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PRELIMINARY DISCUSSION ON METALLOGENESIS OF LANCANGJIANG RIVER TRANSITIONAL FIELD TECTONIC ZONE IN WESTERN YUNNAN 被引量:1
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作者 HU Bin DAI Tagen HU Ruizhong GUO Qun 《Geotectonica et Metallogenia》 2004年第2期183-188,共6页
Applying the crustobody geotectonic theory to geological prospecting at the Lancangjiang river metallogenic belt in western Yunnan province, and on the basis of the basic geological background of western Yunnan and th... Applying the crustobody geotectonic theory to geological prospecting at the Lancangjiang river metallogenic belt in western Yunnan province, and on the basis of the basic geological background of western Yunnan and the space-time evolution-movement historical-dynamic features of the Lancangjiang river tectonic belt, the author has discussed firstly the metallogenesis of the Lancangjiang river transitional field tectonic zone, which can provide a new theoretical foundation for exploring the space-time laws of mineralization in this region. 展开更多
关键词 crustobody geotectonic theory lancangjiang RIVER metallogenic beltS lancangjiang RIVER transitional FIELD tectono-metallogenesis western Yunnan
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Geological Characteristics and Genesis of the Jiamoshan MVT Pb–Zn Deposit in the Sanjiang belt, Tibetan Plateau 被引量:3
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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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西藏昌都地区拉诺玛铅锌锑多金属矿床地质地球化学特征及成因分析 被引量:19
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作者 陶琰 毕献武 +3 位作者 辛忠雷 朱飞霖 廖名扬 李玉帮 《矿床地质》 CAS CSCD 北大核心 2011年第4期599-615,共17页
拉诺玛铅锌锑多金属矿床位于西藏昌都盆地,在吉塘镇北约10 km处。矿体赋存在三叠系上统波里拉组(T3b)灰岩的构造破碎带中,是澜沧江沉积岩容矿型铅锌成矿带内的一个重要矿床。该矿床的成矿元素组成与该成矿带内其他铅锌矿床及国内外其他... 拉诺玛铅锌锑多金属矿床位于西藏昌都盆地,在吉塘镇北约10 km处。矿体赋存在三叠系上统波里拉组(T3b)灰岩的构造破碎带中,是澜沧江沉积岩容矿型铅锌成矿带内的一个重要矿床。该矿床的成矿元素组成与该成矿带内其他铅锌矿床及国内外其他主要沉积岩容矿型铅锌矿床有所不同,以锑铅锌共生组合为特征。矿石成分分析及矿石矿物成分的电子探针分析表明,该矿床铅锑密切共生,且呈纤硫锑铅矿产出。流体包裹体分析结果表明:该矿床形成于中-低温到低温(140~350℃)、中-低盐度〔w(NaCleq)为2%~13%〕,以含NaCl为主,包裹体的气相成分以CO2为主,含有CH4、C2H6等短链烃类,成矿流体为NaCl型含烃富CO2流体。热液方解石的碳同位素组成δ13CV-PDB=-3.5‰^+1.8‰,氧同位素组成δ18OV-SMOW=+11‰^+16‰,介于海相碳酸盐岩和与花岗岩有关的热液之间,反映出其来源为深部构造-岩浆活动与海相碳酸盐岩溶解作用的混合。矿石硫化物的硫同位素组成δ34SV-PDB=-1.6‰^+2.6‰,集中在0值附近,反映出硫主要为深部来源。经综合分析认为,该矿床的成矿作用可能与新生代深部构造-岩浆活动有密切关系,其成矿背景与印度板块碰撞作用有关,成矿物质主要来源于与剪切作用有关的构造-岩浆活动,但昌都盆地内沉积地层中的建造水或地下水参与了成矿,部分成矿物质可能来源于三叠系,成矿流体的驱动机制包括上部重力驱动,以及深部构造-岩浆活动热源驱动所形成的大规模成矿流体运动。 展开更多
关键词 地质学 地球化学 澜沧江pb-zn成矿带 拉诺玛铅锌锑多金属矿床 昌都盆地 西藏
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西南三江成矿带中南段铅锌矿床成矿系列 被引量:20
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作者 朱华平 范文玉 +1 位作者 高大发 张林奎 《沉积与特提斯地质》 CAS CSCD 2008年第4期62-68,共7页
笔者应用成矿系列理论,将三江成矿带中南段的铅锌矿床初步划分为3个成矿系列组合,9个成矿系列和7个成矿亚系列,并总结了各成矿系列的基本特征。
关键词 西南三江成矿带 铅锌矿 矿床成矿系列
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滇西南澜沧江带红豆山铜矿床蚀变分带及其找矿意义
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作者 陈兴林 王雷 +1 位作者 丁金金 朱恩异 《地质力学学报》 CSCD 2019年第A01期124-128,共5页
红豆山铜矿床是南澜沧江带新发现的矿床之一。通过野外地质工作和系统构造—|蚀变岩相填图,发现该矿床蚀变类型主要以钾长石化、硅化、绿泥石化、绿帘石化为主,其次为碳酸盐化、绢云母化、黄铁矿化等,且在空间上呈现一定规律,各蚀变带... 红豆山铜矿床是南澜沧江带新发现的矿床之一。通过野外地质工作和系统构造—|蚀变岩相填图,发现该矿床蚀变类型主要以钾长石化、硅化、绿泥石化、绿帘石化为主,其次为碳酸盐化、绢云母化、黄铁矿化等,且在空间上呈现一定规律,各蚀变带具有明显的叠加现象。依据区内岩石蚀变矿物组合等特点,自断裂带→上盘围岩,共出现4个典型蚀变带,依次为碎裂岩化带→长英岩化—碳酸盐化—绢云母化带→硅化—绿泥石化—绿帘石化带→弱长英岩化安山岩带。矿(化)体主要分布在长英岩化、碳酸盐化、绢云母化带和硅化、绿泥石化、绿帘石化带。由斑岩脉中心至边缘发育钾化带→硅化带→青磐岩化带→绢云母化带,斑岩旁侧围岩中发育放射状石英—方解石—黄铜矿脉。 展开更多
关键词 蚀变分带 富碱斑岩 找矿意义 红豆山铜矿床 南澜沧江成矿带
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