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1.
通过光学显微镜、电子显微镜并结合能谱分析,在金青顶金矿Ⅱ号矿脉深部除含碲化物碲银矿、碲金银矿和碲铋矿外,首次发现碲金矿的存在,进一步证实了前人对于该矿床中存在碲金矿这一新矿物的推测,也打破了该金矿深部无碲金银矿的传统认识。这些碲化物呈连生体或者细脉状产于黄铁矿等硫化物、石英与黄铁矿裂隙中。在金银碲化物矿物中,Te含量变化较小,Au含量变化较大,与Ag呈负相关,与Bi为正相关。结合金-银-碲矿物成分-共生图解,对金银碲化物矿物的共生组合特征进行了研究。研究表明,Te总是优先与Ag结合形成碲银矿或碲金银矿,只有热液中Ag被消耗后才与Au结合形成碲金矿,最后Te被耗尽,矿液中残留很多的Au,从而形成自然金,说明随着成矿过程的演化,成矿热液可能逐渐富金,具体表现为碲银矿-碲金银矿-碲金矿-自然金的析出顺序。  相似文献   

2.
黑龙江三道湾子金矿Au-Ag-Te系列矿物特征及其成矿流体   总被引:5,自引:1,他引:4  
本文采用光学显微镜、扫描电镜和电子探针对黑龙江省三道湾子金矿中Au-Ag-Te系列矿物碲银矿、碲金银矿、针碲金银矿、斜方碲金矿和碲金矿进行了详细的矿物学研究,本次研究还发现Au2Te的存在。碲化物矿物多呈粒状或脉状分布于石英或硫化物矿物的裂隙中。Au-Ag-Te系列矿物中,Au含量与Ag含量呈负相关性,与Te含量呈弱的负相关性。结合Au-Ag-Te成分共生图解及镜下特征对金银碲化物矿物共生组合进行分析表明Te优先与Ag结合形成碲银矿或碲金银矿,只有成矿流体中Ag被大量消耗后,Te才与Au结合形成针碲金银矿、斜方碲金矿、碲金矿,最后当成矿流体中Te也被大量消耗后,Au才会形成自然金。氦、氩同位素研究表明石英—黄铁矿阶段流体包裹体中3He/4He值为0.01~0.03Ra,金银碲化物阶段3He/4He值为0.08~1.04Ra,指示金银碲化物阶段有大量地幔物质参与。  相似文献   

3.
我国某些金矿床中金银碲化物矿物的共生关系   总被引:6,自引:0,他引:6  
结合Au-Ag-Te三元系的实验矿物学结果,对我国金驹山 、银坑山、归来庄和驾鹿四 个金矿床中的金银碲化物矿物的共生组合特征进行了研究,并阐明了金银碲化物矿物在时空 关系上的共生组合和禁生关系特征。研究表明,金银碲化物是该类型金矿床中最重要的一类 矿物,其产出的种类和数量取决于成矿体系溶液中Au、Ag、Te元素的浓度及其含量比值;而 成矿体系中碲金银矿、碲银矿等低温同质多像变体的存在,反映了该类型矿床形成于成矿温 度和压力较低的环境条件下。  相似文献   

4.
甘肃党河南山某金矿碲化物的发现及其成因探讨   总被引:1,自引:0,他引:1  
利用电子探针显微分析技术首次在甘肃党河南山某金矿中发现了碲金银矿、碲银矿、碲金矿、碲铅矿、碲铋矿等碲化物。通过电子探针显微图像观察,发现研究区碲化物均较为细小,赋存状态多以独立矿物形式存在,无连生、交生现象,但空间上与黄铁矿关系密切,多被黄铁矿包裹或产于黄铁矿、石英粒间和黄铁矿裂隙。根据不同碲化物与黄铁矿之间的共生组合关系,推测其形成顺序为碲金矿→碲金银矿→碲铅矿→碲铋矿→碲银矿。依据碲化物矿物组合特征及成矿温度,对其形成时fTe2与fS2进行了限定,lgfTe2范围为-15.2~-11.2,lgfS2范围为-16.7~-14.4。并认为金矿中Au、Te来源与加里东期埃达克质斜长花岗岩体有较大联系,可能为俯冲板片部分熔融形成的埃达克质岩浆与地幔楔相互作用,将成矿元素富集后带入近地表形成含碲化物的金矿床。  相似文献   

5.
黑龙江三道湾子碲金矿床物质组成及成因意义   总被引:3,自引:2,他引:1  
三道湾子碲金矿床位于黑龙江省北部大兴安岭中段成矿带的东部,为一典型的碲化物型金矿床.笔者采用显微镜观察和电子探针分析技术,确认该矿床的矿石中存在碲金银矿、针碲金银矿、碲金矿、碲银矿和碲铅矿等碲化物.矿石中也存在大量自然金颗粒,产在石英、碲金银矿的裂隙中,或与碲化物共生产出.电子探针分析结果显示,该矿床内自然金的w(Au...  相似文献   

6.
河南嵩县松里沟金矿床中碲化物的发现及其地质意义   总被引:1,自引:0,他引:1  
松里沟金矿位于华北陆块南缘熊耳山地区,已探明金资源储量26 t。矿体产于中新太古界-古元古界太华群片麻岩NWW向的断裂带中。其热液成矿过程包括4个成矿阶段:黄铁矿-石英阶段、石英-黄铁矿阶段、金-碲化物阶段和石英-碳酸盐阶段。显微镜下发现金-碲化物阶段存在大量与金共生的碲化物。利用电子探针和能谱分析查明碲化物的种类、共生关系和形成条件,确认的碲化物有碲铅铋矿、碲铅矿、碲铋矿、碲金矿、碲金银矿、硫碲铋铅金矿、辉碲铋矿,此外还有大量的自然金和少量的辉铋矿。该矿床为一与岩浆作用有关的碲金矿床。Au主要以自然金和金银碲化物的形式存在。Au、Ag以硫氢络合物的形式发生迁移,Te2(g)和H2Te(g)冷凝进入含贵金属的氯化物溶液是碲化物沉淀主要机制。相图及化学反应方程式分析表明,金-碲化物阶段受温度、碲逸度、硫逸度、氧逸度和酸碱度控制,其中,黄铁矿-石英阶段和石英-黄铁矿阶段形成于logf_(Te2)-14.4和logf_(S2)=-11.1~-6.5的环境。金-碲化物阶段形成于温度为110~313℃、logf_(Te2)=-15.2~-9.4和logf_(S2)=-16.5~-14.6、f_(O_2)升高和pH值降低的环境。碲化物的发现为探讨该矿床成因和熊耳山地区寻找同类型的矿床提供了依据。  相似文献   

7.
永新金矿床是早白垩世晚期形成的浅成低温热液型金矿床。对其主要金银系列矿物和碲化物研究显示:金银系列矿物中Au质量分数为65.092%~90.713%(平均为83.942%),Ag为5.652%~16.632%(平均为11.285%);以自然金和银金矿为主,成色集中在870.2~941.3(平均为881.1),主要以包体金、粒间金和裂隙金的形式存在,粒径集中在10~20 μm;碲化物主要有辉碲铋矿、碲金银矿、碲银矿和碲铅矿等,以碲银矿数量最多,主要包裹于黄铁矿内部或产于裂隙中,常与自然金和方铅矿连生,粒径多为5~20 μm。综合研究碲化物组合特征、不同标高金矿物的成色、Te/Au值等认为,永新金矿床碲化物形成时成矿流体的lgf(Te2)介于-15.2~-9.4范围,lgf(S2)介于-16.7~-14.0范围,矿床与火山或次火山热液有关,具备中浅成成矿特征,深部尚有较大成矿潜力。  相似文献   

8.
山东乳山金矿中金-银碲化物的矿物学特征与沉淀机理   总被引:6,自引:0,他引:6  
通过显微鉴定和应用电子探针微束分析,查明乳山金矿中碲化物主要为碲银矿和碲金银矿,少量碲铅矿和碲铋矿,它们呈密切共生的集合体或联生体产出在黄铁矿等硫化物及石英等脉石矿物粒问或裂缝中。碲银矿和碲金银矿中Au含量变化较大,w(Au)为痕量至26.1%,与银呈负相关,与铋为正相关,可能是以类质同象形式替代Ag进入到碲银矿中;碲铅矿中未检测到金。金在金-银碲化物中的含量随温度降低而升高,相关矿物的形成顺序为碲银矿-碲金银矿-(碲金矿)。将金银碲化物成分投到Au-Ag-Te三元成分,共生图解上发现,它们都不是标准成分的端元矿物,推测这些碲化物(尤其是金银碲化物)是在非平衡状态下快速沉淀形成的,可能与含矿浠体的闻歇忡沸腾作用有关。  相似文献   

9.
为探讨鲁西铜石地区归来庄金矿和卓家庄金矿的成矿物质来源及成矿机制,利用显微镜和电子探针对矿石中典型碲化物矿物进行了分析研究。结果显示,碲化物矿物主要为自然碲和碲银矿,其次是针碲金银矿、AgAu_2Te_6、含银自然金和碲铅矿,初步认为AgAu_2Te_6为新矿物。针碲金银矿、AgAu_2Te_6、部分碲银矿、含银自然金可能是在非平衡状态下快速沉淀而成,与含矿流体的间歇性沸腾作用有关。碲化物的沉淀顺序反映了其各自熔化温度的差异,说明熔点高的碲化物将优先沉淀。矿床成矿热液具有多来源性,可能存在含Au、Ag流体和Te流体,二者在一定的条件下发生不混溶;流体沸腾作用可能是导致碲化物和金等成矿物质快速沉淀的主要机制。  相似文献   

10.
胶东地区探明金储量超过5000t,是我国最重要的金矿集区。玲珑金矿区位于胶东西北部招-平断裂北段,具有典型含金石英脉矿床的特征。矿区部分矿段产出富碲铋化物的明金矿石,是研究富碲铋化物金矿床成因和金超级富集机制的理想对象。通过显微岩相学观察、扫描电镜及电子探针分析,首次对胶东玲珑金矿区富碲铋化物明金矿石的矿物组合和形成机制进行了较为详细的研究。玲珑金矿区含明金矿石中的金矿物主要为含银自然金,成色整体较高,平均为894。共发现了五种与自然金共生的碲化物,分别是辉碲铋矿、碲铋矿、碲银矿、碲铋银矿和碲镍矿,其中辉碲铋矿含量最多。通过矿物共生组合研究及物理化学条件分析,确定成矿流体的碲逸度范围为-12.6相似文献   

11.
北京市得田沟金矿床碲矿物系列的研究   总被引:3,自引:0,他引:3  
北京市得田沟金矿床是受韧性剪切带控制的金-黄铁矿-多金属硫化物石英脉型金矿床。笔者通过研究发现该矿床中的碲已达工业品位。  相似文献   

12.

At the well-preserved Yubileynoe VMS deposit (Southern Urals), sulfide breccias and turbidites host abundant tellurides represented by hessite, coloradoite, altaite, volynskite, stützite, petzite, and calaverite, as well as phases of the intermediate tellurobismuthite → rucklidgeite solid solution. Three telluride generations were highlighted: (1) primary hydrothermal tellurides in fragments of chalcopyrite and sphalerite of chalcopyrite-rich black smoker chimneys; (2) authigenic tellurides in pseudomorphic chalcopyrite and chalcopyrite veins after fragments of colloform and granular pyrite; and (3) authigenic tellurides in pyrite nodules. Authigenic tellurides are widespread in pyrite-chalcopyrite turbidites. Primary hydrothermal and authigenic tellurides are less common in sulfide turbidites and gritstones with fragments of sphalerite-pyrite, pyrite-sphalerite paleosmoker chimneys and clasts of colloform and fine-grained seafloor hydrothermal crusts. Siliceous siltstones intercalated with sulfide turbidites contain pyrite nodules, whose peripheral parts contain inclusions of epigenetic tellurides. It is assumed that Te for authigenic tellurides originated from fragments of colloform pyrite and hydrothermal chalcopyrite of pyrite-chalcopyrite chimneys, which dissolved during the postsedimentation processes. The main Te concentrators in clastic ores include pseudomorphic chalcopyrite, which inherits high Te, Bi, Au, Ag, Co, Ni, and As contents from the substituted colloform pyrite, and varieties of granular pyrite containing microinclusions of tellurobismuthite (Bi, Te), petzite (Au, Ag, Te), altaite (Pb, Te), coloradoite, and hessite (Ag, Te).

  相似文献   

13.
The first findings of Au and Ag tellurides (sylvanite and petzite) in sulfide-quartz ore of the Shirokinsky ore and placer cluster located in the Sette-Daban Horst-Anticlinorium are described. These minerals were found for the first time at the gold deposits of East Yakutia. The chemical compositions (wt %) of sylvanite (23.65–24.61 Au, 12.7–13.13 Ag, 59.3–59.97 Te, 96.26–97.97 in total) and petzite (23.17–25.24 Au, 42.27–44.40 Ag, 31.26–33.37 Te, 98.19–102.55 in total) are reported. Galena as a host mineral is associated with native gold, electrum, hessite, and stützite. The finding of Au-Ag and Ag tellurides provides evidence for the development of Au-telluride mineralization in the Sette-Daban Horst-Anticlinorium.  相似文献   

14.
Mineralogic studies of major ore minerals and fluid inclusion analysis in gangue quartz were carried out for the for the two largest veins, the Aginskoe and Surprise, in the Late Miocene Aginskoe Au–Ag–Te deposit in central Kamchatka, Russia. The veins consist of quartz–adularia–calcite gangue, which are hosted by Late Miocene andesitic and basaltic rocks of the Alnei Formation. The major ore minerals in these veins are native gold, altaite, petzite, hessite, calaverite, sphalerite, and chalcopyrite. Minor and trace minerals are pyrite, galena, and acanthine. Primary gold occurs as free grains, inclusions in sulfides, and constituent in tellurides. Secondary gold is present in form of native mustard gold that usually occur in Fe‐hydroxides and accumulates on the decomposed primary Au‐bearing tellurides such as calaverite, krennerite, and sylvanite. K–Ar dating on vein adularia yielded age of mineralization 7.1–6.9 Ma. Mineralization of the deposit is divided into barren massive quartz (stage I), Au–Ag–Te mineralization occurring in quartz‐adularia‐clays banded ore (Stage II), intensive brecciation (Stage III), post‐ore coarse amethyst (Stage IV), carbonate (Stage V), and supergene stages (Stage VI). In the supergene stage various secondary minerals, including rare bilibinskite, bogdanovite, bessmertnovite metallic alloys, secondary gold, and various oxides, formed under intensely oxidized conditions. Despite heavy oxidation of the ores in the deposit, Te and S fugacities are estimated as Stage II tellurides precipitated at the log f Te2 values ?9 and at log fS2 ?13 based on the chemical compositions of hypogene tellurides and sphalerite. Homogenization temperature of fluid inclusions in quartz broadly ranges from 200 to 300°C. Ore texture, fluid inclusions, gangue, and vein mineral assemblages indicate that the Aginskoe deposit is a low‐sulfidation (quartz–adularia–sericite) vein system.  相似文献   

15.
The Dongping gold deposit is a mesothermal lode gold deposit hosted in syenite. The ore petrography and chemistry of the tellurides from the alteration zone of the deposit have been studied in detail using optical microscopy, scanning electron microscopy, electron probe micro-beam and X-ray diffraction facilities. The tellurides, consisting mostly of calaverite, altaite, petzite tellurobismuthite and tetradymite, are hosted irregularly in pyrite fractures and voids. In the ore bodies, the species and quantity of tellurides decrease from the top downwards, accompanied with lowering of gold fineness, and the existence of tellurides exhibits a positive correlation with gold enrichment. Mineral paragenesis and chemical variations suggest that during evolution of the ore-forming fluids Te preferably incorporated with Pb to form altaite, followed in sequence by precipitation of petzite, and calaverite when Ag has been exhausted, and the residue fluids were enriched in Au, giving rise to formation of native gold. Calculation with reference of the fineness of native gold coexisting with the tellurides indicates that at 300 °C, log f (Te2) varied between − 8.650 and − 7.625. Taking account of the Au–Ag–Te mineral paragenesis, it is inferred that log ƒ (Te2) varies from − 9.12 to − 6.43, log ƒ (S2) − 11.47 to − 8.86. In consideration of the physicochemical conditions for formation of tellurides, with comparison to some known telluride deposits, it is suggested that high log ƒ (Te2) is a key factor for high fineness of native gold as well as precipitation of abundant tellurides.  相似文献   

16.
归来庄贫硫氧化型低温热液碲金矿床中金及碲化物矿物主要有自然金、碲金矿、碲金铜矿、碲银矿、碲金银矿、碲铅矿、碲镍矿、碲汞矿及自然碲等。金元素主要来源于泰山群山草峪组的片麻岩及寒武一奥陶系海相碳酸盐岩;碲元素主要是由铜石杂岩体的二长质、正长质等中偏碱性岩浆从地球深部的上地幔、下地壳带入矿区并进入由岩浆水及大气降水等组成的成矿热液中,与金元素形成碲金络合物进行搬迁、富集,因成矿体系的pH、Eh等物理化学  相似文献   

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