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1.
甘肃省文县阳山金矿床地质地球化学研究   总被引:22,自引:3,他引:22  
对阳山金矿床进行的地质学、地球化学研究表明,矿石中金主要以微细粒金(2~3 μm)包裹于毒砂、黄铁矿等矿物之中;矿石中As、Sb及有机碳含量较高,且Au与Ag、As、Hg、Sb等低温热液元素相关性明显.流体包裹体均一温度为150~250 ℃、盐度w(NaCleq)为1.6%~6.5%,流体包裹体成分以H2O和CO2为主,含少量CO、CH4、H2.黄铁矿、辉锑矿δ34S值为-3.47‰~+13.23‰;石英δ18O值为-3.09‰~+0.41‰,δD值为-92.4‰~-62.9‰;全岩δ13C值为-2.19‰~-9.14‰,δ18O值为-13.54‰~-9.06‰.反映了成矿流体为低温、低盐度热液,其组成以大气降水为主,并有岩浆热液参与,成矿物质来自泥盆系地层及燕山期岩浆岩体,矿床为受构造直接控制的、与沉积作用及燕山早期岩浆活动有成因联系的叠加改造型微细浸染型金矿床.  相似文献   

2.
新疆-甘肃北山金矿南带的成矿流体演化和成矿机制   总被引:1,自引:0,他引:1  
刘伟  潘小菲 《岩石学报》2006,22(1):171-188
北山金矿南带是西北5省区规模最大的金矿带。选择北山南带的新金厂、老金厂和小西弓金矿床,在矿床地质和岩相学研究的基础上,对脉石英的流体包裹体进行了显微温度计和激光拉曼探针气体成分测定;对石英和矿石黄铁矿的包裹体H2O,CO2和CH4进行了H和C同位素组成测定,对石英和黄铁矿分别做了O和S同位素组成测定。3个金矿床的脉石英含有富CO2+CH4、H2O溶液以及H2O-CO2+CH4包裹体。小西弓金矿床流体包裹体的均一化温度主要介于270℃-450℃,一部分H2O溶液包裹体圈闭了高盐度流体(16.43—18.63wt.%NaCl equiv.),大部分H2O溶液包裹体和全部富CO2+CH。包裹体代表了中-低盐度(2.8%-13.6%)流体。新金厂金矿床流体包裹体的均一化温度主要介于210℃-346℃;一部分流体包裹体圈闭了高盐度(10.98%~14%NaCl equiv.)流体,一部分H2O溶液包裹体和绝大多数富CO2+CH4包裹体圈闭了中-低盐度(2.9%-8.81%NaCl equiv.)流体。老金厂金矿床H2O溶液包裹体的均一化温度主要分布于141℃-400℃,含盐度介于1.4%-8.28%,属于中-低盐度流体。进行了大气降水-围岩^18O/^16O、D/H交换反应模拟。小西弓矿床早期硫化物-石英脉金矿成矿流体对应较高的水/岩比(=0.01—0.05),其^18O/^16O和D/H组成更受钾长花岗岩者控制,硫化物的δ^34S值也接近钾长花岗岩的黄铁矿者,指示热液流体围绕着钾长花岗岩的对流淋滤。成矿晚期,围绕着花岗岩侵入体的热液对流崩溃,矿区围岩内发育更大尺度的彼此分离的弥漫性流体渗透淋滤;相应地,小西弓矿床晚期蚀变岩金矿成矿流体的8D值对应低水/岩比(0.005-≈0.01),其δ^18O值变化范围较宽,受当地中元古界变质岩控制,蚀变岩型金矿黄铁矿的δ^34S值也接近中元古界长英质片岩的黄铁矿者。新金厂金矿和老金厂金矿成矿流体的δD值和δ^18O值对应的水/岩值分别介于0.004—0.01和0.007~0.02,与岩浆流体或者下二叠统哲斯群辉绿岩和英安岩围岩具有更密切的关系。新金厂金矿和老金厂金矿黄铁矿样品的δ^34S值介于-2.58‰和-6.32‰,指示S来源于下二叠统哲斯群辉绿岩、英安岩和碳质板岩围岩。3个金矿的石英包裹体CO2(δ^13C=-2.20‰--9.14‰),以及石英和黄铁矿包裹体CH4(δ^13C=013.10‰--27.40‰)不平衡;前者来源于幔源岩浆去气,后者来源于哲斯群碳质板岩或者中元古界长英质片岩中的还原碳。3个金矿黄铁矿包裹体的CO(δ^13C=-10.79‰--23.62‰)主要来源于哲斯群碳质板岩或中元古界长英质片岩中的还原碳,但是,也混合了较少的岩浆CO2。包裹体CO2和CH4δ^13C值的系统变化,也反映了从岩浆侵位和去气、流体对流,到围岩中流体大面积弥漫性渗透淋滤的演化过程。CH4介入成矿流体,导致流体不混溶和金的沉淀。北山金矿南带的形成既不同于典型的造山带型金矿床,也不同于与侵入岩有关的金矿床。我们提出北山金矿南带的成矿模式为:岩浆去气和流体对流、岩石挤压破碎、流体弥漫性渗透淋滤。  相似文献   

3.
甘肃阳山金矿床微量元素及稳定同位素的地球化学研究   总被引:24,自引:1,他引:24  
甘肃省阳山金矿位于川陕甘交界地带 ,为近年发现的一特大微细浸染型金矿床。该矿目前已发现 4个矿段 ,均赋存于浅变质的泥盆系地层中。矿体在平面上呈舒缓波状 ,在剖面上为脉状、似层状。矿石中金属矿物主要为黄铁矿和毒砂 ,金主要以微细粒金 (2~ 3μm)包裹于毒砂、黄铁矿及粘土矿物之中。矿床微量元素含量研究表明 ,矿石中Au、Hg、As、Bi、Sb等元素较为富集 ,并且其间呈明显的正相关关系 ,显示阳山金矿的形成与富含Au、Hg、As、Bi、Sb等低温热液元素的成矿流体活动有关 ,向深部这些元素含量趋于降低 ,表明成矿流体活动趋弱。矿石石英的δD值为 - 6 0‰~ - 72‰ ,δ18OH2 O值为 8 0‰~ 10 1‰ ,表明成矿流体主要为岩浆热液 ;矿石黄铁矿的δ3 4 S值为 - 2 2‰~ - 0 7‰ ,不同于泥盆系地层中沉积黄铁矿的δ3 4 S值 (10 9‰ ) ,表明矿石硫为岩浆硫 ,因而阳山金矿床的形成与岩浆热液活动密切相关  相似文献   

4.
黑龙江黑河三道湾子金矿床地质地球化学研究   总被引:13,自引:0,他引:13       下载免费PDF全文
通过氢、氧、硫同位素测试和流体包裹体测温,结合三道湾子金矿床的地质、地球化学特征,探讨了三道湾子金矿矿床成因。研究表明三道湾子金矿为与中生代陆相火山岩有关的中一低温浅成热液矿床。矿石矿化类型为石英脉型。流体包裹体均一温度为150~276℃,盐度(NaCleq)为2.89%~5.82%,平均4.2%。黄铁矿δ^34S值为-3.1‰~ 3.8‰,石英δ^18O值为-11.3‰~-8.5‰,δDv-SMOW值为-110‰~-85‰。  相似文献   

5.
扎拉格阿木铜矿床位于锡林浩特地块北部边缘,矿体赋存于二叠纪砂质板岩和角砾岩中,受NE向断裂控制,为中温热液脉型铜矿床。本文通过流体包裹体和C?H?O?S?Pb同位素地球化学研究手段,来探讨扎拉格阿木铜矿成矿机制。成矿热液期存在5个成矿阶段:钾长石阶段、石英?绢云母阶段、石英?黄铁矿阶段、石英?多金属硫化物阶段、石英?方解石阶段。其中石英?多金属硫化物阶段为主成矿阶段,本阶段主要发育富液相、富气相、含子矿物包裹体;富液相包裹体均一温度与盐度分别为:138~289℃和2.06%~16.11% NaCl eqv;含子矿物包裹体均一温度与盐度分别为:320~374℃和32.68%~39.81% NaCl eqv,包裹体气体成分除少量CO2以外,均为H2O。H?O同位素分析表现为,石英中的〖δO〗^18值变化范围-8.5‰~7.5‰,流体的δD值变化范围为-116‰~-98‰,暗示早阶段成矿流体主要为岩浆热液,晚期伴有大气降水混入。C?O同位素分析表明,δ13C值为-6.9‰~ -10.1‰,δ18OSMOW介于2.5‰~11.7‰,在δ18O?δ13C 图上数据点落在岩浆水与大气水的中间区域。矿石硫化物的δ34S值介于-4.5‰~1.5‰,指示具有幔源岩浆硫的特征。矿石硫化物Pb同位素的208Pb/204Pb、207Pb/204Pb和206Pb/204Pb比值分别为38.034~38.609、15.497~15.655和18.141~18.446,推测Pb具有地幔来源的特点并伴有地壳或造山带Pb混入。成矿过程中伴随着流体沸腾作用,成矿物质沉淀受早期形成的岩浆热液与后加入大气降水混合的影响。  相似文献   

6.
豫西公峪金矿床地质地球化学特征及成因探讨   总被引:4,自引:0,他引:4  
文章较为详细地总结了公峪蚀变岩型金矿的地质特征,将成矿作用分为3个阶段,即石英-黄铁矿阶段,石英-硫化物阶段和石英-碳酸盐阶段,并测定了矿石样品的稳定同位素组成。结果表明:硫化物的δ^34S值变化于-1.7‰~2.2‰之间,与陨石硫的δ^34S值接近,反映为深源;成矿Ⅰ阶段流体的δD值为-68‰--86‰,δ^18OH2O为-0.6‰~ 4.9‰,成矿Ⅱ阶段流体的δD值为-67‰~-84‰,δ^18OH2O为-0.6‰~-8.9‰,反映成矿流体主要有两个来源,Ⅰ阶段以深源水为主,Ⅱ阶段有大量大气降水混入。公峪金矿与祁雨沟金矿应属于同一成矿系统的产物,均与燕山晚期岩浆热液活动有关,可能为同源、同期、不同构造空间的演化产物。  相似文献   

7.
杨治  邓宇峰  袁峰  李跃  林涛  张顺林  张家嘉 《岩石学报》2019,35(12):3875-3893
安徽省蚌埠五河地区河口和荣渡金矿床是华北地台东南缘蚌埠台隆和五河台坳邻接区域的两个金矿床。本文通过对比研究河口和荣渡金矿床的地质特征、流体包裹体地球化学、Re-Os同位素以及H-O-S同位素特征,来厘定其形成时代、探讨其成矿物质来源和成矿过程。河口及荣渡金矿床矿体主要呈细脉浸染状、脉状和网脉状赋存于古太古代西堌堆地层中,成矿过程可划分为4个阶段:(1)石英脉阶段(早阶段);(2)石英-黄铁矿阶段(早阶段);(3)石英-多金属硫化物阶段(中阶段);(4)碳酸盐阶段(晚阶段);其中,中阶段为金的主要矿化时期。河口和荣渡金矿床早阶段(石英脉和石英-黄铁矿阶段)的石英内发育富液两相包裹体(WL型)、富气两相包裹体(WG)以及少量的含子晶的气液固三相包裹体(S型),均一温度为322~412℃,盐度介于5. 56%~15. 67%NaCleqv之间,属于高温中低盐度流体体系;中阶段(石英-多金属硫化物脉阶段)石英内发育有富液两相包裹体(WL型)、富气两相包裹体(WG),均一温度为257~357℃,盐度介于3. 06%~7. 45%NaCleqv之间,属于中高温低盐度流体体系。从成矿早阶段到主成矿阶段流体的盐度和温度都发生了较大程度的降低,推测矿化过程可能是由流体温度和盐度的降低引起的。成矿阶段石英中流体水的δ~(18)O值介于5. 01‰~7. 90‰之间,δD_(V-SMOW)值介于-89‰~-65‰之间,表明两个矿床的成矿流体为主要为岩浆水。河口金矿床矿石中的黄铁矿δ~(34)S值介于3. 89‰~9. 65‰之间,荣渡金矿床方铅矿δ~(34)S值为0. 76‰,表明河口及荣渡金矿床δ~(34)S值具有岩浆硫的特征,后期由于岩浆去气作用或地层硫的参与使矿石中的δ~(34)S值升高。因此,这两个金矿床可能是与岩浆热液有关的热液石英脉型金矿床。对荣渡金矿床矿石的黄铁矿进行Re-Os同位素定年,确定金矿床形成于134±19Ma,结合前人对该地区所做的岩浆岩定年工作,推测荣渡金矿床的成矿可能与区内130Ma左右的岩浆活动密切相关。  相似文献   

8.
上黑龙江盆地金矿床地质特征及成因探讨   总被引:17,自引:2,他引:17  
上黑龙江盆地是近年来发现的重要岩金成矿区,文章对该区的砂宝斯、老沟等矿床进行了详细的野外调查和矿床地质特征研究,通过流体包裹体均一温度、包裹体成分群体分析、单个包裹体激光拉曼探针分析和H、O、S、Pb同位素研究,对金矿的成矿作用进行了深入探讨。研究结果表明,矿石中硫化物以黄铁矿为主,硫化物含量一般不超过3%,为少硫化物型矿石。流体包裹体主要类型为气液两相和含CO2三相包裹体,并有少量纯CO2包裹体。黄铁矿等的δ34S值为-1.6‰~9.6‰;成矿热液的δ18O值为-1.3‰~ 6.6‰,δD值为-89‰~-135‰;铅同位素表现出造山带铅同位素特征。成矿流体液相中阳离子主要为Na 、K ,阴离子主要是Cl-和SO2-4,气相成分中H2O、CO2和N2占绝对优势,还含有H2、O2、CO、CH4、C2H4、C2H6、C3H8、C6H6和H2S,成矿晚期CH4含量明显增加,总体上属H2O_NaCl_CO2_CH4体系。流体包裹体的盐度w(NaCleq)平均为5.0%,属低盐度流体;均一温度为266.5~295.2℃,属中温热液矿床。上述金矿床与造山型金矿具有相似的地质_地球化学特征,矿石类型为Au_Sb组合,属标准的浅成造山型金矿床,形成于中生代蒙古—鄂霍茨克陆_陆碰撞造山环境。  相似文献   

9.
云南省富宁县者桑金矿床成矿流体特征   总被引:1,自引:0,他引:1  
通过云南者桑金矿床中流体包裹体岩相学、显微测温、稀土元素、氢氧同位素的分析,探讨了成矿流体特征。研究表明:存在液体包裹体、纯液体包裹体、纯气体包裹体和含液体CO2包裹体4种流体包裹体类型;液体包裹体均一温度为83.4~248.2℃,盐度为0.18%~6.45%,密度为0.85~1.0 g/cm3,成矿压力为10.9~59.4 MPa,成矿深度为0.2~2.2 km;各成矿阶段石英及方解石稀土元素特征表明,其成矿物理化学条件为还原环境。δ18OH2O值为-6.1‰~4.9‰;δDV-SMOW值为-40.3‰~-74.8‰,表明成矿流体来源为大气降水,岩矿石有机碳含量达到0.12%~0.45%,金品位与有机质含量呈正相关,黄铁矿及毒砂δ34SV-CDT值为9.2‰~10.2‰,表明者桑金矿床成矿热液中硫化物沉淀所需硫源为围岩中有机质与硫酸盐反应提供的还原硫。成矿热液在下渗过程中混合建造水,受到岩浆烘烤作用及地温梯度影响后再向上循环,金矿化发生在成矿流体的热循环与赋矿围岩的相互作用过程中,并在构造有利部位沉淀富集。  相似文献   

10.
内蒙古赛乌素金矿床地质地球化学特征   总被引:1,自引:0,他引:1  
赛乌素金矿床位于华北地台北缘狼山一白云鄂博台缘白云鄂博褶断束,矿石类型主要为含金石英脉型,流体包裹体研究表明,包裹体主要以V-L两相气液包裹体为主,及少量CO2包裹体;均一温度为131℃~311℃,平均213%.流体盐度为0.35%~6.74%(wt%NaCI).矿石黄铁矿、方铅矿的δ34S值为+4.69%o~+11.54%O;石英包体δ18OH2o值为3.6%o~4.1%o,δD值为-114%o~-119%o.反映了成矿流体为中-低温、低盐度热液,其来源可能为变质水和岩浆水的混合流体.矿石与地层微量元素对比及稀土元素地球化学特征反映成矿物质主要来自白云鄂博群尖山组地层.综合分析认为,赛乌素金矿床应为中-低温混合热液石英脉型矿床.  相似文献   

11.
Pant-y-ffynnon Quarry in South Wales yielded a rich cache of fossils in the early 1950s, including articulated specimens of new species (the small sauropodomorph dinosaur Pantydraco caducus and the crocodylomorph Terrestrisuchus gracilis), but no substantial study of the wider fauna of the Pant-y-ffynnon fissure systems has been published. Here, our overview of existing specimens, a few described but mostly undescribed, as well as freshly processed material, provides a comprehensive picture of the Pant-y-ffynnon palaeo-island of the Late Triassic. This was an island with a relatively impoverished fauna dominated by small clevosaurs (rhynchocephalians), including a new species, Clevosaurus cambrica, described here from a partially articulated specimen and isolated bones. The new species has a dental morphology that is intermediate between the Late Triassic Clevosaurus hudsoni, from Cromhall Quarry to the east, and the younger C. convallis from Pant Quarry to the west, suggesting adaptive radiation of clevosaurs in the palaeo-archipelago. The larger reptiles on the palaeo-island do not exceed 1.5?m in length, including a small carnivorous crocodylomorph, Terrestrisuchus, and a possible example of insular dwarfism in the basal dinosaur Pantydraco.  相似文献   

12.
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   

13.
Robert L. Linnen   《Lithos》2005,80(1-4):267-280
The solubilities of columbite, tantalite, wolframite, rutile, zircon and hafnon were determined as a function of the water contents in peralkaline and subaluminous granite melts. All experiments were conducted at 1035 °C and 2 kbar and the water contents of the melts ranged from nominally dry to approximately 6 wt.% H2O. Accessory phase solubilities are not affected by the water content of the peralkaline melt. By contrast, solubilities are affected by the water content of the subaluminous melt, where the solubilities of all the accessory phases examined increase with the water content of the melt, up to 2 wt.% H2O. At higher water contents, solubilities are nearly constant. It can be concluded that water is not an important control of accessory phase solubility, although the water content will affect diffusivities of components in the melt, thus whether or not accessory phases will be present as restite material. The solubility behaviour in the subaluminous and peralkaline melts supports previous spectroscopic studies, which have observed differences in the coordination of high field strength elements in dry vs. wet subaluminous granitic glasses, but not for peralkaline granitic glasses. Lastly, the fact that wolframite solubility increases with increasing water content in the subaluminous melt suggests that tungsten dissolved as a hexavalent species.  相似文献   

14.
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   

15.
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   

16.
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   

17.
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   

18.
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   

19.
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   

20.
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   

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