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1.
胶东胡八庄金矿成矿流体、稳定同位素及成矿时代研究   总被引:8,自引:4,他引:4  
胡八庄金矿是胶东牟平-乳山金成矿带内典型的黄铁矿、多金属硫化物-石英脉型金矿,金主要产出于黄铁矿和多金属硫化物石英脉中。流体包裹体研究表明,不同蚀变带岩石和各成矿阶段金矿石中的流体包裹体主要有三种类型:富CO2包裹体、CO2-H2O包裹体和H2O溶液包裹体。成矿早期(第Ⅰ阶段)主要为富CO2包裹体,主成矿期(第Ⅱ阶段)CO2-H2O包裹体和H2O溶液包裹体,成矿后期(第Ⅲ阶段)H2O溶液包裹体。包裹体显微测温结果表明,成矿早期(第Ⅰ阶段)包裹体均一温度范围为260~360℃,盐度1.0%~7.4% NaCleqv;主成矿期(第Ⅱ阶段)包裹体均一温度范围为180~269℃,盐度1.7%~13.1% NaCleqv;成矿后期(第Ⅲ阶段)包裹体均一温度范围为104~189℃,盐度0.9%~8.8% NaCleqv。成矿早期为中-高温、富含挥发份、低盐度的流体,到主成矿期演化为中低温、含少量挥发份、盐度变化范围大的CO2-H2O-NaCl流体体系,成矿后期流体的温度、盐度和挥发份含量均降低。对各成矿阶段石英的H-O同位素研究表明,胡八庄金矿成矿早期既有岩浆水又有大气降水参与,大气降水较少地参与了成矿,到了主成矿期成矿流体为以大气降水为主的混合流体。成矿阶段S同位素研究表明胡八庄金矿成矿物质可能主要来源于大气降水循环淋滤的围岩。温度降低和流体不混溶可能是胡八庄金矿金沉淀的主要原因。蚀变岩石中绢云母Rb-Sr等时线获得的胡八庄金矿的成矿时代为126.5±5.6Ma。  相似文献   

2.
贵州太平洞金矿床流体包裹体特征及流体不混溶机制   总被引:7,自引:2,他引:5  
太平洞金矿床是兴仁-安龙金矿带灰家堡金矿区的重要卡林型金矿之一。流体包裹体研究证明,石英-黄铁矿阶段(Ⅰ)、石英-黄铁矿-毒砂阶段(Ⅱ)、石英-方解石-雄黄阶段(Ⅲ)的包裹体类型丰富,以气液水两相包裹体、CO2-H2O包裹体和纯液相水包裹体为主,CO2两相包裹体、纯气相有机质包裹体和有机质-H2O包裹体次之,偶见气液有机质包裹体。由Ⅰ→Ⅱ→Ⅲ阶段,气液水包裹体均一温度(200~260℃→180~240℃→100~160℃)呈现逐渐降低的趋势。在Ⅰ阶段的石英中,只在局部偶见到CO2-H2O包裹体和气液两相水包裹体共生;在Ⅱ阶段的石英中,纯液相水包裹体、气液两相盐水包裹体、CO2-H2O包裹体、CO2包裹体及纯气相有机质包裹体共存,它们共生在同一平面中且气液两相盐水包裹体和CO2-H2O包裹体测温数据相差不大,说明当时捕获的是不均匀成矿流体,它是由含有机质的成矿流体经历了CO2-低盐度水的不混溶作用形成的。因而认为,太平洞金矿床中成矿早期流体不混溶作用不明显,主成矿阶段流体的不混溶作用是导致金矿质沉淀的重要原因。  相似文献   

3.
西秦岭铧厂沟金矿床流体包裹体特征研究及矿床成因   总被引:3,自引:0,他引:3  
铧厂沟金矿位于西秦岭勉略缝合带南侧,其产出受韧脆性剪切带控制,赋矿围岩为泥盆系细碧岩、凝灰质绢云千枚岩和灰岩。根据脉体穿切关系和矿物交代关系,可以将铧厂沟金矿分为早、中、晚3个成矿阶段。在铧厂沟金矿的石英中发育了CO2-H2O型、纯CO2型、H2O溶液型和含子矿物型四种类型流体包裹体。早期石英中原生包裹体主要是CO2-H2O型和纯CO2型,其成分为CO2+H2O±N2±CH4±H2S,均一温度集中在320~360℃,盐度为0.43%~5.14% NaCleqv;中阶段为主成矿阶段,该阶段石英中包含了所有四种类型的包裹体,其中H2O溶液型包裹体占了大多数,CO2-H2O和水溶液包裹体均一温度集中在240~320℃,盐度为0.43%~11.19% NaCleqv;晚阶段石英仅发育水溶液型包裹体,具有较低的均一温度(118~228℃)和盐度(0.18%~6.59% NaCleqv)。根据CO2-H2O型包裹体计算主成矿阶段压力为70~195MPa,成矿深度为5~7km。总体而言,铧厂沟金矿的初始流体具有中高温、富CO2、低盐度的变质流体特征,晚成矿阶段流体演化为低温、低盐度水溶液流体,流体的不混溶导致了主成矿期的矿质的大量沉淀,铧厂金矿为中浅成的造山型矿床。  相似文献   

4.
山东金翅岭金矿成矿流体特征   总被引:2,自引:0,他引:2  
杜高峰 《地质与勘探》2012,48(4):677-684
[摘 要]通过流体包裹体岩相学、显微测温学和包裹体稀土元素等的分析,研究山东金翅岭金矿床成矿流体性质和演化,研究结果表明:流体包裹体主要为气液两相包裹体,另有少量液相包裹体。包裹体气相成分主要以H2O、CO2为主。液相成分属Na+-K+-Ca2+-Mg2+-Cl--SO2-4体系,成矿流体为岩浆热液夹有变质水和大气降水的混合流体。流体包裹体的均一温度介于140~350℃,金的主成矿期为第域和第芋阶段,成矿温度范围为290℃~185℃,流体盐度介于7.3%~8.9%,为中-低温、低盐度的成矿流体。石英、黄铁矿包裹体稀土元素特征研究表明:轻稀土富集,重稀土亏损,具有中等负铕异常,标准化曲线为略右倾曲线。  相似文献   

5.
吉林省海沟石英脉型金矿床流体包裹体特征及地质意义   总被引:1,自引:0,他引:1  
海沟金矿床地处夹皮沟-海沟成矿带东南端,为典型的石英脉型金矿。该矿床产于海西期花岗杂岩体中,由多条含金石英脉组成。成矿过程可分为4个阶段:Ⅰ. 钾长石-石英脉阶段;II. 乳白色石英-(少)黄铁矿-(少)金阶段;III. 多金属硫化物-石英-金阶段;IV. 碳酸盐-石英-黄铁矿阶段。流体包裹体研究表明,海沟金矿各阶段流体包裹体存在一定差异,早期成矿阶段(第Ⅱ阶段)以H2O-NaCl包裹体(Ⅰ类)为主,偶见含子晶包裹体(Ⅳ类);主成矿阶段(第Ⅲ阶段)以CO2-H2O-NaCl包裹体(II类)为主,并含有少量纯CO2包裹体(III类);成矿后阶段(第Ⅳ阶段)以H2O-NaCl包裹体(Ⅰ类)为主。早期成矿阶段、主成矿阶段、成矿后阶段均一温度范围分别为227~497℃、189~427℃、130~267℃,对应盐度分别为0.53%~10.23% NaCleqv、0.35%~9.23% NaCleqv、0.18%~3.27% NaCleqv。早期成矿阶段和主成矿阶段包裹体均一温度、盐度相对较高,成矿后阶段包裹体均一温度、盐度明显降低;在空间上,主成矿阶段矿床深部包裹体的盐度较矿床浅部偏高。拉曼和气相色谱结果显示,包裹体气相成分以H2O、CO2、N2、CH4、C2H6为主,并含有少量H2S,成矿流体为低盐度的H2O-CO2-NaCl±CH4流体;包裹体液相离子成分主要为Na+、K+、Ca2+、Cl-,个别包裹体中含有少量Mg2+、F-离子。主成矿阶段不同类型、不同相比包裹体均一温度相近,显示不混溶特征。流体减压引起的不混溶作用可能是海沟金矿金沉淀的主要原因。  相似文献   

6.
西藏弄如日金矿流体包裹体研究   总被引:4,自引:0,他引:4  
弄如日金矿床位于青藏高原南部冈底斯-喜马拉雅构造区的冈底斯构造岩浆带东段,是该成矿带上首次发现的浅成低温热液型金锑矿床。本文在详细的野外矿床地质研究基础上,通过对各期与成矿密切相关的流体包裹体岩相学、显微测温分析、包裹体成分的LRM分析和包裹体中子矿物相的SEM/EDS分析等,对与矿化有关的成矿流体的特征、演化以及金的迁移与沉淀机制进行了讨论。通过研究流体成矿过程包括:形成黄铁矿-石英组合的早期阶段,发育以含子矿物的三相包裹体为主,均一温度集中于256~335℃,盐度29.7%~38.9% NaCleqv;形成毒砂-富砷黄铁矿-石英组合的主成矿阶段,发育富CO2包裹体,均一温度集中于230~357℃,盐度1.81%~9.74% NaCleqv,CO2密度为0.16~0.29g·cm-3;形成辉锑矿-石英、雄黄-石英和碳酸岩脉组合的晚期阶段,发育水溶液包裹体,均一温度集中于134~245℃,盐度1.91%~8.95% NaCleqv。与金成矿有关的流体为中温、低盐度的富CO2、CH4、N2、Na+流体体系,成矿流体温度、压力降低造成了流体不混溶,使CO2相与水溶液相分离是造成金沉淀的主要机制。  相似文献   

7.
通过对东沟铜矿床的成矿特征、流体包裹体地球化学以及矿床成因研究,获得了如下认识:① 成矿环境为晚寒武世的大洋扩张脊环境,容矿岩石为蛇绿岩套上部的基性火山岩,矿床成矿金属组合为Cu-Zn(少量),围岩蚀变主要有硅化、绿泥石化、碳酸盐化及绿帘石化等,其中,硅化、绿泥石化与矿体的关系最为密切;② 对不同类型矿石中黄铁矿、黄铜矿的电子探针分析均表明,具有低温或中低温热液成矿的特征;③ 流体包裹体地球化学研究表明,该区成矿期石英中包裹体类型简单,仅有纯液体包裹体和液体包裹体,气相分数低,液体包裹体气相成分以CO2为主,液相成分主要为H2O;矿床成矿流体温度为150~200℃,盐度w(NaCleq)为13%~16%,密度为0.87~0.95 g/cm3;④ 矿床属于"塞浦路斯"型块状硫化物矿床。关键字 地球化学;成矿特征;流体包裹体;塞浦路斯型矿床;东沟铜矿;北祁连  相似文献   

8.
孟献真 《地质与勘探》2012,48(3):580-591
[摘 要] 基于对甘肃省文县阳山金矿床的构造变形分析、石英组构分析及流体包裹体研究,探讨了阳山金矿床的形成过程和热液成矿机制,认为自三叠纪以来,该区先后经历了韧性、韧-脆性及两期脆性等多期构造变形演化过程,并伴随多次岩浆热液活动。流体包裹体显微测温结果显示本区的均一温度主要集中在265~290℃,215~240℃和165~190℃等三个区间,流体组份体系接近于NaCl-H2O-CO2体系,成矿流体密度估计在0.98~1.02g/cm3之间,成矿压力估计为89.6 MPa,流体包裹体盐度估计在0.7%~9.4% NaCl之间激光拉曼显示其主要成分为H2O和CO2,据不同类型包裹体共生组合及流体演化特征,认为不同流体的混合是导致大量金沉淀的主要原因。  相似文献   

9.
藏南折木朗造山型金矿成矿流体地球化学和成矿机制   总被引:5,自引:4,他引:1  
折木朗金矿位于青藏高原雅鲁藏布江缝合带东段的南侧,矿体受大型脆-韧性剪切带的次级断裂控制。系统的显微测温和激光拉曼测定显示折木朗金矿矿石中存在3类流体包裹体: NaCl-H2O溶液包裹体(类型Ⅰ);含CO2盐水溶液包裹体(类型Ⅱ),此类包裹体又分为两相(Ⅱa)和三相(Ⅱb)2个小类;Ⅲ纯气相包裹体。折木朗金矿床中流体包裹体显微测温显示该矿成矿流体的盐度范围为2.31%~7.39% NaCleqv,平均值为5.33%% NaCleqv,峰值为4.0%~7.0% NaCleqv;均一温度的范围为164.5~273.1℃,峰值为220~240℃,平均值为221.0℃。相对应的密度范围为0.82~0.93g·cm-3,峰值为0.84~0.90g·cm-3,平均值为0.88g·cm-3。折木朗金矿床成矿流体具有富含CO2、低盐度、低密度、中低温度的特征,与造山型金矿成矿流体相似。此外,同位素测定显示成矿流体的氢氧碳同位素组成分别为δDH2O=-36.7‰~-107.5‰,δ18OH2O=4.1‰~5.5‰,δ13C=-9.6‰~-11.5‰,说明成矿流体主要为变质水,但有地幔流体的加入。综合成矿地质特征和成矿流体的证据,提出折木朗金矿为陆陆碰撞造山型金矿。  相似文献   

10.
云南哀牢山老王寨大型造山型金矿成矿流体地球化学   总被引:12,自引:4,他引:8  
云南哀牢山金矿带是我国最重要的喜马拉雅期金矿带,而老王寨是其中最大的金矿。流体包裹体研究显示:老王寨金矿含金石英脉中流体包裹体类型主要为NaCl-H2O型和CO2-H2O型,其均一温度为102~302℃, 峰值为160~180℃;流体盐度范围变化较大,介于2.5%~12.9% NaCleqv之间,峰值为6.0%~7.5% NaCleqv,显示老王寨成矿流体具有中低盐度和中低温度的特征。 氢氧同位素测定显示成矿流体δDH2O=-115‰~-90‰,δ18OH2O=5.2‰~6.8‰,显示其组成主要为岩浆水,可能与有机沉积物发生过同位素交换。流体包裹体碳同位素组成(δ13C为-6.5‰~-3.9‰)基本落在幔源碳变化范围之内,说明其中CO2可能来自地壳深部,甚至上地幔。综合成矿地质特征和成矿流体的证据,提出老王寨金矿为喜马拉雅期造山型金矿。  相似文献   

11.
THEJINLONGSHANGOLDOREBELTINZHEN’ANCOUN TY,SOUTHERNSHAANXIPROVINCE,ISLOCATEDINTHEWEST ERNQINLINGGOLDPROVINCE(NO.16INFIG.1;CHEN YANJINGETAL.,2004).ITWASDISCOVEREDINTHEDEVO NIANSTRATAINTHELATE1980S).ITSGEOLOGICALSETTING ANDMETALLOGENICEVOLUTIONARESIMILARTOT…  相似文献   

12.
河南西峡石板沟金矿成矿流体地球化学及矿床成因讨论   总被引:5,自引:2,他引:3  
张德会  刘伟 《现代地质》1999,13(2):130-136
石板沟金矿是近年在豫西南发现的一个剪切带容矿的脉状金矿。根据流体包裹体地球化学研究,分析了矿床成矿流体地球化学特征,讨论了金的沉淀机制和矿床成因。构造蚀变岩型金矿的形成主要与热液蚀变作用有关,石英脉型金矿的形成,则可能主要与岩浆热液与变质热液的混合作用有关。矿质主要源自晋宁期岩浆岩,成矿流体和热能主要来自海西期花岗岩。矿床为剪切带容矿的中低温热液金矿床。  相似文献   

13.
西秦岭凤太矿集区丝毛岭金矿床地质地球化学特征   总被引:1,自引:0,他引:1  
西秦岭凤太矿集区丝毛岭金矿床位于八卦庙造山型金矿床西侧5km左右,是一个新探明的剪切带型金矿。其成矿作用过程可分为早期石英-绢云母-硫化物阶段、中期多金属-硫化物阶段和晚期碳酸盐阶段。对早、中期的石英流体包裹体测试结果表明,丝毛岭金矿床成矿流体以富CO2、中温、低盐度为特征,总体上属于中温低盐度CO2-H2O体系,流体包裹体类型的多样性是流体不混溶性的产物。从早阶段到主成矿阶段成矿流体的温度、压力和盐度均有降低,硫逸度增高,有利于金的沉淀富集。H、O、S、C同位素研究结果,以及与八卦庙金矿床的对比分析表明,二者的成矿流体具有相似性和同源性,都是以深部来源为主的多源流体。由于丝毛岭金矿床产出的层位高于八卦庙金矿床,其成矿环境相对开放。  相似文献   

14.
Located in Alxa Zuoqi (Left Banner) of Inner Mongolia, China, the Zhulazhaga gold deposit is the first largescale gold deposit that was found in the middle-upper Proterozoic strata along the north margin of the North China craton in recent years. It was discovered by the No. l Geophysical and Geochemical Exploration Party of Inner Mongolia as a result of prospecting a geochemical anomaly. By now, over 50 tonnes of gold has been defined, with an average Au grade of 4 g/t. The ore bodies occur in the first lithological unit of the Mesoproterozoic Zhulazhagamaodao Formation (MZF), which is composed mainly of epimetamorphic sandstone and siltstone and partly of volcanic rocks. With high concentration of gold,the first lithological unit of the MZF became the source bed for the late-stage ore formation. Controlled by the interstratal fracture zones, the ore bodies mostly appear along the bedding with occurrence similar to that of the strata. The primitiveore types are predominantly the altered rock type with minor ore belonging to the quartz veins type. There are also some oxidized ore near the surface. The metallic minerals are composed mainly of pyrite, pyrrhotite and arsenopyrite with minor chalcopyrite, galena and limonite. Most gold minerals appear as native gold and electrum. Hydrothermal alterations associated with the ore formation are actinolitization, silicatization, sulfidation and carbonation. A total of 100 two-phase H2O-rich and 7 three-phase daughter crystal-beating inclusions were measured in seven goldbearing quartz samples from the Zhulazhaga gold deposit. The homogenization temperatures of the two-phase H2O-rich inclusions range from 155 to 401℃, with an average temperature of 284℃ and bimodal distributions from 240 to 260℃ and 300 to 320℃ respectively. The salinities of the two-phase H2O-rich inclusions vary from 9.22wt% to 24.30wt% NaCl eqniv, with a mode between 23 wt% and 24wt% NaC1 equiv. Comparatively, the homogenization temperatures of the threephase daughter crystal-beating inclusions vary from 210 to 435℃ and the salinities from 29.13wt% to 32.62wt% NaCl equiv. It indicates that the ore-forming fluid is meso-hypothermal and characterized by high salinity, which is apparently different from the metamorphic origin with low salinity. It suggests a magmatic origin of the gold-bearing fluid. The δ^18O values of quartz from auriferous veins range from 11.9 to 16.3 per mil, and the calculated δ^18OH2O values in equilibrium with quartz vary from 1.06 to 9.60 per mil, which fall between the values of meteoric water and magmatic water. It reflects that the ore-forming fluid may be the product of mixing of meteoric water and magmatic water.Based on geological and geochemical studies of the Zhulazhaga gold deposit, it is supposed that the volcanism in the Mesoproterozoic might make gold pre-concentrate in the strata. The extensive and intensive Hercynian tectono-magmatic activity not only brought along a large number of ore-forming materials, but also made the gold from the strata rework. It can be concluded that the ore bodies were mainly formed in late hydrothermal reworking stage. Compared with typical gold deposits associated with epimetamorphic clastic rocks, the Zhulazhaga deposit has similar features in occurrence of ore bodies, ore-controlling structure, wall-rock alterations and mineral assemblages. Therefore, the Zhulazhaga gold deposit belongs to the epimetamorphic clastic rock type.  相似文献   

15.
The recently discovered Damoqujia (大磨曲家) gold deposit is a large shear zone-hosted gold deposit of disseminated sulphides located in the north of the Zhaoping (招平) fault zone, Jiaodong (胶东) gold province, China. In order to distinguish the temperature range of cluster inclusions from different mineralization stages and measure their compositions, 16 fluid inclusions and 5 isotopic geochemistry samples were collected for this study. Corresponding to different mineralization stages, the multirange peaks of quartz decrepitation temperature (250-270, 310-360 and 380-430℃(2) indicate that the activity of ore-forming fluids is characterized by multistage. The ore-forming fluids were predominantly of high-temperature fluid system (HTFS) by CO2-rich, and SO2-4-K type magmatic fluid during the early stage of mineralization and were subsequently affected by low-temperature fluid system (LTFS) of CH4-rich, and Cl--Na /Ca2 type meteoric fluid during the late stage of mineralization. Gold is transferred by Au-HS- complex in the HTFS, and Au-Cl- complex can be more important in the LTFS. The transition of fluids from deeper to shallow environments results in mixing between the HTFS and LTFS, which might be one of the most key reasons for gold precipitation and large-scale mineralization. The ore-forming fluids are characterized by high-temperature, strong-activity, and superimposed mineralization, so that there is a great probability of forming large and rich ore deposit in the Damoqujia gold deposit. The main bodies are preserved and extend toward deeper parts, thereby suggesting a great potential in future.  相似文献   

16.
江西大吉山钨多金属矿床流体包裹体研究   总被引:8,自引:3,他引:5  
大吉山钨矿床是赣南地区的一个大型钨多金属矿床,由石英脉型钨矿体和花岗岩浸染型钨、钽、铌、铍矿体构成.在详细的岩相学观察的基础上,文章采用“流体包裹体组合”法,对石英脉型矿体和花岗岩浸染型矿体石英中的流体包裹体进行了显微测温和拉曼探针分析.研究表明,与石英脉型矿体成矿相关的流体为中-高温、中-低盐度的NaCl-H2O-CO2-CH4±N2体系,与花岗岩浸染型矿体成矿相关的流体为高温、中-低盐度的NaCl-H2O±CO2±CH4体系,两者流体的性质不同.笔者认为,在流体体系冷却过程中,所发生的以CO2逸失为特征的流体不混溶作用是石英脉型矿体的主要形成机制,而花岗岩浸染型矿体中金属元素的沉淀则主要由流体体系的冷却作用所致,这两类矿体的成矿流体的来源可能不同.  相似文献   

17.
河南省老湾金矿床地球化学特征及矿床成因   总被引:3,自引:0,他引:3  
在详细分析河南省老湾金矿床成矿地质背景、矿床地质特征的基础上,研究该矿床流体包裹体和氢、氧、硫、铅同位素,结果表明该金矿床的成矿流体为中低温、低盐度的富CO2的K+-Na+ -Cl--SO 2-4体系。氧、氢同位素分析显示,成矿流体δ18O值变化于-5.25‰~+5.37‰,δD变化于-67‰~-76‰,表明成矿流体主要来源于岩浆水和大气降水;硫化物的δ34S值变化于-0.1‰~+5.3‰,平均值为+3.98‰,显示深源硫的特征;Pb同位素组成显示铅主要来源于地幔,有少量地壳铅的加入。综合研究表明,老湾金矿床为受韧性剪切带控制的中-低温热液构造蚀变岩型金矿床。   相似文献   

18.
马家窑金矿床是胶东地区比较典型的石英脉型金矿床代表,属中低温热液矿床,成矿流体盐度较低,气相成分以H2O,CO2为主,其次是Na^+,Ca^+和Cl^-,K^+和F^-较贫,流体的成分与大气降水热液相类似。成矿流体的H,O同位素值则反映大气降水在不同温度和不同水/岩值条件下与栖霞超单元回龙夼单元交换后的分布特征,认为马家窑金矿床的成矿热液属大气降水成因。  相似文献   

19.
The Jinman Cu polymetallic deposit is located within Middle Jurassic sandstone and slate units in the Lanping Basin of southwestern China. The Cu mineralization occurs mainly as sulfide‐bearing quartz–carbonate veins in faults and fractures, controlled by a Cenozoic thrust–nappe system. A detailed study of fluid inclusions from the Jinman deposit distinguishes three types of fluid inclusions in syn‐ore quartz and post‐ore calcite: aqueous water (type A), CO2–H2O (type B), and CO2‐dominated (type C) fluid inclusions. The homogenization temperatures of CO2–H2O inclusions vary from 208°C to 329°C, with corresponding salinities from 0.6 to 4.6 wt.% NaCl equivalent. The homogenization temperatures of the aqueous fluid inclusions mainly range from 164°C to 249°C, with salinities from 7.2 to 20.2 wt.% NaCl equivalent. These characteristics of fluid inclusions are significantly different from those of basinal mineralization systems, but similar to those of orogenic or magmatic mineralization systems. The H and O isotope compositions suggest that the ore‐forming fluid is predominantly derived from magmatic water, with the participation of basinal brine. The δ34S values are widely variable between ?9.7 ‰ and 9.7 ‰, with a mode distribution around zero, which may be interpreted by the variation in physico‐chemical conditions or by compositional variation of the sources. The mixing of a deeply sourced CO2‐rich fluid with basinal brine was the key mechanism responsible for the mineralization of the Jinman deposit.  相似文献   

20.
依据阿西金矿床H、O同位素组成特点对成矿流体的来源进行了示踪研究,并且研究了矿床的水岩交换作用,讨论了水-岩作用与金成矿的关系.根据矿床中典型热液矿物和岩矿石的稀土元素地球化学特征对成矿流体作用过程进行了示踪研究,与同位素地球化学示踪研究取得了基本一致的结果.根据成矿流体活动踪迹建立找矿标志,是进行矿产资源预测的新思路.  相似文献   

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