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1.
四川省石棉县大水沟碲床成矿物质来源的一些证据   总被引:1,自引:0,他引:1  
该矿床是一个新矿床类型。成矿作用分为磁黄铁矿-黄铁矿、辉碲铋矿和黄铁矿-黄铜矿三个阶段。矿化围三叠纪镁铁质火山岩。在矿脉周围广泛发育有以黑云母、白云母、石英和斜长石为代表的蚀普及分带。磁黄铁矿和辉碲铋矿的硫同位素值δ^34S=-1.7‰-2.8‰白去石和方解石的δ^13CPDB=-5.3‰--7.42,δ^18OSMOW=10.9-13.1‰。根据以硅质、碱和富挥发组分为特征的围岩蚀变和S、O?  相似文献   

2.
四川省石棉县大水沟碲矿床地质,矿物学和地球化学   总被引:3,自引:0,他引:3  
位于杨子地台西缘的大水沟碲矿床是世界迄今唯一一例独立碲矿床。成矿围岩为一层30一50m厚的三叠纪变基性火山岩及厚层状大理岩。矿体呈脉状平行排列,走向NNE。成矿作用可以分为磁黄铁矿黄铁矿阶段、辉碲铋矿阶段和黄铜矿黄铁矿(自然金)阶段,其中第二阶段是主要碲矿化阶段。该阶段矿石的碲品位一般为0.2%一5%,富矿石达15%一25%。在矿脉两侧围岩蚀变十分发育,于磁黄铁矿黄铁矿阶段矿脉和辉碲铋矿阶段矿脉两侧分别形成以黑云母为主和以白云母为主的两套蚀变组合及分带。岩石地球化学研究表明,从矿脉边侧向外,K、Na和Ca组分降低,Fe和Mg组分增高。矿脉中白云母的K-Ar年龄测定为149.86±2.72Ma。黄铁矿的Co/Ni比值为56一652。成因矿物学和地球化学特征反映出大水沟碲矿床的成矿物质来自深源,其成矿作用可能与区域上燕山期碱性岩浆或碱质花岗岩活动有关。成矿时磁黄铁矿黄铁矿阶段的硫逸度(fs_2)为10 ̄(-16.7),碲逸度(fTe_2)为10 ̄(-15)一10 ̄(-14);辉碲铋矿阶段的fs_210 ̄(-14)一10 ̄(-11.5)和fTe_210 ̄(-11.2)一10 ̄(-10.5)。  相似文献   

3.
四川石棉碲矿床地球化学特征研究   总被引:5,自引:0,他引:5  
刘埃平  钟子川 《地球化学》1996,25(4):365-371
研究了世界首例碲矿床的地球化学特征,特别是微量分散元素碲富集成矿的地球化学条件。此矿床属Te-Bi-Au-Ag组合型中温热液矿床,矿体为碳酸盐脉和磁黄铁矿脉,矿石平均品位:Te5.98%、Bi8.02%、Au9.73×10-6、Ag37.45×10-6。成矿元素Te、Au、Ag主要来源于深部富含CO2、S的热流体。此热流体沿深大断裂上升至地壳浅部时,从围岩中浸取了大量的成矿元素Bi、Fe等。热液中的硫优先与铁结合生成磁黄铁矿析出,降低了热液中的硫浓度,从而促使分散元素碲与其沉淀剂Bi、Ag、Au相结合呈碲铋矿物、碲银矿和碲金矿等独立矿物形式沉淀,并富集成矿。  相似文献   

4.
四川大水独立碲矿床中的楚碲铋矿   总被引:2,自引:0,他引:2  
王汝成  骆耀南 《矿物学报》1997,17(3):280-284
四川大水沟碲矿床是世界唯一的独立碲矿床,楚碲铋矿是该矿床中重要的碲矿物之一。它存在于辉碲铋矿和磁黄铁矿晶粒之间,或包裹在辉碲铋矿中,呈银灰色,金属光泽,一组底面解理发育。显微压入硬度80.5kg/mm^2。反光显微镜下为白色,非均质性清楚,反射率为58.0-59.0,X射线衍晶衍射分析的主要谱线有:4.797,3.229,2.368,2.169。矿物的化学组成据11个电子探针分析的平均值为:Fe0  相似文献   

5.
元古宙爆破角砾岩型店切坊金矿床中的黄铁矿是主要载金矿物,黄铁矿多为(100),属硫亏损型(Fe1.0000S1.8775-1.9821)Co/Ni〉1(1.5-5.875),热电系数导型为N型,δ^34S=4.8‰~6.8‰,形成于温度较同(220~438℃),氧逸度为logfo2〈-37×10^5Pa硫逸度为lgfs2=-39.85×10^5~-35.65×10^5Pa,氧化还原条件发生变化的开  相似文献   

6.
赣西卡林型金矿床流体包裹体地球化学   总被引:4,自引:2,他引:4  
赣西卡林型金矿床的包裹体地球化学研究表明,金矿主成矿温度为100~200℃,平均150℃左右,成矿流体盐度为1.9wt%NaCl~8.6wt%NaCl,成矿压力为247×105Pa~608×105Pa,成矿流体属K+-Ca2+-SO2-4-(F-)-CO2型,pH为3.6~4.1,是以大气降水为主,混有建造水及少量岩浆水的混合流体。研究认为,区内金矿主要是以金硫络合物形式,在较高温度(220~300℃)体系为还原态的条件下进行迁移,温度降低为150℃左右,fs2较低,有黄铁矿及富砷黄铁矿存在时,在低压较氧化的有利构造处沉淀富集成矿。  相似文献   

7.
石门超大型雄黄矿床流体包裹体丰富。包裹体液相成分中富Na+、Cl-和K+、SO2-4,气相成分中H2O占绝对优势,少量CO2,成矿流体化学类型属Cl SO4 Na K型水。雄黄、雌黄形成于低温(180~90℃)、低压(20~5MPa)、浅成(175~700m)、弱酸性(pH:4.67、4.43)和弱还原(Eh:-0.265V)条件。流体包裹体氢氧同位素研究表明,成矿流体主要为古大气降水,并混有盆地建造水,大气降水下渗、循环、加热、淋滤形成了中-低盐度[w(NaCl):16.03%~4.27%],中等密度(0.863~1.065g/cm3),含矿地下热水。  相似文献   

8.
云南大硐厂铅锌矿床中的硫碲铋矿A   总被引:1,自引:0,他引:1  
战新志  蒋国贤 《矿物学报》1995,15(4):422-424
硫碲铋矿A产于云南省大硐厂铅锌矿床,与自然铋、辉铋铅矿共生。晶体呈柱状,粒度0.02 ̄0.3mm。反光显微镜下呈淡黄色,弱非均质性,反射率Rc′=52.4%,R0=48.8%(波长为540nm),显微压入硬度Hv=46 ̄72kg/mm^2。主要粉晶谱线:3.065(10),2.120(7),1.346(5),2.220(4)。三方晶系,空间群为D3d^5-R3↑-m,晶胞参数a=0.4241nm,  相似文献   

9.
铜矿峪铜矿床地球化学的研究   总被引:2,自引:0,他引:2  
详细地研究了铜矿峪矿床地球化学特征,得出铜矿床形成的pb-pb年龄为21亿年;矿床形成温度为350℃,压力为4×10 ̄7pa~1×10 ̄8pa;Logfo_2:为-31~-31.88,logfs_2为-5~-8;pH值为3.6~6.4;硫化物的δ ̄34S值为-4.5‰~0.2‰,δ ̄34S为+10‰;方解石的δ ̄13C为-4.89‰~1.1‰,δ ̄13C为一4.28‰,成矿流体主要为岩浆水,属于斑岩型铜矿床。  相似文献   

10.
横岭关铜矿床地球化学研究   总被引:1,自引:0,他引:1  
对横岭关铜矿床中稀土元素、同位素和矿物包裹体地球化学研究表明,矿床形成温度为350℃±30℃;压力为38×10~5Pa~240×10~5Pa;盐度为30wt%~42wt%;logfo_2为-30.41~-31.47;logfs_2为-5.4~-8;pH值为7.3;logfco_2为-2.49;铜的溶解度(logm_(Cu))为-5.87~-2.21。围岩的铅-铅同位素年龄为1775×10~6a,矿石的铅-铅同位素年龄为1845×10~6a;矿石硫同位素组成,δ~(34)S为-8.1‰~36.9‰,显示出硫同位素为非平衡特征;碳酸盐岩的碳同位素组成,δ~(13)C为-7.1‰~-2.6‰,δ~(13)C_(∑C)为-5.3‰;成矿流体的氢氧同位素组成具有变质热卤水的特点,认为该矿床属于变质热卤水成矿。  相似文献   

11.
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414.  相似文献   

12.
Some olistolites reworked in a Tertiary flysch of Mount Parnon (Peloponnesus, Greece) exhibit a Late Permian assemblage, dominated by Paradunbarula (Shindella) shindensis, Hemigordiopsis cf. luquensis and Colaniella aff. minima. This association corresponds to the Late Wuchiapingian (=Late Dzhulfian), a substage whose algae and foraminifera are generally little known. Contemporaneous limestones crop out in the middle part of the Episkopi Formation in Hydra, but they are rather commonly reworked in Mesozoic and Cainozoic sequences. The palaeobiogeographical affinities shared by the foraminiferal markers of Greece, southeastern Pamir, and southern China, are very strong (up to the specific level), and are congruent with the Pangea B reconstructions. To cite this article: E. Skourtsos et al., C. R. Geoscience 334 (2002) 925–931.  相似文献   

13.
PALEONTOLOGY     
正20141596 Liu Yunhuan(School of Earth Sciences and Resources,Chang’an University,Xi’an 710054,China);Shao Tiequan Early Cambrian Quadrapyrgites Fossils of Xixiang Boita in Southern Shaanxi Province(Journal of Earth Sciences and Environment,ISSN1672-6561,CN61-1423/P,35(3),2013,p.39-43,3 illus.,20 refs.)  相似文献   

14.
正20141719 Chen Zhijun(State Key Laboratory of Geological Processes and Mineral Resources,China University of Geosciences,Wuhan 430074,China);Chen Jianguo Automated Batch Mapping Solution for Serial Maps:A Case Study of Exploration Geochemistry Maps(Journal of Geology,ISSN1674-3636,CN32-1796/P,37(3),2013,p.456-464,2 illus.,2 tables,10 refs.)  相似文献   

15.
正20140962 Chen Fenning(Xi’an Institute of Geology and Mineral Resources,Xi’an710054,China);Chen Ruiming Late Miocene-Early Pleistocene Ostracoda Fauna of Gyirong Basin,Southern Tibet(Acta Geologica Sinica,ISSN0001-5717,CN11-1951/P,87(6),2013,p.872-886,6illus.,56refs.)  相似文献   

16.
PETROLOGY     
正1.IGNEOUS PETROLOGY20142008Cai Jinhui(Wuhan Center,China Geological Survey,Wuhan 430205,China);Liu Wei Zircon U-Pb Geochronology and Mineralization Significance of Granodiorites from Fuzichong Pb-Zn Deposit,Guangxi,South China(Geology and Mineral Resources of South China,ISSN1007-3701,CN42-1417/P,29(4),2013,p.271-281,7illus.,  相似文献   

17.
正20141205Cheng Weiming(State Key Laboratory of Resources and Environmental Information System,Institute of Geographic Sciences and Natural Resources Research,CAS,Beijing 100101,China);Xia Yao Regional Hazard Assessment of Disaster Environment for Debris Flows:Taking Jundu Mountain,Beijing as an  相似文献   

18.
正20141266Fan Chaoyan(Guangdong Provincial Key Laboratory of Mineral Resources and Geological Processes,Guangzhou 510275,China);Wang Zhenghai On Error Analysis and Correction Method of Measured Strata Section with Wire Projection Method(Journal of  相似文献   

19.
正20140582 Fang Xisheng(Key Lab.of Marine Sedimentology and Environmental Geology,First Institute of Oceanography,State Oceanic Administration,Qingdao 266061,China);Shi Xuefa Mineralogy of Surface Sediment in the Eastern Area off the Ryukyu Islands and Its Geological Significance(Marine Geology Quaternary Geology,ISSN0256-1492,CN37  相似文献   

20.
正20141810 Bian Yumei(Geological Environmental Monitoring Center of Liaoning Province,Shenyang 110032,China);Zhang Jing Zoning Haicheng,Liaoning Province,by GeoHazard Risk and Geo-Hazard Assessment(Journal of Geological Hazards and Environment Preservation,ISSN1006-4362,CN51-1467/P,24(3),2013,p.5-9,2 illus.,tables,refs.)  相似文献   

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