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1.
江西朱溪钨铜矿是近年新发现的具有超大型规模前景的钨铜矿床,本文采集了大量朱溪钨铜矿床样品,用偏振激发能量色散X射线荧光光谱、电感耦合等离子体质谱/光谱等技术分析主量和微量元素含量,根据各元素的含量水平以10种主要成矿元素(W、Sn、Bi、Mo、Pb、Zn、Cu、As、Sb、Ag)作为分析研究区原生晕地球化学特征的指示元素。结果表明,Cu、Zn、Ag、Pb和W、Bi、Sn、Mo的元素共生组合十分明显,同时W与Cu也有相关性,富集W的部位同样也富集了Cu。成矿元素在空间上的分布特征为:1同一剖面上越往北西方向,W为主的高温元素更为富集;平面上越往南西方向,W为主的高温元素更为富集;越往深部,W为主的高温元素更为富集。2Cu为主的中温元素富集深度比W为主的高温元素富集深度浅。研究认为,铜矿富集部位在中、深部(-1400~-1500 m),钨矿富集部位在深部(-1400~-1900 m),Ag、As、Sb等低温元素的富集部位更靠近地表(-1100~-1200 m)。这种剖面线上和平面上的原生晕地球化学特征为该矿床进一步勘探工作与成矿预测提供了理论依据。  相似文献   

2.
铜厂沟斑岩型铜钼矿是格咱岛弧燕山晚期Mo多金属成矿作用的典型代表,矿床中与Cu-Mo矿化相关的蚀变作用广泛发育。文章在对该矿床岩相学研究的基础上,选择TiO2作为蚀变过程中惰性组分、运用Gresens方程对元素迁移进行定量分析。主量元素迁移特征显示在钾硅酸盐化蚀变阶段和石英—绢云母化蚀变阶段中Al2O3、K2O、Na2O、P2O5、SiO2持续迁入,青磐岩化阶段Fe2O3、MgO、CaO迁入富集;微量元素在钾硅酸盐化阶段显示为Mo、Ba、W、Ra、Nb、Ta、LREE元素明显迁入,且Ba、W与Mo的富集有明显的相关性,石英—绢云母化蚀变阶段Pb、Zn富集成矿,青磐岩化阶段Cu富集成矿,铜厂沟斑岩型铜钼矿矿化蚀变与成矿元素迁移特征研究对该区深部地球化学勘查指标制定、成矿信息及矿体边界确定等具有重要的参考意义。  相似文献   

3.
钨和铜由于地球化学行为存在明显差异,导致二者通常很难同时发生大规模的成矿作用。然而,江南钨矿带却出现了以石门寺和朱溪为代表的钨(铜)矿床。本文对朱溪钨(铜)矿床中最为重要的铜矿化作用开展了研究,即对形成于新元古代浅变质岩与古生代碳酸盐岩不整合界面附近的似层状钨(铜)矿体进行了精细的矿物学微区原位测试分析。厘定了朱溪矿床深部似层状钨(铜)矿体中铜矿化的形成时代为150.2±2.4Ma,与朱溪矿床的钨矿化时代及钨矿化相关岩体的成岩时代近于一致;揭示了深部似层状钨(铜)矿体中白钨矿、磷灰石的形成与朱溪矿床成矿相关岩浆高程度结晶分异形成的残余岩浆热液流体相关;结合朱溪矿床高分异残余岩浆(流体)具有高度还原的特征,初步提出朱溪矿床成矿过程中,钨来自于高分异残余岩浆热液流体,而铜来自于岩浆热液流体对基底地层中铜元素的萃取。  相似文献   

4.
粤东沿海地区锡和钨成矿花岗岩地质地球化学特征的对比   总被引:1,自引:0,他引:1  
粤东沿海地区与锡钨矿化有关的花岗岩可划分为锡成矿花岗岩和钨成矿花岗岩。二者皆为燕山期构造—岩浆作用的产物,属地壳物质物重熔—深熔成因。锡成矿花岗岩形成于燕山中期,主要分布于潮安—海丰以东地区。岩性主要为二长花岗岩,岩石相对富Al_2O_3、CaO以及Sn、Pb、Zn、Cu等微量元素。钨成矿花岗岩形成于燕山中晚期,主要分布在靠近莲花山断裂带地区。岩性主要为黑云母花岗岩,岩石相对富SiO_2以及W、Be、F等微量元素,源岩特征的不同,是造成两种成矿花岗岩地质地球化学特征差异的根本原因。  相似文献   

5.
继江西省武宁县大湖塘地区发现并查明了世界最大的钨矿之后,近年来在江西省浮梁县朱溪地区又发现了具有世界级资源潜力的钨铜矿。通过分析浮梁县朱溪钨铜矿床隐伏成矿花岗岩的区域构造背景、岩石学特征、围岩蚀变、稀土与微量元素地球化学特征等,探讨花岗岩的成因及其与成矿的关系。研究表明,该矿床的形成与朱溪花岗岩具有密切关系,朱溪花岗岩既不同于S型花岗岩,也不同于I型花岗岩,这种壳幔混杂与地层叠覆—壳层同熔型岩浆系列的过渡成就了朱溪超大型矿床。  相似文献   

6.
景德镇朱溪铜钨多金属矿床是近年在赣东北地区发现的一个超大型矽卡岩矿床.在对该矿床成矿地质背景已有认识的基础上,对其地质特征和成矿机制进行了初步探讨.结果表明,朱溪矿区具有“三位一体”的成矿模式:上部为热液脉型矿体,中深部为矽卡岩型矿体,更深部为斑岩(蚀变花岗岩)型矿体,且矿化在水平方向上由北东往南西及垂直方向由浅到深,出现Cu→Cu-W→W-Cu的规律性矿化趋势.朱溪矿床的形成经历了一个漫长又复杂的地质过程,其中与铜钨多金属关系密切的主要为氧化物阶段和金属硫化物阶段,且成矿作用并非一次完成,可能是多次成矿作用相互叠加才形成如此巨量的铜钨资源量.  相似文献   

7.
安庆铜铁矿床是产于长江中下游铜(金)、铁成矿带内安庆-贵池矿集区中的一典型矽卡岩矿床,矿体赋存于下三叠统南陵湖组大理岩与月山闪长岩体之间的接触带上。典型剖面系统取样分析显示,矿体与围岩在空间上具有显著的矿物组合分带与岩石化学分带特征,即靠近大理岩带发育致密块状磁铁矿矿石与团块状矽卡岩型矿石,远离大理岩带发育浸染状矽卡岩型矿石,靠近闪长岩带发育透辉石矽卡岩。从大理岩到磁铁矿体, Fe2O3T含量显著增加,之后随着靠近闪长岩体,其含量呈逐渐降低趋势;而CaO显示了与Fe2O3T相反的成分变异特征。矿物与全岩微量元素研究表明,致密块状磁铁矿矿石及团块状矽卡岩型矿石均具有岩浆成因的稀土元素配分模式;而浸染状矽卡岩型矿石显示了交代成因的稀土元素配分特征。矿体地质、矿相学与元素地球化学综合研究表明,矽卡岩成矿经历了矿浆贯入期与热液成矿期,前者包括氧化物阶段和硫化物-碳酸盐阶段,后者包括进化交代阶段、早退化蚀变阶段、石英-硫化物阶段和晚退化蚀变阶段。结合已有的区域岩浆岩成岩机制研究成果,认为安庆铜铁矿床应是矿浆贯入与接触交代复合成因的矽卡岩型矿床,由于高位岩浆房中岩浆不混溶作用形成的富Fe熔浆是该矿床中成矿元素的主要来源。  相似文献   

8.
西藏驱龙斑岩铜钼矿地球化学异常特征   总被引:6,自引:0,他引:6  
驱龙铜矿发育多元素的岩石地球化学异常.成矿元素Cu、Mo、(Ag)异常强、规模大,异常与矿化区一致;伴生元素Au、Bi、Pb、As、Sb、Hg异常在Cu、Mo异常边部并套合产出的B Co、Ni Mn Zn的异常主要分布铜钼矿化带外侧.Na2O在矿化区显示负异常,K2O为正异常.从异常元素组合、水平分带性和贫Na2O、富K2O的成矿环境表明,矿床属典型的斑岩型铜矿地球化学特征,并受到了强烈的剥蚀.  相似文献   

9.
西藏谢通门县雄村铜金矿的成矿与含眼球状石英斑晶的角闪石英闪长玢岩有关,并至少受3个玢岩岩枝控制。主成矿元素为Cu,伴生元素为Au、Ag、Zn、Pb,其他微量元素Mo、As、Ba、Bi、Cd、Co、Mn、Ni、Sb含量较高。元素在垂向上具有分带特征,即从矿体中心向外可依次划分为Cu、Au、Ag、As、Sb、(Bi)→Co、Ni→Mo→Mn→Ba→Pb、Zn、Cd、Bi、(Sb),上述元素的异常和组合是寻找和评价该类矿床的重要地球化学标志。矿床的形成经历了早期Cu—Au—Ag成矿和晚期Zn—Pb—Cu—Au—Ag成矿两个阶段:早期成矿阶段形成了Cu—Au—Ag主矿体,晚期叠加Zn—Pb—Cu—Au—Ag矿化。Cu与Au、Ag呈显著的正相关,Cu主要呈独立矿物黄铜矿产出,Au、Ag主要赋存于黄铜矿中。矿石的K/Na值为6.9、Rb/Sr值为0.8,显示出矿床矿富K、Sr和贫Na、Rb的成矿环境;而Au(平均品位0.6×10-6)0.4×10-6、Au(0.6×10-6)/Cu(0.4%)1和n(Cu)/n(Au)(为20678)40000以及Mo(19.7×10-6),说明该矿床富金而贫钼。矿床所处的大地构造位置,成矿与偏中性的斑岩有关,元素组合特征,异常元素在垂向上的分带特征,主成矿阶段的Cu—Au—Ag矿化和晚期叠加的Zn—Pb—Cu—Au—Ag矿化,富Cu、Au、Ag和贫Mo的成矿元素组合及富K、Sr和贫Na、Rb的成矿环境,均表明矿床具有产于岛弧或类似岛弧环境的斑岩型铜金矿床的特征且叠加斑岩成矿系统晚期呈脉状产出的浅成低温热液型Zn—Pb—Cu—Au—Ag矿化。  相似文献   

10.
通过城门山矿田矿床地质、矿体走向及倾向上的厚度及品位变化情况总结其矿化特征,根据成矿温度及地球化学成矿条件研究该矿体矿化富集规律的控制因素,并从矿化特征方面佐证讨论该类矿床的成因及外围找矿方向。研究表明,矿体矿化沿水平及垂向上均具有分带特征,大致表现为沿热液中心向外为Mo、Cu、Zn、Pb、Ag、Au元素的分带,从地表向下为TFe、Au、Ag、Pb、Zn、Cu元素的分带。除此之外,矿化还具有差异特征,表现为走向上矿体两端发育的不一致性、倾向上的局部豆荚状发育特征。本次工作厘定的分带性及差异性分别佐证了矿床的热液成因与沉积成因,并预测外围具有较好的多金属找矿前景,且东段好于西段。   相似文献   

11.
The Pulang (普朗) porphyry copper deposit, located in the southern segment of the Yidun-Zhongdian (义敦-为中甸) island arc ore-forming belt of the Tethys-Himalaya ore-forming domain, is a recently discovered large copper deposit. Compared with the composition of granodiorite in China, the porphyry rocks in this area are enriched in W, Mo, Cu, Au, As, Sb, F, V, and Na2O (K1≥1.2). Compared with the composition of fresh porphyry rocks in this district, the mineralized rocks are enriched in Cn, Au, Ag, Mo, Pb, Zn, W, As, Sb, and K2O (K≥1.2). Some elements show clear anomalies, such as Zn, Ag, Cu, Au, W, and Mo, and can be regarded as pathfinders for prospecting new ore bodies in depth. It has been inferred from factor analysis that the Pulang porphyry copper deposit may have undergone the multiple stages of alteration and mineralization: (a) Cu-Au mineralization; (b) W-Mo mineralization; and (c) silicification and potassic metasomatism in the whole ore-forming process. A detailed zonation sequence of indicator elements is obtained using the variability index of indicator elements as follows: Zn→Ag→Cu→Au→W→Mo. According to this zonation, an index such as (Ag×Zn) D/(Mo×W) D can be constructed and regarded as a significant criterion for predicting the Cu potential at a particular depth.  相似文献   

12.
烂泥塘矿床是云南香格里拉地区典型的斑岩型铜矿床,主矿体产于在地表以下300~500米,地表矿化带仅见脉状铜矿体和铜矿化体.为研究云南香格里拉烂泥塘斑岩铜矿床的原生晕异常结构,本文以异常结构模式理论和方法为基础,对矿床地表和坑道岩矿石样品开展了元素组合、异常特征和水平分带规律研究.结果表明,烂泥塘铜矿床地球化学系统的结构...  相似文献   

13.
对乌努格吐山斑岩型铜钼矿床进行地球化学勘查指标研究,通过探讨47种元素在矿床中的富集、贫化等分布特征,结合蚀变、矿化分带等因素,筛选了斑岩型铜(钼)矿床的地球化学勘查指标。[KK(SiO2)+KK(K2O)]/[KK(Al2O3)+KK(Na2O)+KK(CaO)+KK(Fe2O3)+KK(MgO)]、KK(K2O)/KK(Na2O)、KK(K2O)/KK(Rb)、CaO、MgO、Na2O等指标可以反映矿床的成矿环境,圈定矿床的蚀变范围及蚀变程度等;近矿指标Cu、Mo、Ge、W、Sn、F、Bi、S、Se、Hf等可以反映矿床的矿化程度、矿体产出位置等;远矿指标[KK(Pb).KK(Zn)×1000]/[KK(Cu).KK(Mo)]、[KK(As).KK(Sb).KK(Bi)]/[KK(Cu).KK(Mo)]、[KK(Au).KK(Ag)]/[KK(Cu).KK(Mo)]、As、Au、Ag、Te等可以突出找矿范围和找矿目标。这些指标既为本地区寻找同类型矿床提供了技术支持,也拓宽了其他类型矿床的找矿思路。同时,应用对数累计频率散点图确定指标的异常上(下)限,为实现指标定量化提供了有效范例。  相似文献   

14.
《Resource Geology》2018,68(3):258-274
The Dabaoshan deposit in Northern Guangdong Province, South China, is a Cu–Mo–W–Pb–Zn polymetallic deposit, located in the southern part of the Qin–Hang porphyry–skarn Cu–Mo ore belt. The deposit mainly comprises porphyry Mo and stratiform skarn Cu ore deposits. The genesis of the Cu ore deposit has been ascribed to a typical skarn ore deposit formed by the metasomatism of Devonian carbonate rock layers or to a volcanic rock‐hosted massive sulfide deposit formed by marine exhalation. In this paper, we report on the homogenization temperatures and salinities of fluid inclusions and C, H, O, S, and Pb isotopic compositions of fluids and minerals in this deposit. Homogenization temperatures and salinities of fluid inclusions in garnet, diopside, quartz, and calcite provide information on the skarnification, mineralization, and postmineralization stages. The data show that ore‐forming fluids experienced a continuous transition from high temperatures and salinities to low temperatures and salinities over the entire period of mineralization. C, H, and O isotopic compositions indicate that ore‐forming fluids were derived mainly from magmatic water. O isotopic compositions indicate that ore‐forming fluids mingled with atmospheric water during the last stage of mineralization. Sulfur in the ore came mainly from deep magmatic sources. Pb isotopic compositions in the orebody show that almost all the lead in the ore was derived from magma with a crustal source. Combined geological, geophysical, and geochemical data were achieved before we proposed that the Dabaoshan porphyry–skarn Cu–Mo–W–Pb–Zn deposit, as one member of the Qin–Hang porphyry–skarn Cu–Mo ore belt, formed during the Jurassic subduction of the paleo‐Pacific plate beneath the Eurasian continent at quite low angle. NE‐ and EW‐trending structures controlled the emplacement of magmatic rocks in the South China region. In the mining area, the Xiangguanping Fault and its branches were the main conduits for magmatic crystallization and mineralization. The many subfaults, folds, and interlayer fracture zones on both sides of the main fault provided the requisite space for the ore and, together, were the controlling structures of the orebody.  相似文献   

15.
玉峰金矿位于中亚造山带东天山东缘,是近年来新发现的含银高品位金矿床。该矿床目前已探明6个金矿体,均赋存在石英斑岩中。矿区热液蚀变作用发育,与成矿关系最密切的为黄铁绢英岩化和硅化,显示明显的蚀变分带:以石英硫化物脉为中心,黄铁绢英岩化带在其两侧大致对称分布。本文选取矿体上盘和下盘的石英斑岩、黄铁绢英岩进行了全岩的主、微量元素及成矿元素测试,并对其中的长石和绢云母进行电子探针成分分析。测试结果表明,黄铁绢英岩中的Au含量较蚀变前呈指数级增长,Ag、Cu、As等成矿元素大量增加,CaO、Na_2O、P_2O_5、P_2O_5、Sr、Pb、Th、U、Sb等元素显著迁出,而SiO_2、Al_2O_3、TiO_2含量和稀土元素含量变化较小,表现稳定。热液蚀变过程中,石英斑岩中71%~76%的正长石发生绢云母化,导致K_2O大量迁出;而钠长石几乎全部蚀变为绢云母,造成Na_2O大量迁出。热液流体的贡献使得蚀变岩中MgO、Fe_2O_3~T含量成倍增加,并主要富集在绢云母和/或黄铁矿晶格中。综合分析认为,绢英岩化蚀变带,Au、Cu、As和Bi等元素的综合化探异常,低电阻率、高激化率的地球物理特征可以作为玉峰矿区深部和外围找矿的标志。研究区内的石炭纪石英斑岩带,尤其是在构造叠加部位,热液活动使其更有利于矿化富集,是找矿勘探的有利部位。  相似文献   

16.
The Xiaohongshilazi deposit located in central Jilin Province, Northeast China, is a newly discovered and medium‐scale Pb–Zn–(Ag) deposit with ore reserves of 34,968 t Pb, 100,150 t Zn, and 158 t Ag. Two‐stage mineralization has been identified in this deposit. Stratiform volcanic‐associated massive sulfide (VMS) Pb–Zn mineralization interbedding with the marine volcanic rocks of the Late Carboniferous–Early Permian Daheshen Formation was controlled by the premineralization E–W‐trending faults. Vein‐type Pb–Zn–(Ag) mineralization occurs within or parallel to the granodiorite and diorite porphyries controlled by the major‐mineralization N–S‐trending faults that cut the stratiform mineralization and volcanic rocks. To constrain the age of vein‐type Pb–Zn–(Ag) mineralization and determine the relationship between mineralization and magmatism, we conducted LA–ICP–MS U–Pb dating on zircon from the ore‐bearing granodiorite and diorite porphyries and Rb–Sr dating on metal sulfide. Granodiorite and diorite porphyries yield zircon U–Pb weighted‐mean 206Pb/238U ages of 203.6 ± 1.8 Ma (Mean Standard Weighted Deviation [MSWD] = 1.8) and 225.6 ± 5.1 Ma (MSWD = 2.3), respectively. Sulfides from four vein‐type ore samples yield a Rb–Sr isochron age of 195 ± 17 Ma (MSWD = 4.0). These results indicate a temporal relationship between the granodiorite porphyry and vein‐type Pb–Zn–(Ag) mineralization. The granodiorite associated with vein‐type mineralization has high SiO2 (68.99–70.49 wt.%) and Na2O (3.9–4.2 wt.%; Na2O/K2O = 1.07–1.10) concentrations, and A/CNK values of 0.95–1.04; consequently, the intrusion is classified as a high‐K, calc‐alkaline, metaluminous I‐type granite. The granodiorite porphyry is enriched in large‐ion lithophile elements (e.g. Rb, Th, U, and K) and light REE and is depleted in high‐field‐strength elements (e.g. Nb, Ta, P, and Ti) and heavy REE, indicating that it represents a subduction‐related rock that formed at an active continental margin. Furthermore, the granodiorite porphyry has Mg# values of 31–34, indicating a lower crustal source. Based on petrological and geochemical features, we infer that the ore‐bearing granodiorite porphyry was derived from the partial melting of the lower crust. In summary, mineralization characteristics, cross‐cutting relationships, geochronological data, and regional tectonic evolution indicate that the region was the site of VMS Pb–Zn mineralization that produced stratiform orebodies within the Late Carboniferous–Early Permian marine volcanic rocks of the Daheshen Formation, followed by mesothermal magmatic hydrothermal vein‐type Pb–Zn–(Ag) mineralization associated with granodiorite porphyry induced by the initial subduction of the Paleo‐Pacific Plate beneath the Eurasia Plate during the Late Triassic–Early Jurassic.  相似文献   

17.
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   

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