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1.
蔡光耀  安芳  袁轶  刘芳  刘炜  张京渤 《地质学报》2021,95(5):1561-1572
八卦庙金矿床位于秦岭造山带凤太铅锌多金属矿田北部,是陕西省规模较大的金矿床之一,已探明金储量约106 t.赋矿围岩是上泥盆统星红铺组浅变质泥质碎屑岩和碳酸盐岩,其成矿过程可划分为3期,分别是①顺层磁黄铁矿-石英成矿期;②NE向黄铁矿-石英成矿期;③裂隙硫化物-方解石成矿期.目前关于NE向黄铁矿-石英成矿期成矿物质来源和成矿机制仍存在争议.本文通过矿相学观察,将NE向黄铁矿-石英成矿期划分为自形磁黄铁矿-黄铁矿-粗粒石英阶段(Ⅰ)、他形黄铁矿-银金矿-细粒石英阶段(Ⅱ)、他形磁黄铁矿-自然金-方解石阶段(Ⅲ)和黑云母阶段(IV),并在此基础上采用激光剥蚀-多接收等离子体质谱(LA-MC-ICP-MS)分析方法对千枚岩围岩中以及不同阶段形成的硫化物进行了原位S同位素测试,结果显示围岩中原生磁黄铁矿的δ34 S值集中于11.6‰~13.0‰之间,介于前人报道的原生黄铁矿δ34 S值变化范围(3.3‰~16.0‰);阶段I形成的黄铁矿的δ34 S值为8.4‰~10.1‰,磁黄铁矿为7.6‰~8.0‰;阶段II黄铁矿的δ34 S值相对较高,为14.0‰~15.9‰;阶段Ⅲ磁黄铁矿的δ34 S值介于6.4‰~8.3‰之间.八卦庙金矿NE向黄铁矿-石英成矿期总体相对富集重硫同位素、离散程度较大,各阶段硫化物的硫同位素值介于矿集区花岗岩和围岩硫之间,显示其具有岩浆硫与地层硫混合的特征.结合阶段I到阶段Ⅲ矿物组合的变化(黄铁矿+磁黄铁矿→黄铁矿→磁黄铁矿),推断阶段IIδ34 S值增高是水岩反应引起的硫化作用所致,而阶段Ⅲ硫同位素值降低可能与岩浆水的加入密切相关.结合成矿物理化学条件,推断该成矿期成矿热液中金主要以Au(HS)2-的形式迁移,阶段I到阶段Ⅱ由水岩反应引起的硫化作用是导致他形黄铁矿-银金矿-细粒石英阶段(Ⅱ)金矿化的主要原因,而岩浆水的混入可能是导致他形磁黄铁矿-自然金-方解石阶段(Ⅲ)金沉淀的主要机理.  相似文献   

2.
牟平-乳山成矿带是胶东三大矿集区之一,目前在该带内已发现金矿床十余处及大量矿(化)点,其中大型金矿床为乳山(金青顶)金矿和牟平(邓格庄)金矿.本区金矿类型多为石英脉型,个别矿床在深部演化为蚀变岩型或石英脉与蚀变岩的复合型.根据野外实地观察和室内镜下研究,成矿阶段可划分为石英-(少)黄铁矿(Ⅰ)、含金黄铁矿-石英(Ⅱ)、含金多金属硫化物-石英(Ⅲ)和石英-碳酸盐(Ⅳ)四个阶段,金成矿以Ⅱ、Ⅲ阶段为主.  相似文献   

3.
赛坝沟金矿床位于柴北缘赛什腾山—阿尔茨托山成矿带东南段,含金石英脉主要赋存于早奥陶世英云闪长岩的断裂、节理裂隙内.流体成矿过程从早到晚划分为黄铁矿烟灰色石英脉阶段(Ⅰ)、黄铁矿白色石英脉阶段(Ⅱ)、多金属硫化物-灰白色-灰褐色石英脉阶段(Ⅲ)、灰白色石英-方解石脉阶段(Ⅳ).通过矿相学观察、能谱及电子探针分析,在该矿床Ⅱ、Ⅲ阶段矿石中首次发现大量的金/银/铅的碲化物,主要产出在黄铁矿、石英或其裂隙中,矿物生成顺序可初步厘定为黄铁矿→黄铜矿→自然金、碲铅矿→碲金矿→碲金银矿.基于赛坝沟金矿床矿石特征、成矿阶段及铅同位素特征,结合前人围岩及成矿年代学、成矿流体和同位素研究,初步认为矿床中金碲物质来源于早志留世深部地幔和下地壳混熔形成的岩浆流体,成矿流体沿大型剪切带上升,并与地表大气降水混合后在剪切带相对张性及韧脆性转换等构造薄弱部位富集成矿.  相似文献   

4.
安徽铜陵焦冲金矿床位于长江中下游铁铜金银铅锌成矿带铜陵矿集区内,矿体主要赋存在下二叠统栖霞组(P1q)灰岩中。根据野外地质特征及含矿组合,将矿床划分为3个成矿阶段:黄铁矿-石英阶段、石英-硫化物阶段和石英-方解石阶段。笔者对该矿床不同成矿阶段石英和方解石进行了详细的岩相学观察和显微测温研究。结果表明,该矿床的均一温度区间分别为410~440 ℃、320~350 ℃和260~320 ℃。显示早期的黄铁矿-石英阶段、石英-硫化物阶段,直到晚期的石英-方解石阶段均一温度呈现逐渐减低的趋势。根据公式计算矿床成矿深度约1.5 km,成矿压力400×105 Pa。流体沸腾作用是金属硫化物大量沉淀的主要机制。  相似文献   

5.
从矿床地质出发,报道了大兴安岭漠河地区前哨林场锑金矿的流体包裹体岩相学、显微测温及气相成分,探讨了前哨林场锑金矿床流体包裹体性质、成岩成矿时间及空间分布特征。研究结果表明:其成矿过程经历灰白色石英-黄铁矿阶段(Ⅰ)、灰黑色石英-辉锑矿-黄铁矿阶段(Ⅱ)及乳白色石英-少硫化物-碳酸盐阶段(Ⅲ)等3个阶段;矿物流体包裹体类型以气液两相型包裹体为主,并含少量CO2三相包裹体,成矿流体应为中低温、低盐度的H2O-CO2-Na Cl体系热液,现阶段所卸载的矿(化)体为主成矿晚期的矿体,该期矿体的西北部找矿潜力较大;结合矿区地质特征,初步认为其形成于晚侏罗世晚期—早白垩世。  相似文献   

6.
八卦庙金矿床位于西秦岭造山带凤太多金属矿田北部,已探明金储量约106 t(平均金品位1.56 g/t),属于特大型金矿。金矿体受脆韧性剪切带控制,总体走向NWW,倾向北,赋矿地层为上泥盆统星红铺组下段。文章在成矿期次研究基础上,采用硫化物原位S-Pb同位素分析方法,对八卦庙金矿成矿过程和成矿物质来源进行了约束。基于详细的野外观察和矿相学研究,矿区识别出了2个金成矿期:顺层磁黄铁矿-石英成矿期和NE向黄铁矿-石英成矿期。顺层磁黄铁矿-石英成矿期可划分为自形黄铁矿-石英(Ⅰ)、磁黄铁矿-自然金-铁白云石(Ⅱ)、白云母-绿泥石-绿帘石-石英(Ⅲ)3个阶段;NE向黄铁矿-石英成矿期由自形磁黄铁矿-黄铁矿-粗粒石英(Ⅳ)、他形黄铁矿-细粒石英(Ⅴ)、他形磁黄铁矿-自然金-铁白云石(Ⅵ)和石英-黑云母(Ⅶ)4个阶段构成。顺层磁黄铁矿-石英成矿期硫化物的δ34S值集中在1.60‰~5.89‰和14.07‰~16.87‰两个区间;NE向黄铁矿-石英成矿期硫化物的δ34S值也集中在2.77‰~5.52‰和9.11‰~15.9‰两个区间,通过与围岩和区内岩浆岩对...  相似文献   

7.
陕西杨斜金矿床为东秦岭杨斜-丰北河金钨成矿带东段的一中型金矿床。金矿体主要为热液石英脉型,赋存于商丹断裂带内北东—北北东与北西—北北西向次级断裂中,赋矿围岩为新元古代杨斜片麻岩套。矿石金属矿物为黄铁矿-自然金-黄铜矿-黝铜矿-闪锌矿-方铅矿等中低温组合;热液成矿过程可划分钾长石-石英、石英-粗粒黄铁矿-自然金、石英-细粒黄铁矿-自然金-多金属硫化物和碳酸盐4个阶段;近矿围岩蚀变以钾化、硅化及黄铁矿化为特征,远矿蚀变主要为绿泥石化和碳酸盐化。金矿床主要受断裂、围岩及岩体(脉)控制,成矿时代不早于晚三叠世。  相似文献   

8.
邱添  朱永峰 《矿床地质》2014,33(3):541-557
新疆西准噶尔萨Ⅰ金矿床由含金糜棱岩化石英菱镁岩和含金石英脉组成,矿体围岩为石英菱镁岩、碳酸盐-滑石片岩和蛇纹岩。根据岩相学研究,将萨Ⅰ金矿床的形成过程划分为5个阶段:黄铁矿-石英-碳酸盐阶段(Ⅰ)、自然金-辉砷镍矿-铬云母阶段(Ⅱ)、黄铁矿-碳酸盐-石英阶段(Ⅲ)、自然金-硫化物-石英阶段(Ⅳ)和碳酸盐阶段(Ⅴ)。阶段Ⅰ和阶段Ⅱ对应于石英菱镁岩经历的韧-脆性变形时期,其他3个阶段形成于脆性变形期间,反映出构造性质由挤压向拉伸环境转换的过程。阶段Ⅱ和阶段Ⅳ分别对应于Au-As和Au-Cu成矿作用。金矿化与石英菱镁岩经历的剪切变形过程相关。含金糜棱岩化石英菱镁岩的微量元素含量明显高于未变形的石英菱镁岩,说明剪切带流体输送了相关微量元素和成矿元素。在韧性变形向脆性变形转换过程中,流体压力骤降,含金络合物分解形成金矿。萨Ⅰ金矿床是产在糜棱岩化石英菱镁岩中的严格受剪切带控制的热液脉型金矿床。  相似文献   

9.
胶东地区是我国最大金成矿聚集区,其金矿床的成因长期以来一直存在很大争议,三山岛金矿床是胶东地区最大的金矿床,通过采用LA-ICP-MS分析不同阶段黄铁矿中微量元素组成,可以探讨成矿流体演化及成矿物质来源。根据野外地质特征及岩相学观察,结合SEM结构分析将三山岛金矿床的黄铁矿分为3个阶段,6个亚类,即黄铁绢英岩化带(Py1)中包裹大量绢云母和石英的Py1-a和表面光滑的Py1-b,石英—黄铁矿±菱铁矿脉(Py2)中富含矿物包裹体的Py2-a和与菱铁矿共生且表面光滑的Py2-b,石英—多金属硫化物脉(Py3)中有很多细粒多金属硫化物包裹体的Py3-a和表面光滑的Py3-b。3个阶段黄铁矿晶格中金含量均很低,大部分小于1×10^-6,金主要以可见金形式存在。从早阶段到晚阶段黄铁矿中Au与Ag,Cu,Pb,Sb有较好的正相关性,且含量有逐渐增加的趋势。最早阶段黄铁矿中Co+Ni的含量很高(最高为9268×10^-6),反映了早期黄铁矿可能来源于岩浆岩源区,后期Co/Ni值逐渐降低,暗示了成矿流体温度逐渐降低。结合地质特征和黄铁矿微量元素研究,表明三山岛金矿床成矿物质可能来源于深部岩浆热液储库,通过地震泵机制沿断裂构造多次侵位成矿。  相似文献   

10.
<正>大裕金矿床位于昭平县城南东部,直距县城约85 km,行政隶属昭平县古袍镇、木格乡管辖。矿区位构造单元位于桂中-桂东台陷大瑶山凸起东端古袍复式向斜南翼。矿区内黄铁矿大量发育,矿化主要以石英脉型金矿床为主。1矿相学特征从显微镜下观察和含金石英脉矿石的化学分析可知金矿化与中细粒黄铁矿化有关,黄铁矿化的强  相似文献   

11.
There are controversies about the genesis of the lode gold deposits in Jiaodong area. The Sanshandao gold deposit is the largest one in Jiaodong area. To better understand the genesis of the gold deposit, it is necessary to know the evolution of ore-forming fluid and the source of ore-forming material for the Sanshandao gold deposit. In this paper, the trace element composition of pyrite at different metallogenic stages in the Sanshandao gold deposit was analyzed by using LA-ICP-MS. Based on geological characteristics and petrography observation and SEM analysis, pyrite can be divided into three stages and six classes, including porous Py1-a and smooth Py1-b in pyrite-sericite-quartz alteration (Py1), many mineral inclusions in the Py2-a and smooth Py2-b associated with carbonate in the quartz-pyrite ± siderite veins (Py2), a lot of polymetallic sulfide inclusions hosted Py3-a and Py3-b with smooth and oscillation band in the quartz-polymetallic sulfide vein (Py3). The experimental results show that the gold content is very low in the lattice of pyrite, most of which is less than 1×10-6, and gold mainly occurs in the form of visible gold. The contents of Au, Ag, Cu, Pb and Sb of pyrite gradually increase from early stage to late stage. The high content of Co+Ni in the earliest stage (up to 9268×10-6) reflects that pyrite in the early stage is likely derived from magma, and the Co/Ni ratio gradually decreases, suggesting the decrease of ore forming fluid temperature. Combined with the geological observations and trace elements component of pyrite, the study shows that the genesis of the Sanshandao gold deposit is related to the evolution of magmatic hydrothermal reservoir. The ore-forming fluid is transported several times along the fault by seismic pumping.  相似文献   

12.
毕诗健  李占轲  唐克非  高凯 《地球科学》2016,41(7):1121-1140
位于华北克拉通南缘的小秦岭地区是我国仅次于胶东的大型金矿床集中区,但金矿床的成矿物质来源及成因问题一直存在较大争议.以华北南缘小秦岭矿集区东桐峪金矿床中的黄铁矿作为研究对象,在黄铁矿显微结构研究的基础上利用LA-ICP-MS对黄铁矿的微量元素进行原位分析,为进一步认识东桐峪金矿床及区内其他同类型矿床的成因提供新的资料和制约.东桐峪金矿床的黄铁矿从早到晚依次划分为3个世代(PyⅠ、PyⅡ和PyⅢ).PyⅠ主要形成于粗粒黄铁矿-石英阶段,颗粒粗大且自形程度高,呈星点状或斑点状赋存于乳白色石英脉中.PyⅡ主要形成于石英-中细粒黄铁矿阶段,呈半自形-他形结构且裂隙发育,常被晚期石英、多金属硫化物、自然金等矿物充填.PyⅢ主要形成于多金属硫化物阶段,常呈他形粒状结构与黄铜矿、方铅矿及闪锌矿等硫化物密切共生.LA-ICP-MS分析结果显示,PyⅠ中As平均含量为16.63×10-6,Au、Ag和Te含量较低且常位于检测限以下;相较而言,PyⅡ中As含量稍低,而Au、Ag和Te含量略高(其中Au含量为0.10×10-6~0.59×10-6);PyⅢ中Au、Ag和Te含量差异较大且显著升高,其中Au、Te含量最高可达35.58×10-6和79.79×10-6,而As含量较低且大部分数值低于检测限;不同世代黄铁矿的Co/Ni比值基本上都大于1,且PyⅢ的Co、Ni含量和Co/Ni比值明显低于PyⅡ和PyⅠ.以上结果表明,东桐峪金矿床的载金矿物黄铁矿中As的含量很低,金的富集与As无关;不同世代的黄铁矿中Au、Ag和Te之间存在显著且稳定的线性正相关关系,暗示金矿化与Te关系密切.另外,第3世代黄铁矿(PyⅢ)中Au、Ag及Te存在显著富集,指示Te(而不是As)在金和银的迁移、搬运、富集、沉淀等过程中具有重要作用.华北克拉通南缘小秦岭地区晚中生代大规模的金成矿作用及金矿床中普遍存在Te-Au-Ag矿物,且黄铁矿中As含量低、Te含量高等特征,暗示该区金矿床的成矿物质/成矿流体可能来自深部岩浆的脱挥发分或地幔脱气作用,而与区域变质作用的关系不大.   相似文献   

13.
藏南查拉普金矿床载金矿物特征与金的赋存状态   总被引:1,自引:0,他引:1  
黄铁矿和毒砂是卡林型和造山型金矿床重要的载金矿物。文章通过电子探针(EPMA)分析研究了藏南查拉普金矿床不同类型黄铁矿和毒砂中Au、As、S、Fe等元素的含量变化和分布规律,发现不同阶段的黄铁矿具有不同的结构特征和元素组成特点。沉积成岩期黄铁矿(Py1)主要呈草莓状、胶状,常构成环带状黄铁矿的核心,其中金的含量最高,显示了金在沉积成岩期的大量富集。热液期早阶段黄铁矿(Py2)主要呈自形-半自形的立方体,与Py1元素(S、Fe、As)组成相近,显示了一定的继承演化关系。热液期主阶段黄铁矿(Py3)与毒砂共生,多呈自形-半自形的五角十二面体、立方体,常包裹早期的黄铁矿形成环带结构。Py3中As的含量明显升高,其增加量近似等于S的减少量,说明As主要进入黄铁矿晶格替代了S的位置。各个阶段的黄铁矿和毒砂中Au的分布在EPMA微束的分辨率下均显示是不均匀的,Au在Py1和大部分Py2中主要以纳米级自然金(Au0)的形式存在;而在Py3中主要以(Au+)的形式存在,少部分以纳米级自然金(Au0)形式存在。Py1的结构及元素组成与典型卡林型金矿和造山型金矿沉积成岩期黄铁矿的特点相似,而Py3的大量发育则符合卡林型金矿的特征。  相似文献   

14.
The Woxi Au-Sb-W deposit is one of the largest polymetallic ore deposits in the Xuefengshan Range, southern China, hosted in low-grade metamorphosed Neoproterozoic volcaniclastic rocks. The orebodies of the deposit are predominantly composed of banded quartz veins, which are strictly controlled by bedding and faults. Petrographic observations and geochemical results are reported on the occurrence of Au and properties of the ore-forming processes for different stages in the deposit. The veins extend vertically up to 2 km without obvious vertical metal zoning. The ore-forming process can be subdivided into four mineralization stages: Pre-ore stage; Early stage (scheelite-quartz stage); Middle stage (pyrite-stibnite-quartz stage); and Late stage (stibnite-quartz sage). Four types of pyrite (Py0, Py1, Py2, and Py3) were identified in the ores and host-rock: Py0 occurs as euhedral grains with voids in the core, ranging in size from 50 to 100 μm and formed mainly in the Pre-ore stage and Early stage; Py1 occurs as subhedral grains. Small grains (around 10 μm) of Py1 form irregularly shaped clusters of variable size ranging from tens to hundreds of μm and mainly formed in the Middle stage; Euhedral-subhedral fine-grained Py2 formed in the Late stage; Minor subhedral fine-grained Py3 was deposited in the Late-stage. Stibnite is widely distributed in the Middle and Late stage ore veins. No systemic difference was recognized in mineralogical features among stibnite formed in different stages. In addition to native gold, the lattice bound Au+1 widely exists in Py1 and Py2 in the deposit, and widespread Py1 is considered as the main Au-bearing mineral with the highest Au contents. Most elements (such as Co, Ni, Cu, As, Sb, Ba, and Pb) are considered to occur as solid solution within the crystal lattice and/or invisible nanoparticles in sulfides minerals. The Co/Ni ratio of most pyrite is lower than 1, suggesting that the metals in the ore-forming fluid are sourced from sedimentary rocks. The coupled behavior between Au and As; Au and Sb suggests that the substitution of As and Sb in pyrite can enhance the incorporation of Au. Variation of trace elements in pyrites of different stages suggests some information on the mineralization processes: Large ion lithophile elements (such as Ba and Pb) are enriched in Py0 indicating that water-rock reaction occurred in the Early stage; Fine-grained Py1 with a heterogeneous distribution of elements suggests fast crystallization of pyrite in the Middle stage.  相似文献   

15.
甘孜–理塘缝合带是四川重要的金矿带之一。梭罗沟大型金矿床是该带上的典型矿床,但其矿床成因仍存在争议。为了准确厘定其矿床成因,本文对梭罗沟金矿床中的它形和自形(五角十二面体)的载金黄铁矿进行了LA-ICP-MS原位微量元素分析。结果显示梭罗沟它形黄铁矿元素含量变化较小,较为集中,而自形黄铁矿具有明显的核–幔–边结构,元素含量变化范围较大。总体上,两种黄铁矿中Au与As均具有明显的正相关性,但Au与FeS2和Co/Ni值具有负相关性。它形黄铁矿和自形黄铁矿的Co/Ni值分别为0.2和57.1,两者都具有较高的Au和较低的Ag含量;这表明它形黄铁矿主体来源于沉积作用,受后期成矿热液改造,而自形黄铁矿属于热液成因。梭罗沟金矿床成矿过程为火山–沉积岩中的Au在变质热液作用下再活化富集的结果,属于典型的造山型金矿床。  相似文献   

16.
The Zimudang gold deposit is a large Carlin‐type gold deposit in the Southwest Guizhou Province, China, with an average Au content of 6.2 g/t. Gold is mainly hosted in the fault zone and surrounding strata of the F1 fault and Permian Longtan Formation, and the ore bodies are strictly controlled by both the faults and strata. Detailed mineralogy and geochemistry studies are conducted to help judge the nature of ore‐forming fluids. The results indicate that the Au is generally rich in the sulfides of both ores and wall rocks in the deposit, and the arsenian pyrite and arsenopyrite are the main gold‐bearing sulfides. Four subtypes of arsenian pyrite are found in the deposit, including the euhedral and subhedral pyrite, framboidal pyrite, pyrite aggregates and pyrite veins. The euhedral and subhedral pyrite, which can take up about 80% of total pyrite grains, is the dominant type. Au distributed unevenly in the euhedral and subhedral pyrite, and the content of the Au in the rim is relatively higher than in the core. Au in the pyrite veins and pyrite aggregates is lower than the euhedral and subhedral pyrite. No Au has been detected in the points of framboidal pyrites in this study. An obvious highly enriched As rim exists in the X‐ray images of euhedral pyrites, implying the ore‐forming fluids may be rich in As. The relationship between Au and As reveals that the Au may host as a solid solution (Au+) and nanoparticles of native gold (Au0) in the sulfides. The high Co/Ni ratio (>1) of sulfides and the enrichment of W in the ores all reflect that the gold‐bearing minerals and ore‐forming process were mainly related to the hydrothermal fluids, but the magmatic and volcanic activities cannot be neglected. The general existence of Au and As in the sulfides of both ores and wall rocks and the REE results suggest that the ore‐forming fluids may mainly be derived from the basin itself. The enrichment of Tl suggests that the ore‐forming fluids may be enriched in Cl. The Ce and Eu show slightly or apparently negative anomalies, which means the ore fluids were probably formed under reducing environment. The Y/Ho ratios of ore samples fluctuate around 28, implying the bicarbonate complexation and fluorine were both involved in the ore‐forming process. Combined with the previous studies and our results, we infer that the ore‐forming fluids enriched Au, As, HS? and halogen (F, Cl) were derived from the mixture of reducing basinal fluids and magmatic or volcanic hydrothermal fluids.  相似文献   

17.
阿沙哇义金矿床是中国新疆西南天山目前探明的第二大金矿,是中亚造山带南缘"亚洲金腰带"的重要组成部位。野外构造调查表明,研究区在古生代期间经历了由挤压变形发展为走滑伸展两次构造作用,成矿发生在挤压变形到走滑伸展转换时期。运用矿相学、电子探针、扫描电镜及S同位素等方法确定矿床载金矿物、金的赋存状态、成矿物质来源等,结果表明:阿沙哇义金矿载金矿物主要为含砷黄铁矿、部分毒砂。含砷黄铁矿分为沉积成岩期(Py1)、成矿早期(Py2)、成矿期(Py3);Py2、Py3富As、Te,亏S、Fe,S、As呈明显负相关;Co/Ni比值显示黄铁矿属沉积-热液成因。Au以纳米级"可见"自然金(Au0)形式存在于含砷黄铁矿中。黄铁矿、辉锑矿δ34S为9.5‰~16.3‰,显示成矿流体中硫为海相硫酸盐热化学还原产物,成矿物质来自赋矿地层。矿床属典型的中浅成造山型金矿,矿床埋藏较浅,矿区深部具有很好的找矿潜力。   相似文献   

18.
太平洞金矿床是我国黔西南地区典型的卡林型金矿床之一。然而,由于发现时间短,其勘探和研究程度较低,对矿床成因模式和成矿机制的认识有待深入。本文在野外调查的基础上,详细分析了太平洞金矿床矿石的显微组构特征,对主要载金矿物——黄铁矿进行了岩相学鉴定、电子探针成分分析(EPMA)以及Nano-SIMS微量元素面扫描(Mapping)和原位微区硫同位素分析。显微镜下观察发现,矿石中的黄铁矿按形态分为草莓状黄铁矿、半自形?自形黄铁矿以及不规则状黄铁矿。电子探针成分分析表明黄铁矿中含有As(0~8.482%)、Au(0~0.092%)、Co(0.059%~0.195%)、Cu(0~0.407%)、Cr(0~0.083%)、Zn(0~0.016%)等多种微量元素。元素相关性分析证实As与S呈负相关关系。背散射电子图像(BSE)显示载金黄铁矿普遍发育环带结构,根据As元素的分布特征将环带黄铁矿细分可为PyⅠ(核部贫As的黄铁矿)和PyⅡ(核部富As的黄铁矿)两类。载金环带黄铁矿的元素面扫描及原位微区硫同位素分析表明:PyⅠ核部富Zn、Cr、Ni元素,贫As,δ34S值多分布在1.1‰~5.9‰,环带则相对富集As、Au、Cu、Mn等元素,δ34S值为–0.7‰~4.7‰;PyⅡ包括成矿期形成的富As核部(δ34S值分别为0.6‰、4.7‰)和宽度不等的增生环带(δ34S值为–1.6‰、3.7‰)。通过对比国内外卡林型金矿载金黄铁矿原位硫同位素特征,推断贵州太平洞金矿床中的硫来源于深部岩浆硫。同时,Nano-SIMS元素面扫描分析对BSE图像显示的黄铁矿环带中元素的分布进行了高分辨率的呈现,揭示了环带尺度的元素分带性——成矿过程中流体活动的"脉冲"效应,即增生环带往往是由更次一级的生长环带所组成的。高分辨率的元素面扫描结合原位微区硫同位素分析表明,黔西南地区的卡林型金矿的形成可能源于深部就位的岩浆分异出的载金气?液流体沿断裂系统经长距离运移到达地表,并充填?交代围岩成矿。  相似文献   

19.
《China Geology》2020,3(2):230-246
The Dongyang gold deposit is a newly discovered epithermal deposit in Fujian Province, Southeast China, along the Circum-Pacific metallogenic belt. Herewith, the authors present mineralogical, scanning electron microscope, and laser ablation inductively coupled clasma mass spectrometry analysis to reveal the relations between Au and Te, As, S, Fe, etc., and discuss the gold precipitation process. The pyrites in this deposit are Fe-deficient, and are enriched in Te and As. The authors infer that As was mainly in form of As-complexes, and Te-Au-Ag inclusions/solid solution also exsits in the Py I. Along with the depletion of Te and As, they were less active chemically in the Py II, and Au may be incorporated into As-rich and Fe-deficient surface sites by chemisorption onto As-rich growth surfaces. Because of the incorporation of new fluid, Te and As became the most active chemically in the Py III, which was the main elements precipitation stage, and As dominantly substituted for S in the lattice of pyrite, due to the more reducing condition. The authors propose Au was in form of invisible gold, and the incorporation of gold can be considered as post-pyrite event, while the Au-bearing minerals were result of post incorporation of gold in arsenian pyrite.  相似文献   

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