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1.
宝山铅锌矿床是湘南地区代表性矿床之一。宝山铅锌矿床的成矿作用与156~158 Ma的宝山花岗闪长斑岩密切相关。花岗闪长斑岩主要由古老地壳部分熔融而成。为确定成矿物质来源,文章系统研究了宝山铅锌矿床的硫、铅、碳、氧同位素组成特征。矿床中硫化物黄铁矿、闪锌矿、方铅矿的δ34S值呈狭窄的塔式分布,变化在-2.17‰~6.46‰之间,平均值为3.13‰。δ34S值总体表现为δ34S黄铁矿δ34S闪锌矿δ34S方铅矿,表明硫同位素分馏基本达到了平衡。矿石、花岗闪长斑岩和赋矿地层硫同位素对比研究表明,矿石中的硫主要由岩浆分异演化而来,岩浆中的硫主要来自古老地壳。矿石206Pb/204Pb、207Pb/204Pb和208Pb/204Pb比值分别为18.188~18.844、15.661~15.843和38.562~39.912,赋矿地层206Pb/204Pb、207Pb/204Pb和208Pb/204Pb比值分别为18.268~19.166、15.620~5.721和38.364~39.952。矿石铅同位素组成比地层中的更富放射性成因铅,矿石中部分铅来自宝山花岗闪长质岩浆,在成矿流体运移过程中有部分地层铅参与了成矿,岩浆中的铅主要来自古老地壳。热液方解石的碳、氧同位素组成介于岩浆和赋矿碳酸盐岩的碳、氧同位素之间,主要是由于岩浆流体和碳酸盐岩不同比例的水岩反应所致,测水组有机碳的加入造成了部分热液方解石δ13CPDB值偏低。  相似文献   

2.
水竹岭铜-铁-金-硫矿床发育上部层状矿体和下部脉状矿体。上部层状矿石重晶石δ34S值为+19.9‰。上部层状矿石黄铁矿δ34S值为+0.9~+5.8‰,下部脉状矿石黄铁矿δ34S值为+3.2~+6.4‰。下部脉状矿体中方解石的δ18O值为+13.3‰,δ13C值为1.2‰,上部层状矿石白云石的δ18O值为+14.1‰,δ13C值为2.2‰。下部脉状矿石和矿化岩石中黄铁矿的206Pb/204Pb、207Pb/204Pb、208Pb/204Pb平均值分别为18.2241、15.5245和38.2289;上部层状矿石中黄铁矿的206Pb/204Pb、207Pb/204Pb、208Pb/204Pb平均值分别为18.0692、15.5020和38.1232。从下部脉状矿石到上部层状矿石,黄铁矿的δ34S值、206Pb/204Pb、207Pb/204Pb、208Pb/204Pb平均值逐渐降低,δ18O值和δ13C值等逐渐增高。地质和同位素地球化学特征反映水竹岭铜-铁-金-硫矿床为海底热水喷流沉积成因,揭示了块状硫化物矿床的二元结构性。  相似文献   

3.
为明确西华山钨矿床成矿物质的来源,本文以矿床中的硫化物和钾长石为研究对象,通过硫化物中硫、铅同位素的研究,对矿床成矿物质来源进行探讨。结果表明,矿石中黄铁矿δ34S值为-2.1‰~0.4‰,辉钼矿δ34S值为4‰~7.9‰,硫主要来源于岩浆。辉钼矿、黄铁矿、钾长石的206 Pb/204 Pb值分别为18.718~18.849、18.640~18.745、18.698~18.792;207Pb/204Pb值分别为15.762~15.770、15.704~15.747、15.697~15.724;208 Pb/204 Pb值分别为39.094~39.134、38.902~39.056、38.904~39.012。由此判断矿床中矿石铅与岩石铅同位素组成具有同源关系,矿石铅主要来自与岩浆作用有关的上地壳;成矿物质来源于上地壳重熔形成的花岗岩浆,即上地壳岩浆侵位,为成矿作用提供部分成矿物质,同时也暗示成矿物质是由体现壳源特征的西华山复式岩体提供。  相似文献   

4.
越南西北部O Quy Ho钼矿床为范士版成矿带的典型钼矿床之一,矿体以脉状形式就位于中生代花岗岩中,辉钼矿主要赋存于石英脉及长石石英脉中,与黄铁矿、黄铜矿、磁铁矿等共生。8件样品硫同位素分析结果表明,δ34S介于0.14‰~3.34‰之间,平均值为1.53‰,表明成矿物质具有深源特征。黄铁矿的206Pb/204Pb范围为18.583~22.355,207Pb/204Pb变化于15.632~15.812之间,208Pb/204Pb变化于38.989~39.199;辉钼矿的206Pb/204Pb、207Pb/204Pb、208Pb/204Pb分别为18.686~18.737、15.655~15.660和39.081~39.082,与范士版含角闪石花岗斑岩具有成因联系。辉钼矿Re-Os同位素等时线测年获得了(36±1)Ma的年龄,该年龄与金沙江-红河新生代斑岩铜钼矿成矿带岩浆-成矿活动的年龄一致,提出O Quy Ho钼矿床为金沙江-红河新生代斑岩铜钼矿带的一部分。  相似文献   

5.
李毅  徐文忻  刘悟辉  李蘅  戴塔根 《地球学报》2005,26(Z1):168-170
对滇、黔、桂微细浸染型金矿硫化物进行硫、铅同位素测定,获得马雄、浪全、金牙、高龙、堂上等矿床206Pb/204Pb比值为17.636~19.530;207Pb/204Pb比值为15.451~16.092;208Pb/204Pb比值为37.871~40.854。用等时线斜率与铅同位素曲线关系剖析,矿床形成年代晚于矿床赋存层位,铅来源较为复杂。金牙矿床硫化物的δ34S值为15.3‰~15.6‰;板其矿床硫化物的δ34S值为-1.5‰~14.7‰;柴木函矿床硫化物的δ34S值为0.2‰~18.0‰;戈塘矿床硫化物的δ34S值为-29.2‰~5.0‰;丫他矿床硫化物的δ34S值为5.5‰~8.0‰,获得矿床有单一岩浆来源,单一海水(地层)来源和混合来源3种类型矿床。  相似文献   

6.
湖南常宁康家湾铅锌矿床同位素地球化学研究   总被引:2,自引:0,他引:2  
在详细的野外地质工作基础上,本文通过矿石硫、铅同位素,含矿石英的氢、氧同位素,以及含矿方解石的碳、氧同位素组成等综合研究,探讨康家湾铅锌矿床成矿物质来源和形成机制。结果显示矿石的δ34SVCDT介于-2.71‰~-0.90‰之间,均值为-1.42‰,表明矿石中的硫主要来自深部岩浆,可能受到地壳物质混染。矿石铅同位素206Pb/204Pb介于18.227~18.573之间,均值为18.485;207Pb/204Pb介于15.661~15.695之间,均值为15.682;208Pb/204Pb介于38.673~38.964之间,均值为38.820;铅同位素组成比较均一,具有放射铅的特征,表明成矿物质主要来源地壳,混有少量地幔物质。含矿石英中的δDSMOW介于-68.00‰~﹣60.00‰之间,均值为-64.00‰;δ18OH2O介于-7.25‰~-5.17‰之间,均值为-6.23‰;氢、氧同位素组成研究显示,成矿流体早期以岩浆水为主,后期混有大气降水。含矿方解石中的δC VPDB介于-0.50‰~0.30‰之间,均值为0‰;δ18OSMOW介于14.10‰~16.80‰之间,均值为14.40‰;含矿方解石中的碳、氧同位素与地层灰岩中的碳、氧同位素值大致相近,表明矿石中碳主要来源于晚古生代地层中的灰岩。以上研究表明,康家湾铅锌矿床的成矿物质主要来自地壳,混有少量地幔物质,混合作用可能是矿床形成的主要机制。  相似文献   

7.
乌日尼图钨钼矿位于内蒙古苏尼特左旗境内,是近几年在该区新发现较大规模的钨钼矿床。钨钼矿体主要产于燕山期花岗岩体的内外接触带附近,以细脉状矿化类型为主。同位素测试结果表明:δ34SV-CDT值范围为0.6‰~4.1‰,组成较为稳定;显示钨钼矿体的形成与岩浆作用密切相关,硫可能主要来自岩浆源。矿石样品208Pb/204Pb值范围为38.115~38.353,207Pb/204Pb值范围为15.528~15.591,206Pb/204Pb值范围为18.375~18.528;铅构造模式图解和其参数综合分析表明成矿与岩浆作用密切相关,成矿物质来源于上地壳与地幔的混合,具有壳幔混合特点。热液方解石δ13CPDB=-8.63‰~-6.41‰,δ18OSMOW=-1.49‰~8.72‰,表明热液矿物方解石是2个阶段成矿作用的产物,早期成矿流体碳主要来源于岩浆;成矿作用后期有大气降水的加入。  相似文献   

8.
皖南东源钨钼矿成矿流体特征和成矿物质来源   总被引:2,自引:0,他引:2       下载免费PDF全文
皖南东源钨钼矿位于安徽省祁门东源境内,是该地区目前已知规模最大的钨钼矿床。钨钼矿体主要产于花岗闪长斑岩体内及其接触带附近,以细脉浸染状和浸染状矿化类型为主。流体包裹体地球化学研究表明,气相成分主要为H2O和CO2,含少量C2H4、N2、CH4等,液相成分以Ca2+、Na+、SO24-、Cl-为主,K+、F-次之,并含少量Mg2+、NO3-、Br-。矿床氢、氧、硫、铅稳定同位素组成研究表明,流体包裹体中水的δ18O水的含量范围为-0.498‰~3.102‰,δD水的含量范围为-85‰~-66‰,成矿流体主要为岩浆水与大气降水的混合物;黄铁矿的δ34SV-CDT值介于2.6‰~5.8‰,硫可能是由成矿流体从东源花岗闪长岩体中淋滤而来;铅同位素变化范围小,其来源具有明显的混合特征。成矿流体在成矿过程中,经历了不混溶或沸腾作用及其与被加热的大气降水的混合作用,改变了成矿流体系统的物理化学条件,引起体系含W和Mo络合物的不稳定,从而造成大量的成矿物质析出、沉淀,富集成矿。  相似文献   

9.
豫北安林地区接触交代型(矽卡岩型)铁矿是典型的邯邢式铁矿,其成矿物质来源以及与膏岩层的关系缺少有效的研究。通过选取其中典型矿床矿石中的黄铁矿进行了S、Pb同位素测试,结果表明,矿石中硫化物的δ34S值为11.8‰~16.2‰,极差为4.4‰,平均值为13.75‰,介于岩浆硫与沉积膏盐硫之间,表明成矿物质既具有岩浆源硫特征,又接受了地下热水及膏盐层中的部分34S混入。矿石矿物的铅同位素组成变化较小,206Pb/204Pb比值为170.57~185.37,平均值为175.46;207Pb/204Pb比值为153.43~15.582,平均值为15.440;208Pb/204Pb比值为37.053~38.398,平均值为37.601。铅同位素组成与特征参数(Δβ与Δγ)显示,矿床中的铅主要来源于深部幔源,与岩浆作用有关,并有下地壳铅的混入。矿床的成矿作用与燕山期岩浆侵入岩活动存在较密切的关系,广泛分布的膏盐层为矿床的形成提供了有利条件。  相似文献   

10.
拜仁达坝和维拉斯托是近年来在内蒙古东部地区发现的2个大型银多金属矿床,文章对其开展了硫和铅同位素研究。结果表明,拜仁达坝矿床矿石中硫化物的δ34S值为-4.0‰~+1.6‰,维拉斯托矿床矿石中硫化物的δ34S值为-0.8‰~+2.0‰,与岩浆热液型矿床的硫同位素值接近,表明这2个矿床中的硫主要来自岩浆。拜仁达坝矿区43件金属硫化物的206Pb/204Pb值为18.333~18.515,207Pb/204Pb值为15.532~15.656,208Pb/204Pb值为38.057~38.610;维拉斯托矿区20件金属硫化物的206Pb/204Pb值为18.304~18.377,207Pb/204Pb值为15.520~15.610,208Pb/204Pb值为38.112~38.435。拜仁达坝东矿区矿石中的铅同位素组成与维拉斯托矿区相似,变化范围小,相对贫放射性铅同位素,并且均为混合铅。矿石中的铅可能来自围岩地层及深源岩浆。  相似文献   

11.
那更康切尔银矿是东昆仑造山带的大型热液脉型独立银矿床,有望达到超大型规模。以矿区地质特征为研究基础,开展硫化物硫-铅同位素、二长花岗岩和花岗闪长岩铅同位素研究,探讨成矿物质来源及两类岩体与成矿的关系。矿区硫化物样品(黄铁矿、方铅矿和闪锌矿)的δ34S值介于-6.1‰~3.9‰之间,主体δ34 S值介于-4‰~2.1‰之间,数值集中,指示成矿物质硫源具有深源岩浆硫的特征。矿石铅同位素组成中206 Pb/204 Pb、207 Pb/204 Pb、208 Pb/204 Pb的变化范围分别为18.28~18.62、15.6~15.73、38.38~39.1,矿石铅具有壳幔混合源的特点。矿区内二长花岗岩LA-ICP-MS锆石U-Pb年龄为239±1 Ma,(206Pb/204Pb)i、(207Pb/204Pb)i、(208Pb/204Pb)i值分别为18.389~18.585、15.638~15.648、38.288~38.558;花岗闪长岩LA-ICP-MS锆石U-Pb年龄为252±1 Ma,(206Pb/204Pb)i、(207Pb/204Pb)i、(208Pb/204Pb)i值分别为18.348~18.447、15.625~15.629、38.394~38.412,铅同位素组成投图显示成矿与2类岩浆岩关系较弱,与区域上鄂拉山组火山岩呈较明显的线性相关。那更康切尔银矿与邻区哈日扎铅锌银矿床具有相似的成矿物质来源,硫源具有同一性,且矿石铅同位素组成表现出很明显的线性关系,表明2个矿床的成矿物质具有相近或相似的源区或演化过程。成矿地质条件、成矿物质来源及成矿流体特征均表明两者属中-低温热液脉型矿床。综合本文及前人对那更康切尔银矿床的研究,构建了成矿模式和找矿模型,为区域内同类型银矿床的找矿工作提供了指导作用。  相似文献   

12.
The Yangla copper deposit, located in western Yunnan Province, China, is a typical giant, newly started mining copper deposit with an estimated Cu reserves of about 1,200,000 tons. The deposit is spatially and temporally associated with the Linong granodiorite, which is rich in SiO2 (SiO2=58.25 wt%–69.84 wt%) and alkalis (Na2O+K2O=5.98 wt%–8.34 wt%), indicating an association with shoshonitic series to high-K calc-alkaline series granites, and shows low contents of TiO2 (0.35 wt%–0.48 wt%), MgO (1.51 wt%–1.72 wt%), and Al2O3 (13.38 wt%–19.75 wt%). The δ34S values of sulfides of the main ore stage from copper ores vary range from ?4.2‰ to ?0.9‰, indicating a much greater contribution from the mantle to the ore-forming fluids. The δ34S values of the late ore stage is ?9.8‰, indicating enrichment of biogenic sulfur which may derive from the crustal hydrothermal fluid. The 208Pb/204Pb, 207Pb/204Pb and 206Pb/204Pb of sulfides of the main ore stage from copper ores range within 38.66–38.73, 15.71–15.74 and 18.35–19.04, respectively, implying that the Pb was derived from the mantle, with the crustal component, probably representing mixtures of mantle lead and crustal lead. Sulfide of the late ore stage in their Pb isotopic composition, 208Pb/204Pb= 38.69, 207Pb/204Pb=15.70, 206Pb/204Pb=18.35, implying that the Pb was derived from the crust. The Linong granodiorite is syn-collisional, produced by partial melting of thickened lower crust, which was triggered by the westward subduction of the Jinshajiang Oceanic plate. During a transition in geodynamic setting from collision-related compression to extension, gently dipping ductile shear zones (related to subduction) were transformed to brittle shear zones, consisting of a series of thrust faults in the Jinshajiang tectonic belt. The tensional thrust faults would have been a favorable environment for ore-forming fluids. The ascending magma provided a channel for the ore-forming fluid from the mantle wedge. After the magma arrived at the base of the early-stage Linong granodiorite, the platy granodiorite at the base of the body would have shielded the late-stage magma from the fluid. The magma would have cooled slowly, and some of the ore-forming fluid in the magma would have entered the gently dipping thrust faults near the Linong granodiorite, resulting in mineralization.  相似文献   

13.
Qingdong Zeng    Jianming Liu    Zuolun Zhang    Changshun Jia    Changming Yu    Jie Ye    Hongtao Liu 《Resource Geology》2009,59(2):170-180
The Baiyinnuoer deposit (32.74 Mt ore with grades of 5.44% Zn, 2.02% Pb and 31.36 g t?1 Ag), the largest Zn‐Pb‐Ag deposit in northern China, is hosted by crystalline limestone and slate of the Early Permian Huanggangliang Formation. Detailed cross‐section mapping indicates stratigraphic and fold structural controls on the mineralization. The Zn‐Pb‐Ag mineralization is hosted predominantly by skarn, which occurs as bedding‐parallel lens that pinch out at the margins of the main economic zone. Three skarn stages are identified at the deposit: (i) garnet‐clinopyroxene; (ii) sulfides; and (iii) carbonate‐epidote. Lead isotopic compositions were determined for galena and sphalerite of the ores, whole rock samples of the Yanshanian granite and granodiorite, Permian marble and tuff, and Jurassic volcanic and subvolcanic rocks in and around the Baiyinnuoer area in order to discuss the sources of ore‐forming materials and the relationship between the ore formation and these whole rocks. Galena and sphalerite of the Baiyinnuoer ore have uniform isotopic ratios (206Pb/204Pb, 18.267–18.369; 207Pb/204Pb, 15.506–15.624; 208Pb/204Pb, 38.078–38.394) consistent with the granite and granodiorite (206Pb/204Pb, 18.252–18.346; 207Pb/204Pb, 15.504–15.560; 208Pb/204Pb, 38.141–38.320), whereas the ratios for Jurassic volcanic and subvolcanic rocks are variable and radiogenic (206Pb/204Pb, 18.468–18.614; 207Pb/204Pb, 15.521–15.557; 208Pb/204Pb, 38.304–38.375). These results indicate that the mineralization was not related to the Jurassic volcanism, but to the Yanshanian magmatism. The Permian strata may have a slight contribution to the mineralization. All features show that the Baiyinnuoer deposit is related to the Yanshanian granitic magmatism, and can be classified as a zinc‐lead‐silver skarn deposit.  相似文献   

14.
江西冷水坑矿田是武夷山地区重要的银铅锌集中区之一。无论是世界上少有的斑岩型银铅锌矿床还是火山沉积-热液改造矿床都独具特色,具有很高的研究意义。该矿田的黄铁矿、闪锌矿和方铅矿等硫化物的δ34S值变化为-3.80‰~6.94‰,平均为1.87‰。大约为-4.11‰的δ13C值与峰值约为2‰的δ34S值的很窄分布表明成矿流体中的碳和硫来源于深部岩浆,并不排除地层提供一部分硫和碳的可能性。硫化物矿石的206Pb/204Pb、207Pb/204Pb和208Pb/204Pb比值分别为17.771~17.867、15.564~15.685和38.235~38.652。地层中火山岩、火山岩沉积岩以及变质岩石的206Pb/204Pb比值为17.899~18.220,与矿石铅既有联系又有分离。然而,矿石和花岗斑岩的长石铅中206Pb/204Pb、207Pb/204Pb和208Pb/204Pb比值是相近的,它们在208Pb/204Pb-206Pb/204Pb和207Pb/204Pb-206Pb/204Pb图上落在同一条直线上。这条铅同位素混合线两个端员分别为上地壳和地幔。这些证据都强烈地支持了成矿物质主要来源于斑岩岩浆系统,地层对于成矿流体和物质的贡献不可或缺。冷水坑是一个典型的与次火山岩有关的岩浆热液成因的Ag-Pb-Zn矿田,成矿作用均发生于中国东部燕山中期陆内环境。  相似文献   

15.
为了明确内蒙古别鲁乌图铜多金属矿床的成矿年龄与矿床成因,对该矿床中与成矿关系密切的流纹岩进行了锆石U-Pb年龄以及主要金属硫化物的S、Pb同位素测试。其中流纹岩的锆石206Pb/238U加权平均年龄为(271.7±1.6)Ma(MSWD=1.02),显示成矿作用发生于二叠纪。金属硫化物的S同位素分析结果显示δ34SV-CDT值分布在-0.6‰~1.0‰之间,平均为0.49‰,变化范围较窄,显示S的来源单一;Pb同位素组成比较集中,206Pb/204Pb为18.207~18.674,207Pb/204Pb为15.620~15.699,208Pb/204Pb为38.144~38.790,具有壳幔混源的特征。S、Pb同位素特征均指示成矿物质主要来源于岩浆热液。结合区域地质、矿床地质、空间分带等特征以及S、Pb同位素组成可知,别鲁乌图铜多金属矿床为VHMS型矿床,形成于二叠纪陆缘弧裂谷中。  相似文献   

16.
虎拉林矿床位于中亚造山带东段额尔古纳地块之上,处于上黑龙江盆地西侧,东与砂宝斯、老沟等金矿床相邻。矿床载金矿物主要为薄膜状、粒状及脉状黄铁矿,成矿与早白垩世花岗斑岩、石英斑岩及隐爆角砾岩有密切联系。在对矿床详尽的野外工作基础上,通过对金属硫化物硫、铅同位素分析研究,探讨成矿物质来源,揭示矿床成矿规律。研究结果表明,上黑龙江盆地虎拉林矿床矿石及围岩中黄铁矿δ34SV-CDT分布于0.7‰~2.2‰,平均为1.18‰,集中于1.0‰左右,呈塔式分布,显示主要为岩浆硫特征;铅同位素206Pb/204Pb、207Pb/204Pb、208Pb/204Pb值分别为18.468~18.511、15.578~15.625、38.215~38.370,分布范围较小,且具有造山带铅特征。铅同位素μ值为9.41~9.50,均小于9.58;ω值为35.04~35.93,均值35.49,小于正常铅ω值;Th/U为3.60~3.66,显示出具有壳幔混源特征;在铅同位素构造环境判别图中,显示出具有下地壳部分熔融的特征;Δγ-Δβ图解显示矿床铅来源于上地壳与地幔混合带俯冲岩浆作用成因的铅同位素源区。综合矿床类型、矿体产出特征、矿体及围岩硫、铅同位素特征认为,虎拉林金矿区成矿物质主要来源于下地壳物质熔融形成的深部岩浆,同时存在上地幔与上地壳部分熔融物质的参与,成矿过程与早白垩世岩浆活动关系密切,形成于蒙古—鄂霍茨克洋闭合后伸展环境背景下。  相似文献   

17.
江家等系列花岗闪长斑岩是皖南祁门县东源钨钼矿区含矿岩体的组成部分,位于东源花岗闪长岩的西侧。对江家和方村花岗闪长斑岩进行的SHRIMP锆石U-Pb测年结果表明,江家、方村花岗闪长斑岩的结晶年龄为149~152Ma,与富钨的东源花岗闪长岩相近。岩石地球化学和锆石Hf同位素分析显示,江家等系列花岗闪长斑岩源区具有复杂的多成分端元,其中老锆石核的正εHf值反映了成岩岩浆对晋宁期岩浆岩的继承,震荡岩浆环带的负εHf值(-39.5~-2.86)指示源区的主要成分为古老的地壳物质,有少量地幔物质的混染。全岩锆石饱和温度(737~913°C)显示岩浆组成中有幔源物质的贡献。  相似文献   

18.
<正>The Chang'an gold ore deposit in western Yunnan is located at the southern segment of the Ailaoshan metallogenic belt.The ore bodies are preserved in fractured Ordovician sedimentary clastic rocks.The gold-bearing minerals occur dominantly in sulfide-quartz veins.Fluid inclusion analysis shows that the Chang'an gold ore deposit is characterized by epithermal gold mineralization at temperatures between 200℃and 280℃at a shallow crustal level.The mineralizing fluids have intermediate to low salinity(6%-18%) and low densities(0.72-1.27 g/cm~3).The ore minerals haveδ~(34)S in a range from -13‰to 3.57‰,concentrated from -2.06‰to 3.57‰with an average of 1.55‰.The ~(206)Pb/~(204)Pb,~(207)Pb/~(204)Pb and ~(208)Pb/~(204)Pb values are 18.9977-19.5748,15.7093-15.784,39.3814-40.2004 respectively.These isotope data suggest that the ore-forming elements were mainly derived from mixed crustal and mantle sources.The Chang'an gold ore deposit and Tongchang Cu-Mo deposit are closely related to each other in their spatial distribution and age of formation.They have similar sources of mineralizing elements and identical ore-forming metal elements,and show a close relationship in physical and chemical conditions of mineralization.The two deposits constitute an epithermal-porphyry -skarn type Cu-Mo-Au mineralization system in the Tongchang-Chang'an area,which is related to the Cenozoic high-K alkaline magmatism.  相似文献   

19.
阿尔金山阿北银铅矿控矿构造特征与矿床成因初探   总被引:2,自引:0,他引:2  
阿北银铅矿位于新疆若羌县境内,是阿尔金山东段地区近年来新发现的中型多金属矿床之一,在区域构造上位于NE向阿尔金走滑断裂北侧与EW向阿尔金北缘断裂所夹持的区域。该矿区的控矿构造出露于早古生代二长花岗岩中,是叠加在韧性变形基础上发育起来的韧脆性断裂破碎带,在平面和剖面上均表现为弧形裂隙夹透镜状花岗岩岩块的结构特点。韧脆性断裂破碎带是阿北银铅矿重要的控矿构造,其形态、规模、产状和分布控制着矿体的形态、规模、产状和分布。硫同位素组成特征显示出硫源很可能是海相沉积岩来源的硫与岩浆岩来源硫的混合;铅同位素组成显示其来源于上地壳;氢、氧同位素特点反映出成矿流体以岩浆水为主,并有少量大气降水混入。结合构造演化和构造控矿特征进行分析,认为该矿床是受韧脆性裂隙控制的、与早古生代中-晚期红柳沟-拉配泉弧后盆地封闭碰撞作用伴生的中-酸性岩浆活动有关的岩浆热液型矿床。  相似文献   

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