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Geochronology and Geochemistry of Metallogenetic Porphyry Bodies from the Nongping Au-Cu Deposit in the Eastern Yanbian Area, NE China: Implications for Metallogenic Environment 被引量:7
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作者 REN Yunsheng JU Nan +3 位作者 ZHAO Hualei WANG Hui HOU Kejun LIU Shen 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2012年第3期619-629,共11页
The metallogenetic porphyry bodies in the Nongping Au-Cu deposit, in the eastern Yanbian area, mainly include porphyritic granodiorite and biotite granodiorite porphyry. They are featured with high silicon and enrichm... The metallogenetic porphyry bodies in the Nongping Au-Cu deposit, in the eastern Yanbian area, mainly include porphyritic granodiorite and biotite granodiorite porphyry. They are featured with high silicon and enrichment in sodium, and classified into sodic rocks of low-K tholeiitic basalt series. Except slightly low Sr content, the rock basically has the geochemical characteristics of the adakite: relatively high A12O3 content, relatively low MgO content, depletion in Y and Yb; relative enrichment in large ion lithophile elements (LILEs) and light rare-earth elements (LREEs), relatively low content of high field strength elements (HFSEs); positive Eu anomaly or weak negative Eu anomaly. In situ zircon dating technology LA-MC-ICP-MS was used to conduct single-grain zircon dating of biotite granodiorite porphyry, and the results show that the age of metallogenetic porphyry body is 100.04±0.88 Ma, indicating that the porphyry bodies were emplaced in the late Cretaceous period. According to the regional tectonic setting and the comparison with the same kind of deposits, we think that the metallogenetic porphyry bodies in the Nongping Au-Cu deposit have a close genetic connection with the subduction of the Pacific plate in the late Yanshanian period. The adakitic magma generated from partial melting of the subducting plate has high formation temperature, high oxygen fugacity, and volatile constituents' enrichment, so it is helpful for enrichment of metallogenetic elements and plays an important role in the formation of porphyry Au-Cu deposits in this region. 展开更多
关键词 porphyry body zircon U-Pb dating adakitic rock Nongping au-cu deposit
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Contrast in Fluid M etallogeny between the Tianmashan Au-S Deposit and the Datuanshan Cu Deposit in Tongling,Anhui Province 被引量:2
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作者 LEE Hyun Koo 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2003年第1期116-124,共9页
A comprehensive contrast of ore-forming geological background and ore-forming fluid features, especially fluid ore-forming processes, has been performed between the Tianmashan and the Datuanshan ore deposits in Tongli... A comprehensive contrast of ore-forming geological background and ore-forming fluid features, especially fluid ore-forming processes, has been performed between the Tianmashan and the Datuanshan ore deposits in Tongling, Anhui Province. The major reasons for the formation of the stratabound skarn Au-S ore deposit in Tianmashan and the stratabound skarn Cu ore deposit in Datuanshan are analyzed in accordance with this contrast. The magmatic pluton in Tianmashan is rich in Au and poor in Cu, but that in Datuanshan is rich in Cu and Au. The wallrock strata in Tianmashan contain Au-bearing pyrite layers with some organic substance but those in Datuanshan contain no such layers. Moreover, the ore-forming fluids in Tianmashan are dominantly magmatic ones at the oxide and sulfide stages, but those with high content of Cu in Datuanshan are mainly groundwater fluids. In addition, differences in compositional evolution and physicochemical condition variation of the ore-forming fluids result in gradual dispersion 展开更多
关键词 fluid inclusion fluid ore-forming process contrast in fluid metallogeny au-S ore deposit cu ore deposit magmatic fluid groundwater fluid TONGLING Anhui Province
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镁铁质岩浆周期性补给对云南普朗斑岩Cu-Au矿床的制约:能量约束下热力学模拟
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作者 张少颖 和文言 肖仪武 《现代地质》 CAS CSCD 北大核心 2024年第4期922-933,共12页
镁铁质岩浆周期性补给于硅酸质岩浆房是形成大型斑岩矿床的关键因素。本文以普朗超大型斑岩Cu-Au矿床为例,通过能量约束体系下的热力学方法模拟浅部硅酸质岩浆房中镁铁质岩浆周期性补给过程,定量评估该过程对形成大型斑岩矿床的控制作... 镁铁质岩浆周期性补给于硅酸质岩浆房是形成大型斑岩矿床的关键因素。本文以普朗超大型斑岩Cu-Au矿床为例,通过能量约束体系下的热力学方法模拟浅部硅酸质岩浆房中镁铁质岩浆周期性补给过程,定量评估该过程对形成大型斑岩矿床的控制作用。普朗矿床成矿前粗粒石英闪长玢岩(CQD)和成矿期石英二长斑岩(QMP)复式岩体中均普遍发育镁铁质暗色微粒包体(MMEs),岩相学特征显示斑岩体中角闪石和黑云母发育韵律环带结构或港湾状溶蚀结构以及针柱状磷灰石的存在均指示发生了镁铁质岩浆混合作用。与单一的分离结晶模型(FC)相比,多阶段岩浆补给-分离结晶模型(R3FC)显示,镁铁质岩浆的补给一方面会抑制长石的结晶,另一方面会促进钙铁镁和铁镁等多类型角闪石的形成,并大幅提前黑云母的结晶次序。以硅酸质岩浆物质摩尔分数变化与挥发分之间相关性为参照,获得的熔体H_(2) O、SCSS(硫化物饱和时硅酸盐熔体中的S含量)和Cl溶解度显示,镁铁质岩浆补给将在岩浆演化早期提高而在晚期降低残余熔体H_(2)O含量(0.16%、0.04%、-0.30%),持续提高熔体SCSS(78.74×10^(-6)、94.44×10^(-6)和137.88×10^(-6))和Cl溶解度(0.04%、0.10%和0.20%),但对Cu含量影响有限。结果表明,能量约束体系下的R3FC和FC热力学模型不仅能够合理解释普朗复式斑岩体矿物结构特征,也定量验证了镁铁质岩浆的补给对成矿岩体异常高H_(2) O、S和Cl含量的贡献。 展开更多
关键词 岩浆混合 热力学模拟 挥发分 普朗斑岩cu-au矿床
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富碱斑岩成因与Cu—Mo—Au矿床成矿作用——以金沙江—红河富碱斑岩成矿带为例
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作者 杨航 王蝶 +2 位作者 吴鹏 王峰 陈福川 《地质论评》 CAS CSCD 北大核心 2023年第5期1669-1693,共25页
富碱斑岩因其产出构造环境独特、岩石类型特殊,并常与铜多金属矿床密切相关,而受到广泛关注。笔者等在回顾相关研究进展的基础上,通过岩石成因和构造环境、岩浆性质和岩浆源区等方面的综合研究,探讨了金沙江—红河富碱斑岩成矿带富碱岩... 富碱斑岩因其产出构造环境独特、岩石类型特殊,并常与铜多金属矿床密切相关,而受到广泛关注。笔者等在回顾相关研究进展的基础上,通过岩石成因和构造环境、岩浆性质和岩浆源区等方面的综合研究,探讨了金沙江—红河富碱斑岩成矿带富碱岩浆成矿作用及成岩成矿机制。系统的矿床地质、年代学、地球化学等研究表明:①金沙江—红河富碱斑岩成矿带内成岩成矿作用集中于43~32 Ma,成矿富碱斑岩系始新世—渐新世I型钾玄质花岗斑岩,是印—亚大陆后碰撞背景下大陆内部大型走滑和伸展等动力过程诱导的岩浆活动产物,金沙江和哀牢山—红河断裂的差异走滑运动可能控制了成矿带差异性成岩成矿事件;②成矿带北段以Cu—Mo为主的成矿富碱斑岩源自新元古代下地壳的部分熔融,且源区有富集地幔和亏损地幔物质的加入,而南段以Cu—Au或Cu(—Mo—Au)为主的成矿富碱斑岩源自具有不同程度富集地幔物质加入的新生下地壳的部分熔融;③带内以Cu为主的斑岩—矽卡岩型矿床中成矿富碱斑岩的氧逸度(ΔFMQ)与矿床规模具有正相关性。除受氧逸度控制外,源区高K2O含量有利于斑岩—矽卡岩型Au矿床的形成。该研究对金沙江—红河富碱斑岩成矿带乃至同类矿床研究和找矿勘查具有理论和实际意义。 展开更多
关键词 富碱斑岩 岩石成因 cumoau矿床 岩浆性质 岩浆源区 金沙江—红河成矿带
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Metallogenic mechanisms of super-large Cu and Au deposits in the Dexing region and simulating experiments
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作者 WU Xueyi and WANG Zijiang The State Key Laboratory of Ore Deposit Geochemistry,Institute of Geochemistry,Chinese Academy of Sciences,Guiyang 55002,China 《Chinese Journal Of Geochemistry》 EI CAS 2010年第1期1-14,共14页
Based on the results of previous studies and under the direction of the theory of "ore deposit genesis",the authors made use of high temperature and high pressure experimental facilities and conditions at th... Based on the results of previous studies and under the direction of the theory of "ore deposit genesis",the authors made use of high temperature and high pressure experimental facilities and conditions at the Tectono-geochemistry Research Room under the State Key Laboratory of Ore Deposit Geochemistry,Institute of Geochemistry,Chinese Academy of Sciences,and put the focus on the multi-source of tectonically controlling ore-forming materials,the characteristics of multi-stage and multi-episode hydrothermal activities and mineralization and the characteristics of multi-genesis and multi-ore deposition so as to shed light on the metallogenic mechanisms of super-large Cu and Au deposits.In addition simulating experiments were made on multi-stage and multi-episode tectonic activities and rock and ore deformation,multi-stage and multi-episode tectonic activities and mobilization and migration of ore-forming materials,and multi-stage and multi-episode tectonic activities and superimposition and enrichment of ore-forming materials.The experimental results showed that under the action of multi-stage and multi-episode tectonic stress the deformation and fragmentation of not only rocks and ores have been intensified,and but also the ore-forming materials originally disbursed in the rocks and ores have been mobilized and migrated and superimposed and enriched.The experimental results also provided the scientific experimental data and grounds for deep-going research on the rules of metallogenesis and geneses of super-large ore deposits in the Dexing region,Jiangxi Province. 展开更多
关键词 成矿机制 模拟实验 德兴地区 金矿床 超大型 构造地球化学 成矿物质来源 国家重点实验室
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Genesis and metallogenic characteristic of Dongnan Cu–Mo deposit associated granitoids:LA-ICP-MS zircon U–Pb dating and isotope constraint from Zijinshan ore field in southeastern China 被引量:1
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作者 Qifeng Xie Mingguo Zhai +3 位作者 Yuanfeng Cai Yunpeng Dong Hong Zhang Aifang Xiao 《Acta Geochimica》 EI CAS CSCD 2023年第2期332-345,共14页
The Dongnan Cu–Mo deposit,located in the southeast of the Zijinshan ore field(the largest porphyry–epithermal system in Southeast China),represents the complex magmatic and metallogenesis events in the region.The pe... The Dongnan Cu–Mo deposit,located in the southeast of the Zijinshan ore field(the largest porphyry–epithermal system in Southeast China),represents the complex magmatic and metallogenesis events in the region.The petrogenesis and metallogenesis of granitoids from the deposit are not determined,especially the interactions between ore-bearing(granodiorite porphyry)and barren samples(granodiorite and diorite).In the paper,the whole rock geochemical features shared a similar affinity to the middle-lower content and revealed that they derived from partial melting of the Cathaysian basement with the contribution of mantle materials,even represented that they generated in the plate subduction;LA-ICP-MS zircon U–Pb ages show that these granodiorites,granodioritic porphyry and diorite,were generated during 114–103 Ma.The ore-bearing samples mostly presented ε_(Hf)(t)of negative values(peak value is-4 to-3)with old two-stage Hf model ages(t_(DM)^(2))(peak value is 1.10–1.15 Ga),while the barren sample showed slightly negative ε_(Hf)(t)(peak value is-1 to 0)values with young t_(DM)^(2)(peak value is 1.00–1.05 Ga).The value of zircon Ce^(4+)/Ce^(3+)ratio mostly higher than 450 was first verified for the ore-bearing samples in the Dongnan Cu–Mo deposit,and the values of ore-bearing were found to be higher than those from the barren,which suggests that the ore-bearing formed in more oxidized parental magma with higher oxygen fugacity.Based on the geochemical characteristic of the element and isotope,we concluded that the Early Cretaceous multiphases magmatic activities,low melting temperature and low pressure of pluton,and high oxygen fugacity of zircon,were the favorable conditions for metallogenesis of Dongnan Cu–Mo deposit. 展开更多
关键词 Magmatism METALLOGENESIS Dongnan cumo deposit Zijinshan ore field
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Origin of the Newly Discovered Zhunuo Porphyry Cu-Mo-Au Deposit in the Western Part of the Gangdese Porphyry Copper Belt in the Southern Tibetan Plateau,SW China 被引量:20
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作者 HUANG Yong LI Guangming +4 位作者 DING Jun DAI Jie YAN Guoqiang DONG Suiliang HUANG Hanxiao 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第1期109-134,共26页
The newly discovered Zhunuo porphyry Cu-Mo-Au deposit is located in the western part of the Gangdese porphyry copper belt in southern Tibet, SW China. The granitoid plutons in the Zhunuo region are composed of quartz ... The newly discovered Zhunuo porphyry Cu-Mo-Au deposit is located in the western part of the Gangdese porphyry copper belt in southern Tibet, SW China. The granitoid plutons in the Zhunuo region are composed of quartz diorite porphyry, diorite porphyry, granodiorite porphyry, biotite monzogranite and quartz porphyry. The quartz diorite porphyry yielded zircon U-Pb ages of 51.9±0.7 Ma(Eocene) using LA-ICP-MS, whereas the diorite porphyry, granodiorite porphyry, biotite monzogranite and quartz porphyry yielded ages ranging from 16.2±0.2 to 14.0±0.2 Ma(Miocene). CuMo-Au mineralization is mainly hosted in the Miocene granodiorite porphyry. Samples from all granitoid plutons have geochemical compositions consistent with high-K calc-alkaline series magmatism. The samples display highly fractionated light rare-earth element(REE) distributions and heavy REE distributions with weakly negative Eu anomalies on chondrite-normalized REE patterns. The trace element distributions exhibit positive anomalies for large-ion lithophile elements(Rb, K, U, Th and Pb) and negative anomalies for high-field-strength elements(Nb and Ti) relative to primitive mantlenormalized values. The Eocene quartz diorite porphyry yielded εNd(t) values ranging from-3.6 to-5.2,(-(87)Sr/-(86)Sr)i values in the range 0.7046–0.7063 and initial radiogenic Pb isotopic compositions with ranges of 18.599–18.657 -(206)Pb/-(204)Pb, 15.642–15.673 -(207)Pb/-(204)Pb and 38.956–39.199 -(208)Pb/-(204)Pb. In contrast, the Miocene granitoid plutons yielded ε(Nd)(t) values ranging from-6.1 to-7.3 and(87Sr/86Sr)i values in the range 0.7071–0.7078 with similar Pb isotopic compositions to the Eocene quart diorite. The Sr-Nd-Pb isotopic compositions of the rocks are consistent with formation from magma containing a component of remelted ancient crust. Zircon grains from the Eocene quartz diorite have ε(Hf)(t) values ranging from-5.2 to +0.9 and two-stage Hf model ages ranging from 1.07 to 1.46 Ga, while zircon grains from the Miocene granitoid plutons have ε(Hf)(t) values from-9.9 to +4.2 and two-stage Hf model ages ranging from 1.05–1.73 Ga, indicating that the ancient crustal component likely derives from Paleo- to Mesoproterozoic basement. This source is distinct from that of most porphyry Cu-Mo-Au deposits in the eastern part of the Gangdese porphyry copper belt, which likely originated from juvenile crust. We therefore consider melting of ancient crustal basement to have contributed significantly to the formation Miocene porphyry Cu-Mo-Au deposits in the western part of the Gangdese porphyry copper belt. 展开更多
关键词 Zircon U-Pb dating Sr-Nd-Pb-Hf isotope Zhunuo porphyry cu-mo-au deposit Gangdese porphyry copper belt
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Geology, geochronology and geochemistry of large Duobaoshan Cu-Mo-Au orefield in NE China: Magma genesis and regional tectonic implications 被引量:5
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作者 Wen-yan Cai Ke-yong Wang +3 位作者 Jian Li Li-juan Fu Chun-kit Lai Han-lun Liu 《Geoscience Frontiers》 SCIE CAS CSCD 2021年第1期265-292,共28页
Duobaoshan is the largest porphyry-related Cu-Mo-Au orefield in northeastern(NE)Asia,and hosts a number of large-medium porphyry Cu(PCDs),epithermal Au and Fe-Cu skarn deposits.Formation ages of these deposits,from th... Duobaoshan is the largest porphyry-related Cu-Mo-Au orefield in northeastern(NE)Asia,and hosts a number of large-medium porphyry Cu(PCDs),epithermal Au and Fe-Cu skarn deposits.Formation ages of these deposits,from the oldest(Ordovician)to youngest(Jurassic),have spanned across over 300 Ma.No similar orefields of such size and geological complexity are found in NE Asia,which reflects its metallogenic uniqueness in forming and preserving porphyry-related deposits.In this study,we explore the actual number and timing of magmatic/mineralization phases,their respective magma genesis,fertility,and regional tectonic connection,together with the preservation of PCDs.We present new data on the magmatic/mineralization ages(LA-ICP-MS zircon U-Pb,pyrite and molybdenite Re-Os dating),whole-rock geochemistry,and zircon trace element compositions on four representative deposits in the Duobaoshan orefield,i.e.,Duobaoshan PCD,Tongshan PCD,Sankuanggou Fe-Cu skarn,and Zhengguang epithermal Au deposits,and compiled published ones from these and other mineral occurrences in the orefield.In terms of geochronology,we have newly summarized seven magmatic phases in the orefield:(1)Middle-Late Cambrian(506-491 Ma),(2)Early and Middle Ordovician(485-471 Ma and~462 Ma),(3)Late Ordovician(450-447 Ma),(4)Early Carboniferous and Late-Carboniferous to Early Permian(351-345 and 323-291 Ma),(5)Middle-Late Triassic(244-223 Ma),(6)Early-Middle and Late Jurassic(178-168 Ma and~150 Ma),and(7)Early Cretaceous(~112 Ma).Three of these seven major magmatic phases were coeval with ore formation,including(1)Early Ordovician(485-473 Ma)porphyry-type Cu-Mo-(Au),(2)Early-Middle Triassic(246-229 Ma)porphyry-related epithermal Au-(Cu-Mo),and(3)Early Jurassic(177-173 Ma)Fe-Cu skarn mineralization.Some deposits in the orefield,notably Tongshan and Zhengguang,were likely formed by more than one mineralization events.In terms of geochemistry,ore-causative granitoids in the orefield exhibit adakite-like or adakite-normal arc transitional signatures,but those forming the porphyry-/epithermal-type Cu-Mo-Au mineralization are largely confined to the former.The varying but high Sr/Y,Sm/Yb and La/Yb ratios suggest that the ore-forming magmas were mainly crustal sourced and formed at different depths(clinopyroxene-/amphibole-/garnet-stability fields).The adakite-like suites may have formed by partial melting of the thickened lower crust at 35-40 km(for the Early Ordovician arc)and>40 km(for the Middle-Late Triassic arc)depths.The Early Jurassic Fe-Cu skarn orecausative granitoids show an adakitic-normal arc transitional geochemical affinity.These granitoids were likely formed by partial melting of the juvenile lower crust(35-40 km depth),and subsequently modified by assimilation and fractional crystallization(AFC)processes.In light of the geological,geochronological and geochemical information,we proposed the following tectonometallogenic model for the Duobaoshan orefield.The Ordovician Duobaoshan may have been in a continental arc setting during the subduction of the Paleo-Asian Ocean,and formed the porphyry-related deposits at Duobaoshan,Tongshan and Zhengguang.Subduction may have ceased in the latest Ordovician,and the regional tectonics passed into long subsidence and extension till the latest Carboniferous.This extensional tectonic regime and the Silurian terrestrial-shallow marine sedimentation had likely buried and preserved the Ordovician Duobaoshan magmatic-hydrothermal system.The south-dipping Mongol-Okhotsk Ocean subduction from north of the orefield had generated the Middle-Late Triassic continental arc magmatism and the associated Tongshan PCD and Zhengguang epithermal Au mineralization(which superimposed on the Ordovician PCD system).The Middle Jurassic closure of Mongol-Okhotsk Ocean in the northwestern Amuria block(Erguna terrane),and the accompanying Siberia-Amuria collision,may have placed the Paleo-Pacific subduction system in NE China(including the orefield)under compression,and formed the granodiorite-tonalite and Fe-Cu skarn deposits at Sankuanggou and Xiaoduobaoshan.From the Middle Jurassic,the consecutive accretion of Paleo-Pacific arc terranes(e.g.,Sikhote-Alin and Nadanhada)onto the NE Asian continental margin may have gradually distant the Duobaoshan orefield from the subduction front,and consequently arc-type magmatism and the related mineralization faded.The minor Late Jurassic and Cretaceous unmineralized magmatism in the orefield may have triggered mainly by the far-field extension led by the post-collisional(Siberia-Amuria)gravitational collapse and/or Paleo-Pacific backarc-basin opening. 展开更多
关键词 Duobaoshan cu-mo-au orefield(NE China) Porphyry cu deposit Epithermal au deposit Paleo-Asian Ocean Central Asian Orogenic Belt(CAOB)
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鄂东南地区Cu-Au-Mo-(W)矿床的成矿时代及其成矿地球动力学背景探讨:辉钼矿Re-Os同位素年龄 被引量:102
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作者 谢桂青 毛景文 +5 位作者 李瑞玲 张祖送 赵维超 屈文俊 赵财胜 魏世昆 《矿床地质》 CAS CSCD 北大核心 2006年第1期43-52,共10页
鄂东南地区Cu-Au-Mo-(W)矿床是长江中下游地区金属成矿带的重要组成部分。本文利用Re-Os同位素定年方法对该地区5个典型矿床(丰山洞铜钼金银多金属矿床、阮家湾钨铜钼矿床、千家湾铜金矿床、铜绿山铜铁金钼多金属矿床和铜山口铜钼矿床)... 鄂东南地区Cu-Au-Mo-(W)矿床是长江中下游地区金属成矿带的重要组成部分。本文利用Re-Os同位素定年方法对该地区5个典型矿床(丰山洞铜钼金银多金属矿床、阮家湾钨铜钼矿床、千家湾铜金矿床、铜绿山铜铁金钼多金属矿床和铜山口铜钼矿床)进行了成矿时代的研究,获得其辉钼矿Re-Os同位素年龄分别为(144.0±2.1)Ma、(143.6±1.7)Ma、(137.7±1.7)Ma、(137.8±1.7)^(138.1±1.8)Ma和(143.5±1.7)^(142.3±1.8)Ma,代表各矿床的成矿时代。研究结果表明,鄂东南矿集区内的Cu-Au-Mo-(W)矿床与铜陵、安庆、九瑞矿集区内的矿床几乎是同时形成的,成矿时代可能主要集中于(140±5)Ma,相当于晚侏罗世-早白垩世。在综合已有的岩石学、地球化学和地球物理学资料的基础上,笔者认为,这一成矿事件的深部动力学过程可能是处于中国东部南北向印支期构造域向北东向古太平洋构造域大转折的背景下,与软流圈上涌和玄武质岩浆底侵而导致壳幔同熔有关。 展开更多
关键词 地质学 Re-Os同位索年龄 辉钼矿 cuaumo—(W)矿床 地球动力学背景 鄂东南地区
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青海东昆仑托克妥Cu-Au(Mo)矿床含矿斑岩成因:锆石U-Pb年代学和地球化学约束 被引量:21
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作者 夏锐 卿敏 +1 位作者 王长明 李文良 《吉林大学学报(地球科学版)》 EI CAS CSCD 北大核心 2014年第5期1502-1524,共23页
东昆仑造山带是我国斑岩型矿床的重要成矿区之一。对东昆仑托克妥Cu-Au(Mo)矿床含矿斑岩利用原位LA-ICP-MS锆石U-Pb测年和地球化学分析方法,探讨该地区岩体成因以及岩浆作用与成矿作用的深部约束机制。东昆仑托克妥Cu-Au(Mo)矿床含... 东昆仑造山带是我国斑岩型矿床的重要成矿区之一。对东昆仑托克妥Cu-Au(Mo)矿床含矿斑岩利用原位LA-ICP-MS锆石U-Pb测年和地球化学分析方法,探讨该地区岩体成因以及岩浆作用与成矿作用的深部约束机制。东昆仑托克妥Cu-Au(Mo)矿床含矿二长花岗斑岩年龄为(232.49±0.93)Ma,花岗闪长斑岩年龄为(232.6±1.2)Ma,处于东昆仑碰撞造山阶段。含矿斑岩为二长花岗斑岩和花岗闪长斑岩,具有富硅(w(SiO2)=63.11%~71.78%)、高钾(w(K2O)=2.62%~3.61%)、高镁(w(MgO)=0.52%~1.89%)、低钛(w(TiO2)=0.26%~0.53%)和偏铝质(A/CNK=1.05~1.10)的特征,富集大离子亲石元素Rb、Ba、K和Pb等,亏损高场强元素Nb、Ta、Ti和P,属于高钾钙碱性系列的I型花岗岩。研究认为,托克妥Cu-Au(Mo)矿床形成于大陆动力体制下的伸展背景,与阿尼玛卿洋壳岩石圈北向俯冲碰撞有关的俯冲板片断离有关。 展开更多
关键词 锆石U-Pb年代学 地球化学 斑岩型cu-au(mo)矿床 托克妥 青海
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云南金平铜厂斑岩Cu(Mo-Au)矿床含矿石英正长斑岩地球化学特征及成因机制探讨 被引量:13
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作者 胥磊落 毕献武 +5 位作者 苏文超 齐有强 李亮 陈佑纬 董少花 唐永永 《岩石学报》 SCIE EI CAS CSCD 北大核心 2011年第10期3109-3122,共14页
铜厂斑岩型Cu(Mo-Au)矿床位于金沙江-红河富碱侵入岩带的南段,其含矿的石英正长斑岩侵入体属金沙江-红河富碱侵入岩带的重要组成部分。对铜厂石英正长斑岩开展详细的地球化学研究结果表明,其具有高碱、富钾及准铝质-弱过铝质等特征,属... 铜厂斑岩型Cu(Mo-Au)矿床位于金沙江-红河富碱侵入岩带的南段,其含矿的石英正长斑岩侵入体属金沙江-红河富碱侵入岩带的重要组成部分。对铜厂石英正长斑岩开展详细的地球化学研究结果表明,其具有高碱、富钾及准铝质-弱过铝质等特征,属钾玄岩系列岩石;微量和稀土元素分析表明,铜厂石英正长斑岩明显富集Rb、Ba、Th、U、K、La和Sr等大离子亲石元素,相对亏损Nb、Ta和Ti等高场强元素,具有明显的"TNT"负异常,稀土总量高,明显富集轻稀土而亏损重稀土,轻重稀土分馏显著;(87Sr/86Sr)i为0.707097~0.707138,εNd(t)为-7.1~-6.8,在Sr-Nd同位素相关图上,与EMII来源岩石相似。对比金沙江-红河富碱侵入岩带北段的玉龙含矿的二长花岗斑岩和中段的马厂箐含矿的花岗斑岩的地球化学特征,铜厂含矿斑岩具有高的全碱、微量元素和稀土元素含量、高的(87Sr/86Sr)i值和低的εNd(t)值、不具埃达克质岩属性等特征。综合研究表明,铜厂含矿的石英正长斑岩在成因类型上属于A型花岗岩类,形成于~35Ma的晚碰撞走滑环境且直接起源于EMII地幔的部分熔融。铜厂与玉龙及马厂箐斑岩型Cu(Mo-Au)矿床含矿斑岩地球化学特征和成矿规模存在差异,与源区物质的部分熔融程度和地壳物质的混染程度密切相关。 展开更多
关键词 石英正长斑岩 地球化学特征 成因机制 铜厂斑岩型cu(mo-au)矿床
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Geochronological Constraints on the Haftcheshmeh Porphyry Cu-Mo-Au Ore Deposit, Central Qaradagh Batholith, Arasbaran Metallogenic Belt, Northwest Iran
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作者 Shohreh HASSANPOUR Mohsen MOAZZEN 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第6期2109-2125,共17页
The Haftcheshmeh porphyry Cu-Mo-Au deposit in the Arasbaran metallogenic belt (AMB) of NW Iran contains more than 185 Mt of ore, with a grade ranging from 0.3% to 0.4%. It is hosted within a porphyritic diorite to g... The Haftcheshmeh porphyry Cu-Mo-Au deposit in the Arasbaran metallogenic belt (AMB) of NW Iran contains more than 185 Mt of ore, with a grade ranging from 0.3% to 0.4%. It is hosted within a porphyritic diorite to granodiorite intruded into an older gabbro - diorite intrusion. 40Ar/39Ar analyses of primary magmatic hornblende from the granodiorite porphyry and gabbro - diorite show plateau ages of 26.41 ± 0.59 Ma, with an inverse isochron age of 25.9 ± 1.0 Ma and a plateau age of 27.47 ± 0.17 Ma, with an inverse isochron age of 27.48 ± 0.35 Ma for these two rock types, respectively. Comparing these new age data with those from the nearby Sungun (20.69 ± 0.35 Ma) and Kighal porphyry deposits defines a northwest-southeast Cu-Mo-Au mineralization zone extending for 20 km over the time span of-27 to 20 Ma. Geochemically, Haftcheshmeh rocks are calc-alkaline with high potassium affinities with tectonic setting in relation to volcanic arc setting. Large ion lithophile elements (LILE) such as Th, U and K show enrichment on a primitive mantle normalized diagram (specially Pb), and are depleted in high field strength elements (HFSE) such as Ti and Nb, pointing to a mantle magma source contamination with crustal materials by subducted oceanic crust. 展开更多
关键词 40Ar/39Ar dating Haftcheshmeh porphyry cu-mo deposit Arasbaran Metallogenic Belt Northwest Iran
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岛弧-陆缘弧环境斑岩Cu±Mo±Au矿床勘查:地质标志应用 被引量:5
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作者 卿敏 王文成 +3 位作者 李文博 张乐骏 张岱 韩先菊 《矿床地质》 CAS CSCD 北大核心 2019年第6期1223-1244,共22页
斑岩Cu±Mo±Au矿床(以下简称斑岩铜矿)因其巨大的经济价值而倍受勘查界重视。文章基于国内外,尤其是国外斑岩型铜-金(多金属)矿床最新勘查和研究进展,系统总结了岛弧-陆缘弧环境斑岩铜矿勘查地质标志及其找矿应用实践,包括:①... 斑岩Cu±Mo±Au矿床(以下简称斑岩铜矿)因其巨大的经济价值而倍受勘查界重视。文章基于国内外,尤其是国外斑岩型铜-金(多金属)矿床最新勘查和研究进展,系统总结了岛弧-陆缘弧环境斑岩铜矿勘查地质标志及其找矿应用实践,包括:①大地构造环境分析,宏观上确定斑岩铜矿勘查选区。弧环境斑岩铜矿勘查应重点部署在与大洋俯冲有关的岛弧、陆缘弧等增生造山火山岩浆弧环境;②区域及矿田构造解析,不断缩小找矿靶区。与弧/造山带形成演化应力有关的超壳深大断裂系统控制矿带空间展布,断裂、褶皱、火山(地层)以及岩浆侵入等矿田构造体系控制矿床(体)分布;③岩石化学成分、矿物组成以及岩石结构等含矿斑岩体特征及成矿专属性判断,确定斑岩铜矿找矿目标体;④蚀变分带对成矿斑岩体和富矿区(矿体)指向。从深部到浅部、从核心到外围,钙碱性斑岩铜矿蚀变类型分别为钠-钙(硅酸盐)化、钾(硅酸盐)化、青磐岩化(细化为高温阳起石内带、中温绿帘石中带和低温绿泥石外带)、绢英岩化和泥化;碱性斑岩铜矿蚀变组合为钙-钾化、钾化、内青磐岩化带(阳起石-赤铁矿-绿帘石带)、外青磐岩化带(钠长石-阳起石带)和远青磐岩化带(绿泥石带);⑤岩帽特征对深部斑岩体和潜在富矿中心指向。钙碱性斑岩铜矿形成的岩帽由多孔状(晶洞发育)的硅质核,外侧高级泥化带(石英-明矾石带)和泥化带(高岭石±迪开石带)组成;碱性斑岩铜矿形成以钠长石化为核心、外围(上部)为钠长石-绢云母带的碱性岩帽;⑥脉体和角砾岩(筒)时空分布及其对勘查靶区(位)指向。A、B、D型脉以及C、M型脉等脉体类型、密度以及石英中残余硫化物详细填图是矿区勘查靶区定位和矿石品位预测有效指标之一;3大类、7种主要类型角砾岩在斑岩铜矿中时、空间分布可作为找矿评价的参考标志;⑦矿化元素、金属矿物和矿化类型分带及其找矿相互指示。从矿化中心到外围(浅部),出现[Mo-Cu→Cu-Mo(Au)→Cu-S(Au)]→[Pb-Zn(Au)]→Au-Ag(Mn)→Au(As,Sb)的元素分带,斑铜矿→黄铜矿→黄铁矿硫化物晕分带;斑岩型、矽卡岩型、次浅成环境脉型、高硫型和中硫型浅成低温热液型等矿化类型在斑岩铜矿成矿系统中分布具有显著的规律性,是勘查评价最重要的地质标志;⑧矿体剥蚀与保存,是评价矿田(体)找矿潜力重要因素。 展开更多
关键词 地质学 岛弧-陆缘弧环境 斑岩cu±mo±au矿床 地质标志 勘查应用
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冈底斯东段山南地区第三纪矽卡岩-斑岩Cu-Mo-W(Au)多金属矿床勘查模型及深部找矿意义 被引量:13
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作者 李光明 秦克章 +3 位作者 陈雷 陈金标 范新 琚宜太 《地质与勘探》 CAS CSCD 北大核心 2011年第1期20-30,共11页
冈底斯东段南缘的山南地区分布有努日、明则、克鲁、冲木达和陈坝等中到大型Cu-Mo-W(±Au)矿床,与含矿矽卡岩有关的侵入岩形成于20~30Ma之间,为高钾钙碱性中酸性岩,形成于碰撞晚期构造背景。矿化赋存于下白垩统比马组的碳酸盐岩和... 冈底斯东段南缘的山南地区分布有努日、明则、克鲁、冲木达和陈坝等中到大型Cu-Mo-W(±Au)矿床,与含矿矽卡岩有关的侵入岩形成于20~30Ma之间,为高钾钙碱性中酸性岩,形成于碰撞晚期构造背景。矿化赋存于下白垩统比马组的碳酸盐岩和其它钙质岩石与岩体的外接触带内及斑岩体内,主要矿化类型为矽卡岩型、斑岩型和热液脉型,构成完整的斑岩-矽卡岩、脉状铜-钼-钨±金多金属成矿体系,矿化组合主要为Cu-W-Mo、Mo、Cu-Au和Cu矿化。外接触带的蚀变以矽卡岩化、角岩化为主,而内接触带上主要为岩体的绢云母化、硅化、绿泥石化等,内矽卡岩不发育。山南地区的矽卡岩型铜-钼-钨(金)矿床均赋存于浅部矽卡岩中,在明则矿区矽卡岩型矿化之下发现了斑岩型钼矿化的存在,暗示该区的矽卡岩型矿化可能与冈底斯中带相似,具有统一的斑岩型-矽卡岩型成矿系统,由此建立了该地区的成矿模式,指出了找矿方向。 展开更多
关键词 成矿模型 矽卡岩 斑岩 cu-mo-W(±au) 深部找矿潜力 冈底斯山南地区
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鸡笼山Cu-Au-Mo多金属矿已采中段漏采矿体勘探思路探讨
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作者 马永非 王振亮 +1 位作者 高永璋 胡宁 《地质找矿论丛》 CAS CSCD 2012年第1期29-36,共8页
鸡笼山Cu-Au-Mo多金属矿床是鄂东南矿集区丰山矿田中一个典型的夕卡岩型、斑岩型铜金钼多金属矿,矿体主要赋存于燕山期中酸性侵入岩与大冶组碳酸盐岩建造的接触带及附近,受地层、构造、岩浆岩的联合控制。文章讨论了矿山已采中段中构造... 鸡笼山Cu-Au-Mo多金属矿床是鄂东南矿集区丰山矿田中一个典型的夕卡岩型、斑岩型铜金钼多金属矿,矿体主要赋存于燕山期中酸性侵入岩与大冶组碳酸盐岩建造的接触带及附近,受地层、构造、岩浆岩的联合控制。文章讨论了矿山已采中段中构造错失矿体、边部矿体及盲矿体等漏采矿体的勘探思路、方法及实践,运用成矿规律分析-坑道地质调查-采样分析-重点靶区圈定-坑内钻探验证的工作程序得以实施。 展开更多
关键词 鸡笼山cu-au-mo多金属矿 接触带 构造错失矿体 相关性指数 鄂东南
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壳幔岩浆作用与陆内环境斑岩Cu±Mo±Au矿床成矿
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作者 马星华 陈斌 《矿床地质》 CAS CSCD 北大核心 2012年第S1期325-326,共2页
斑岩型矿床是Cu、Mo、Au等金属的重要来源,其主要产于两种构造体制:一是与大洋板片俯冲相关的岛弧和陆缘弧环境,以环太平洋斑岩成矿带为典型代表(Sillitoe,1972;Sawkins,1990;Cooke et al.,2005);二是产于陆内环境(碰撞造山带或大陆板... 斑岩型矿床是Cu、Mo、Au等金属的重要来源,其主要产于两种构造体制:一是与大洋板片俯冲相关的岛弧和陆缘弧环境,以环太平洋斑岩成矿带为典型代表(Sillitoe,1972;Sawkins,1990;Cooke et al.,2005);二是产于陆内环境(碰撞造山带或大陆板块内部),以特提斯斑岩成矿带为典型代表(芮宗瑶等,1984;2006;Hou et al.,2003;Qu et al.,2004)。 展开更多
关键词 斑岩 流体 侵入岩 斑岩矿床 斑岩型矿床 au 岩浆作用 地质作用 下地壳 壳幔 成矿 mo cu
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冈底斯东段南部第三纪夕卡岩型Cu-Au±Mo矿床地质特征、矿物组合及其深部找矿意义 被引量:43
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作者 李光明 秦克章 +7 位作者 丁奎首 李金祥 王少怀 江善元 林金灯 江化寨 方树元 张兴春 《地质学报》 EI CAS CSCD 北大核心 2006年第9期1407-1421,T0003,T0004,共17页
在冈底斯Cu—Au成矿带东南部的山南地区分布有克鲁、劣布、冲木达和陈坝等中到大型Cu—Au±Mo矿床。与含铜夕卡岩有关的侵入岩形成于20~30Ma之间,为高钾钙碱性中酸性浅成岩,形成于印-亚大陆碰撞晚期构造背景。矿化赋存于岩体外... 在冈底斯Cu—Au成矿带东南部的山南地区分布有克鲁、劣布、冲木达和陈坝等中到大型Cu—Au±Mo矿床。与含铜夕卡岩有关的侵入岩形成于20~30Ma之间,为高钾钙碱性中酸性浅成岩,形成于印-亚大陆碰撞晚期构造背景。矿化赋存于岩体外接触带下白垩统比马组的碳酸盐岩和其他钙质岩石内。主要矿化类型为夕卡岩型、热液脉型和斑岩型,构成完整的斑岩-夕卡岩、热液脉状铜-金(钼)多金属成矿体系,矿化组合主要为Cu—Mo、Cu—Au和Cu。外接触带的蚀变以夕卡岩化、角岩化为主,而内接触带上主要为岩体的绢云母化、硅化、绿泥石化等,内夕卡岩不发育。夕卡岩化可分为早期夕卡岩和晚期含水硅酸盐阶段。早期夕卡岩主要为钙铁、钙铝石榴石夕卡岩,含少量透辉石、磁铁矿等,晚期的含水硅酸盐阶段主要是绿泥石-绿帘石、方解石、石英交代石榴石夕卡岩,并伴随含铜硫化物的沉淀,为本区夕卡岩型铜矿形成的主要阶段。含铜硫化物以富含斑铜矿为特征,Au、Ag主要赋存于斑铜矿、硫铋铜矿及黄铜矿等矿物中。山南地区的夕卡岩型铜-金矿床均为浅部夕卡岩,在某些夕卡岩型铜金矿床中显示了斑岩型矿化的存在,可能暗示该区的夕卡岩型矿化与北带相似,具有统一的斑岩型-夕卡岩型成矿系统。因此本区具有在深部寻找斑岩型金矿的可能性,而且找矿潜力较大。 展开更多
关键词 矿床地质 浅部夕卡岩 矿物组合 深部斑岩铜矿找矿 冈底斯山南地区
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云南省马厂箐Cu-Mo-Au矿床花岗斑岩成矿地质证据 被引量:5
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作者 郭晓东 王治华 +3 位作者 王欣 刘烊 周晓锋 王绍明 《矿床地质》 CAS CSCD 北大核心 2010年第5期890-902,共13页
马厂箐铜钼(金)矿床是金沙江-哀牢山构造带内与喜马拉雅期富碱侵入岩有关的典型的斑岩型矿床之一,其铜钼(金)矿(化)体在空间上与花岗斑岩紧密相伴,且主要位于花岗斑岩脉(体)的上、下盘。花岗斑岩内发育有具斑岩型矿化特征的细网脉状、... 马厂箐铜钼(金)矿床是金沙江-哀牢山构造带内与喜马拉雅期富碱侵入岩有关的典型的斑岩型矿床之一,其铜钼(金)矿(化)体在空间上与花岗斑岩紧密相伴,且主要位于花岗斑岩脉(体)的上、下盘。花岗斑岩内发育有具斑岩型矿化特征的细网脉状、浸染状矿化,其上盘的(似)斑状花岗岩和下盘的向阳组围岩内均发育有脉状、细脉状矿化,且总体表现出向接触带附近花岗斑岩倾斜的特点。(似)斑状花岗岩中的矿化脉体北倾,围岩地层中的矿化脉体南倾。花岗斑岩脉(体)上、下盘的矿化脉体表现出越靠近接触带(花岗斑岩脉体)蚀变矿化越强、矿化体的规模越大、出现的频率越高,而远离接触带(花岗斑岩脉体)则蚀变矿化越弱、矿化体的规模越小、出现的频率越低。铜钼(金)的成矿时代与花岗斑岩的成岩时代较为一致,其同位素年龄集中在34~36Ma。花岗斑岩含有源于富集地幔的镁铁质暗色微粒包体,并发育浸染状的黄铁矿化、磁铁矿化。暗色微粒包体及其寄主岩(花岗斑岩)具有同源性,且与壳-幔岩混合作用及成分分异有关,具有提供成矿物质、成矿流体的基础。因此,该区的铜钼(金)成矿与花岗斑岩有关。 展开更多
关键词 地质学 花岗斑岩 成矿证据 斑岩型铜钼金矿床 马厂箐 云南
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云南省马厂箐Cu-Mo-Au多金属矿集区成矿系统 被引量:6
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作者 郭晓东 牛翠祎 +2 位作者 王治华 王梁 夏锐 《矿床地质》 CAS CSCD 北大核心 2012年第3期615-628,共14页
马厂箐地区是滇西成矿带内一个典型的与喜马拉雅期富碱侵入岩有关的斑岩型铜-钼-金多金属矿集区,发育有斑岩型钼铜、接触交代型铜钼(金)和热液脉型金银铅锌等多种类型矿化。其矿化和蚀变类型及成矿元素组合,在空间上具有明显的以岩体为... 马厂箐地区是滇西成矿带内一个典型的与喜马拉雅期富碱侵入岩有关的斑岩型铜-钼-金多金属矿集区,发育有斑岩型钼铜、接触交代型铜钼(金)和热液脉型金银铅锌等多种类型矿化。其矿化和蚀变类型及成矿元素组合,在空间上具有明显的以岩体为中心的分带性;岩浆活动与铜钼金成矿作用具有同时性。这3种矿化类型的形成受控于马厂箐斑岩岩浆系统,该岩浆系统提供了成矿的物质、流体和动力。文章在分析成矿证据的基础上,通过对成矿系统结构的剖析,认为正是马厂箐岩体所提供的热动力条件促使从岩浆体中分异出来的成矿流体由岩体向外运移,随着岩体内构造裂隙、接触带构造以及围岩中破碎带等成矿物理化学条件的改变,在不同的边界条件下发生了不同性质的成矿作用,形成了不同的蚀变和矿化类型及成矿元素组合,总体显示出,随着热液成矿作用的进行,矿化由斑岩体向接触带和围岩推进,成矿由高温向低温的演化趋势。马厂箐铜-钼-金多金属矿集区成矿系统的建立,将对滇西成矿带内其他矿集区的成矿理论研究和找矿勘查实践具有借鉴和指导意义。 展开更多
关键词 地质学 地球化学 成矿系统 富碱斑岩岩浆 马厂箐铜钼金矿集区 云南省
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Cu-Mo-Pb-Zn-Ag-Au成矿系统的地质特征及其研究意义 被引量:14
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作者 毛德宝 赵更新 +3 位作者 席忠 钟长汀 陈志宏 胡小蝶 《地质调查与研究》 2003年第4期213-220,共8页
CuˉMoˉPbˉZnVAgˉAu成矿系统是最常见的热液矿床的成矿元素组合之一,在世界上广泛分布。其成矿作用通常表现为不同矿种和不同类型的矿床在一定的范围内共生组合,构成成矿系列,并具有较好的分带性。成矿系统的形成多与高钾钙碱性岩浆... CuˉMoˉPbˉZnVAgˉAu成矿系统是最常见的热液矿床的成矿元素组合之一,在世界上广泛分布。其成矿作用通常表现为不同矿种和不同类型的矿床在一定的范围内共生组合,构成成矿系列,并具有较好的分带性。成矿系统的形成多与高钾钙碱性岩浆作用有关,是同一成矿流体体系随时间演化或不同成矿流体体系在同一空间叠加的产物。该成矿系统的研究对于深入了解成矿作用的动力学和矿产资源评价都具有重要的意义。 展开更多
关键词 成矿系统 成矿作用 矿产资源评价
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