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为了评价内蒙古靠山屯勘查区银铅多金属矿床找矿前景,对该勘查区进行了地质、航磁激电和化探综合找矿信息的提取。结果表明,靠山屯银铅多金属矿床是以银为主,伴生有铅和锌的中型矿床,产于早白垩世钾长花岗岩和晚侏罗世凝灰岩内。蚀变和矿化特征显示该矿床成因类型为中温热液脉型。上侏罗统玛尼吐组火山岩富含Pb、Ag等成矿元素,是有利的容矿围岩,产于火山岩和岩体接触带附近的断裂构造是有利的控矿构造,绢英岩化和硅化是近矿的围岩蚀变。成矿后区内存在差异性抬升,中部和北东部矿化以方铅矿和共伴生银矿物为主,矿床保存条件好,如Ⅱ和Ⅲ号蚀变带。南西部以闪锌矿(含黄铜矿)为主,矿床剥蚀较大,如Ⅰ号蚀变带,中高极化、低阻或中高阻、低-中高磁异常的物探异常总体为矿致异常的特征。Pb、Zn、Ag异常套合好,Pb和Ag异常面积大,强度高的异常KHt4-11分布区矿床保存条件较好,找矿前景较好。Zn异常面积大,外侧的Pb和Ag异常面积小的异常KHt1 KHt3分布区矿床剥蚀较大,找矿前景较差。 相似文献
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个旧(西)花岗岩体因其东侧产有以锡铜为主的超大型锡多金属矿床而被诸多地学家所关注,以往其研究重点多以铜、锡矿为主,对个旧(西)花岗岩体外围其它铅、锌、铜、钼、金、银等多金属矿床(点)的关注甚少.随着滇南地区地质找矿、矿业开发和多金属成矿规律总结等工作的进一步加深,在个旧(西)花岗岩体外围圈出了大量有价值的异常,并发现了多处铅、锌、铜、钼等多金属矿床(点).综合矿化信息显示,岩体外围环形的多金属矿带是一个值得进行更深入研究的矿集区.本文对个旧(西)花岗岩体外围铅锌矿床(点)的成矿规律进行探讨,为该区铅锌多金属矿找矿及矿业开发工作提供线索和思路. 相似文献
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根据安图县三岔地区的土壤地球化学测量结果、R型聚类分析、相关性矩阵分析及优选异常查证,确定区内铅矿化体为受北西向张性断裂构造控制。土壤聚类分析表明,Au元素呈独立地球化学行为,Cu-Ag-Pb-Zn具有密切的相关性,代表了热液银、铅、锌等多金属异常元素组合,特别是Pb-Zn元素组合相关系数达0.518 1,表明二者地球化学行为的相似性,暗示了两种元素内在共生组合关系的存在。优选Au、Ag、Pb异常进行了详细的查证,发现了一些Cu、Pb矿化体,预示了良好的找矿前景。 相似文献
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研究区位于格陵兰东部成矿带Jameson Land盆地,盆地内已发现铜、铅、锌等多种矿产资源。对研究区矿床地质特征研究表明,铜、铅、锌等金属地表矿化特征明显、矿化强度大、分布范围广、矿化层位厚度大,具多赋矿层位、多矿化类型的特点,且矿化主要受上二叠统Foldvik Creek组(FC组)灰岩和下三叠统Pingo Dal组(PD组)砂砾岩控制,具备形成大型甚至超大型Cu-Pb-Zn矿床的条件,找矿潜力巨大。在详细研究矿体地质特征、矿石特征的基础上,对矿床成因进行了讨论,为研究区找矿提供了理论依据和思路。 相似文献
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生金皋金矿床是以金为主,银、锌、铅均具一定工业价值的多金属矿床。产于太古宇建平群小塔子组片麻岩中,受生金皋断裂控制,矿化和矿化产于近SN向断裂向,与矿化有关的热液蚀变有绢云母化、硅化、黄铁矿化、钠和石化等。 相似文献
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枪口南银多金属矿位于东昆仑多金属成矿带东段,1:2.5万沟系沉积物测量在矿区圈定出以Ag、Cu、Pb、Zn、Mo为主的综合异常4处.经异常查证,圈出9条矿化带,21条矿(化)体,取得了较好的找矿效果.通过进一步异常查证,在AS1、AS2异常中Ⅶ、Ⅷ和Ⅸ号矿带内圈出银、银铅锌以及银金砷异常高值段,展示出了异常区具较好的银多金属矿的找矿远景.AS3异常内的Ⅳ号含矿花岗斑岩体深部发现多条铜多金属矿(化)体,且发育较强的围岩蚀变,显示具有较好的斑岩型铜多金属矿找矿潜力.AS4异常内Ⅰ-Ⅲ号金矿化带具较好的金多金属矿找矿潜力.本区具有优越的成矿地质条件,化探异常发育,且已发现了较好的银多金属矿找矿信息,充分展示出本区具较大的找矿潜力. 相似文献
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以1∶10000物化探异常查证成果为基础,依据内蒙古大兴安岭南段成矿带的多金属矿成矿规律,详细分析了五岔沟地区的物化探异常特征,总结出了两种典型的物化探异常类型,一种以Pb、Zn、Ag为主要成矿元素,元素组合为Cu、Pb、Zn、Ag、Bi、Sn、Au、As、Sb、Hg,一般以低阻高极化为特征;另一种以Mo为主要成矿元素... 相似文献
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《International Geology Review》2012,54(9):1031-1051
The geotectonic units of Zhejiang Province include the Yangtze Plate in the northwest juxtaposed against the South China fold system in the southeast along the Jiangshan–Shaoxing fault. The South China fold system is further divided into the Chencai–Suichang uplift belt and the Wenzhou–Linhai geotectogene belt, whose boundary is the Yuyao–Lishui fault. The corresponding metallogenic belts are the Mo–Au(–Pb–Zn–Cu) metallogenic belt in northwest Zhejiang, the Chencai–Suichang Au–Ag–Pb–Zn–Mo metallogenic belt, and the coastal Ag–Pb–Zn–Mo–Au metallogenic belt. The main Mesozoic metal ore deposits include epithermal Au–Ag(Ag), hydrothermal vein-type Ag–Pb–Zn(Cu), and porphyry–skarn-type Mo and vein-type Mo deposits. These ore bodies are related to the Mesozoic volcanic-intrusive structure: the epithermal Au–Ag(Ag) deposits are represented by the Zhilingtou Au–Ag deposit and Houan Ag deposit and their veins are controlled by volcanic structure; the hydrothermal vein-type Ag–Pb–Zn deposits are represented by the Dalingkou Ag–Pb–Zn deposit and also controlled by volcanic structure; and the porphyry–skarn-type Mo deposits are represented by the Tongcun Mo deposit and the vein-type Mo deposits are represented by the Shipingchuan Mo deposit, all of which are related to granite porphyries. These metal ore deposits have close spatio-temporal relationships with each other; both the epithermal Au–Ag(Ag) deposits and the hydrothermal vein-type Ag–Pb–Zn deposits exhibit vertical zonations of the metallic elements and form a Mo–Pb–Zn–Au–Ag metallogenetic system. These Jurassic–Cretaceous deposits may be products of tectonic-volcanic-intrusive magmatic activities during the westward subduction of the Pacific Plate. Favourable metallogenetic conditions and breakthroughs in the recent prospecting show that there is great resource potential for porphyry-type deposits (Mo, Cu) in Zhejiang Province. 相似文献
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WANG Xiaohu SONG Yucai ZHANG Hongrui LIU Yingchao PAN Xiaofei GUO Tao 《《地质学报》英文版》2018,92(4):1486-1507
The Lanping Basin in the Nujiang‐Lancangjiang‐Jinshajiang (the Sanjiang) area of northeastern margin of the Tibetan Plateau is an important part of eastern Tethyan metallogenic domain. This basin hosts a number of large unique sediment‐hosted Pb‐Zn polymetallic deposits or ore districts, such as the Baiyangping ore concentration area which is one of the representative ore district. The Baiyangping ore concentration area can be divided into the east and west ore belts, which were formed in a folded tectogene of the India‐Asia continental collisional setting and was controlled by a large reverse fault. Field observations reveal that the Mesozoic and Cenozoic sedimentary strata were outcropped in the mining area, and that the orebodies are obviously controlled by faults and hosted in sandstone and carbonate rocks. However, the ore‐forming elements in the east ore belt are mainly Pb‐Zn‐Sr‐Ag, while Pb‐Zn‐Ag‐Cu‐Co elements are dominant in the west ore belt. Comparative analysis of the C‐O‐Sr‐S‐Pb isotopic compositions suggest that both ore belts had a homogeneous carbon source, and the carbon in hydrothermal calcite is derived from the dissolution of carbonate rock strata; the ore‐forming fluids were originated from formation water and precipitate water, which belonged to basin brine fluid system; sulfur was from organic thermal chemical sulfate reduction and biological sulfate reduction; the metal mineralization material was from sedimentary strata and basement, but the difference of the material source of the basement and the strata and the superimposed mineralization of the west ore belt resulted in the difference of metallogenic elements between the eastern and western metallogenic belts. The Pb‐Zn mineralization age of both ore belts was contemporary and formed in the same metallogenetic event. Both thrust formed at the same time and occurred at the Early Oligocene, which is consistent with the age constrained by field geological relationship. 相似文献
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陕西商洛马角寺钼矿位于小秦岭多金属成矿带西部,矿区出露元古界至新生界地层,区内褶皱和断裂较为发育。1∶50 000水系沉积物测量在本区圈出Mo、Pb、Zn等元素异常,指示有多金属找矿前景。在区内开展1∶10 000土壤测量工作,并对取得的大量数据进行统计分析,研究总结矿区土壤地球化学特征,显示本区Mo、(Au)为成矿元素,Ag、Pb、Zn等为指示元素;同时,在区内再次圈出Mo、Ag、Pb、Zn等元素异常,异常再现性较好。运用1∶2 000地球化学剖面对土壤异常进行查证,发现一条含钼矿化构造带(Q1),从中圈出Mo矿体多条。综合研究1∶10 000地球化学特征显示,本区仍有Mo、(Au)矿床的找矿前景。 相似文献
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柞水—山阳多金属矿集区成矿条件及找矿潜力分析 总被引:11,自引:0,他引:11
柞水-山阳盆地发育热水沉积岩和复理石建造,断裂构造和岩浆活动强烈,成矿条件优越,是重要的多金属矿集区.目前,在泥盆系碳酸盐岩建造内发现了Ag—Pb-Cu—Zn矿床,但众多化探异常尚未评价,故找矿潜力较大。笔者认为.在银洞子-桐木沟菱铁银铅锌铜金成矿带、东川-小川铅锌铜金成矿带以及沿山阳-凤镇断裂发育的铜金镍钼(钴)成矿带内,具有寻找热水沉积(改造)型多金属矿、钠长角砾岩型金矿、沉积变质型磁铁矿床及斑岩一矽卡岩型铜(钼)矿床的前景。其中.凤镇断裂北侧干沟-万丈沟-双元沟-土地沟一带、南侧李家砭-冷水沟-张氏沟口一带和穆家庄-肖台地段应是找铜的首选靶区:穆家庄铜矿和银洞子银铅多金属矿等矿床的外围和深部也具有寻找新矿床或矿体的潜力。 相似文献
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枪口南银多金属矿床地处东昆仑多金属成矿带东段,枪口—哈龙休玛海西-燕山期铁、银、铅、锌、铜、金、钼成矿亚带部分,成矿地质条件优越。枪口南银多金属矿区目前已圈定9条矿化带,21个矿体,主要矿种有金、银、铜、铅、锌、钼等,矿石类型主要为构造热液(脉)型铜铅锌银矿石、构造蚀变岩型金矿石。枪口南矿区构造-岩浆活动强烈,印支期—燕山期构造岩浆活动为矿区成矿提供了热源、成矿物质,区内NE向断裂控制区内金、铜、铅锌等矿体的产出,NW向断裂组控制着区内金、银矿(化)体。NW向断裂组,是区内重要控矿构造;区内中部发现的Ⅳ号含矿斑岩体,具有斑岩型矿床蚀变特征,显示其具有斑岩成矿条件。枪口南银多金属矿床成因有构造热液(脉)型、构造蚀变岩型和斑岩型。 相似文献