多
关键词 Tethyan domain Organic matter Mississippi valley-type pb-zn deposit Low latitude Sulfate reduction
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青海玉树东莫扎抓铅锌矿床流体包裹体研究 被引量:21
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作者 刘英超 侯增谦 +5 位作者 杨竹森 田世洪 宋玉财 薛万文 王富春 张玉宝 《岩石学报》 SCIE EI CAS CSCD 北大核心 2010年第6期1805-1819,共15页
东莫扎抓铅锌矿床位于青藏高原金沙江缝合带和班公湖-怒江缝合带夹持的羌塘地体东北缘,是目前"三江"北段铅锌铜银多金属矿带中铅锌资源储量最大的矿床,代表着大陆碰撞造山带中一种新的铅锌矿床类型。对该矿床地质特征和成因... 东莫扎抓铅锌矿床位于青藏高原金沙江缝合带和班公湖-怒江缝合带夹持的羌塘地体东北缘,是目前"三江"北段铅锌铜银多金属矿带中铅锌资源储量最大的矿床,代表着大陆碰撞造山带中一种新的铅锌矿床类型。对该矿床地质特征和成因类型的研究有助于理解区域铅锌铜银多金属成矿规律,对区域找矿具有重要意义,而以流体包裹体研究为载体的成矿流体性质研究则对确定矿床的成因类型意义重大。基于此,本文在矿区地质调查和矿床地质研究基础上,系统开展了东莫扎抓铅锌矿床流体包裹体研究。包裹体岩相学观察发现,东莫扎抓铅锌矿床各阶段流体包裹体类型简单,仅为以液相为主的气液两相液体包裹体。显微测温工作表明各期流体并非连续演化的产物,成矿前白云石化阶段、重晶石阶段流体温压条件相似,具中低温度(140~160℃)、低盐度(0.0%~2.0%NaCleqv.)特征,多金属硫化物阶段流体为主要成矿流体,具低温度(120~140℃)、高盐度(26.0%~28.0%NaCleqv.)特征,成矿后方解石化阶段流体具中高温(220~240℃)、低盐度(6.0%~8.0%NaCleqv.)特征。单个流体包裹体激光拉曼探针分析和群体包裹体成分分析表明各期流体成分相似,气相主要为H2O、CO2、N2,并含少量CO、CH4、C2H2、C2H4、C2H6等还原性气体及少量O2,液相为Ca2+-Mg2+-Na+-Cl-SO42-F-体系。对以上数据分析发现流体主要为长距离迁移的盆地卤水来源,并有封存在碳酸盐岩地层中的蒸发浓缩海水和大气降水的参与,流体演化过程中,矿区环境发生弱还原性-氧化性-弱还原性的变化。早期中低温低盐度流体白云石化围岩地层,使岩石致密度变小,孔隙度增大,为金属矿物的最初沉淀创造了空间;中期低温高盐度盆地卤水在盆地中经过长距离迁移,淋滤了地层中大量Ca2+、Mg2+、Pb2+、Zn2+等阳离子,成为富含金属离子的外来流体;矿区碳酸盐岩地层中封存的蒸发浓缩海水中的硫酸盐被细菌还原,在矿区圈闭构造中汇聚成富含还原硫的本地流体;二者在矿区发生混合是东莫扎抓铅锌矿床硫化物沉淀的主要机制。35Ma年前后东莫扎抓铅锌矿床形成时,玉树地区由于逆冲推覆和走滑断层活动活跃,区域地壳不稳定,逆冲推覆构造的发生使矿区深度发生间歇性变化,走滑断层活化早期逆冲断层,为流体从拆离滑脱带中进入矿区提供构造通道。东莫扎抓Pb-Zn矿床地质特征及成矿流体特征与世界上MVTPb-Zn矿床具很大相似性,归纳其成因类型为碰撞造山逆冲推覆带中类MVTPb-Zn矿床。这种类型的矿床在中国青藏高原大陆碰撞造山带陆续得到发现,代表了大陆碰撞造山带中一种新的矿床类型,成为青藏高原寻找Pb-Zn矿床的一个新的找矿方向。 展开更多
关键词 mvt铅锌矿床 东莫扎抓pb-zn矿床 逆冲推覆构造 流体包裹体 青海
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Geochronology and geodynamic setting of the carbonate-hosted Pb-Zn deposits in world-class Sichuan-Yunnan-Guizhou triangle,South China
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作者 Zhongxi Xue Wenxin Shi +2 位作者 Chen Wei Tao Wu Zhilong Huang 《Acta Geochimica》 2025年第1期217-230,共14页
Unraveling the precise mineralization age is vital to understand the geodynamic setting and ore-forming mechanism of the sediment-hosted Pb-Zn deposit;this has long been a challenge.The Sichuan-Yunnan-Guizhou(SYG)tria... Unraveling the precise mineralization age is vital to understand the geodynamic setting and ore-forming mechanism of the sediment-hosted Pb-Zn deposit;this has long been a challenge.The Sichuan-Yunnan-Guizhou(SYG)triangle in the southwestern margin of the Yangtze Block is a globally recognized carbonate-hosted Pb-Zn metallogenic province and also an essential part of the South China low-temperature metallogenic domain.This region has>30 million tons(Mt)Zn and Pb resources and shows the enrichment of dispersed metals,such as Ga,Ge,Cd,Se,and Tl.During the past 2 decades,abundant data on mineralization ages of Pb-Zn deposits within the SYG triangle have been documented based on various radioisotopic dating methods,resulting in significant progress in understanding the geodynamic background and ore formation of Pb-Zn deposits hosted in sedimentary rocks at SYG triangle.This paper provides a comprehensive summary of the geochronological results and Pb-Sr isotopic data regarding Pb-Zn deposits in the SYG triangle,which identified two distinct Pb-Zn mineralization periods influencing the dynamic processes associated with the expansion and closure of the Paleo-Tethys Ocean in the western margin of the Yangtze Block.The predominant phase of Pb-Zn mineralization at SYG triangle spanned from the Middle Triassic to Early Jurassic(226-191 Ma),which was intensely correlated with the large-scale basin fluid transport triggered by the closure of the Paleo-Tethys Ocean and Indosinian orogeny.The secondary Pb-Zn mineralization phase occurred during the Late Devonian to Late Carboniferous and was controlled by extensional structures associated with the expansion of the Paleo-Tethys Ocean.Further investigation is necessary to clarify the occurrence and potential factors involved in the Pb-Zn mineralization events during the Late Devonian to Late Carboniferous. 展开更多
关键词 Sichuan-Yunnan-Guizhou triangle Carbonate hosted pb-zn deposit Radioisotopic dating Geodynamic setting Mississippi valley-type(mvt)
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Geological significance of nickeliferous minerals in the Fule Pb–Zn deposit, Yunnan Province, China 被引量:6
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作者 Zhenli Li Lin Ye +1 位作者 Yusi Hu Zhilong Huang 《Acta Geochimica》 EI CAS CSCD 2018年第5期684-690,共7页
Abstract The Fule Pb-Zn deposit is located in the Sichuan-Yunnan-Guizhou Province, and it is an important and giant low temperature metallogenic domain in China. In our research area, the Pb-Zn deposits are mainly hos... Abstract The Fule Pb-Zn deposit is located in the Sichuan-Yunnan-Guizhou Province, and it is an important and giant low temperature metallogenic domain in China. In our research area, the Pb-Zn deposits are mainly hosted in the Permian Yangxin Formation and are composed of dolostone and limestone. The distance between the ore bodies and the Permian Emeishan basalt ranged from 50 to 160 m. In this study, the nickel rich minerals, including vaesite, polydymite and millerite, were reported for the first time in the Fule deposit. These minerals occurred as xenomorphic mineral aggregate and were sporadically distributed in the sphalerite-galena-calcite vein, which is the main ore type in the deposit. Our study indicated that the paragenetic sequence of minerals in the Fule deposit is the following order: polydymite → vaesite → mil- lerite → sphalerite → galena → tetrahedrite (tennantite). The geological occurrence characteristics of those nicke- liferous minerals suggested that the Permian Emeishan basalt is a possible barrier layer of Pb-Zn ore-forming fluid, and it is an important source for the Ni and part of the Cu in the deposit. The Sichuan-Yunnan-Guizhou Pb-Zn mineralization province is a world-class production base of Pb and Zn, in which the Permian Emeishan basalt and Pb- Zn deposits have uniformly spatial distribution, but the relationship of mineralization between them is still under debate. This report provides new evidence for understanding the relationship between Pb-Zn mineral- ization and Permian Emeishan basalt in the Sichuan- Yunnan-Guizhou Pb-Zn mineralization province. 展开更多
关键词 Nickeliferous Permian Emeishan basalt Fule pb-zn deposit mvt deposit Barrier layer
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