首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到16条相似文献,搜索用时 62 毫秒
1.
西秦岭造山带内的甘肃阳山金矿是我国最新发现的规模最大的金矿床。矿床受EW韧脆性剪切带控制,赋矿围岩为泥盆系碳质碳酸盐-千枚岩-板岩和侵入其中的花岗斑岩脉。流体成矿过程包括:形成石英-绢云母-黄铁矿组合的早阶段,形成石英-黄铁矿-毒砂和石英-毒砂-黄铁矿以及石英-碳酸盐-辉锑矿-自然金组合的主戍矿阶段,形成碳酸盐-石英网脉的晚阶段。早阶段流体包裹体以含CO2包裹体为主,CO2含量为7.3%-21.5mol%,均一温度集中于270℃~300℃,盐度〈3wt.%NaCleqv;主阶段发育纯CO2包裹体、水溶液包裹体和少量含CO2包裹体,均一温度集中于210℃~270℃,盐度集中在〈2wt,%NaCleqv和3~5wt,%NaCleqv两个范围;晚阶段只发育水溶液包裹体,均一温度集中在160℃-210℃,盐度〈3wt.%NaCleqv。主阶段流体包裹体类型的多样性、相似的均一温度和流体盐度的双峰特征均指示流体沸腾现象的存在,其流体包裹体捕获温度为210℃~375℃,压力为85~222MPa;赋矿断层的阀门式活动导致主阶段流体系统交替于静岩和静水压力之间,成矿深度为8.5km左右,成矿流体系统发育在早侏罗世大陆碰撞造山过程。矿床地质特征类似于卡林型金矿,但赋存于蚀变花岗斑岩中矿体既非造山型,也不同于卡林型,成矿流体具造山型矿床特征。因此,阳山金矿可能代表一种新的金矿类型,建议称为“阳山型金矿”。  相似文献   

2.
玲珑金矿位于胶东半岛招.掖成矿带东部,是我国典型的超大型含金石英脉型金矿。成矿过程可划分为早、中、晚三个阶段,金主要在中阶段沉淀。早阶段流体包裹体为纯CO2型(LCO2+VCO2〉90%)和富CO2型(10%≤LCO2+VCO2≤90%),中阶段为纯CO2型、富CO2型、富H2O型,晚阶段为水溶液包裹体。从早到晚,包裹体均一温度分别集中在240℃~360℃、220℃-360℃、180℃-260℃和80℃-180℃,盐度分别集中在3.4%-10.4%、3.0%-10.2%、4.0%-14.6%和2.4%-5.0%NaCleqv;早、中阶段流体盐度随温度降低而升高。中阶段第一世代石英中大量水溶液包裹体和富CO2包裹体共生,指示流体强烈沸腾。从早到晚,流体包裹体的变化记录了成矿流体性质和构造环境的演化。早阶段石英中沿X型节理发育面型包裹体群,既记录了石英脉遭受的剪切变形事件,又记录了同构造流体作用。而充填于张性裂隙的黄铁矿为主的多金属硫化物.石英组合则表明主成矿期构造环境由压性向张性转化,成矿流体系统减压沸腾、逐步开放,并导致金等成矿物质大量沉淀。结合区域构造演化和成矿时间,认为玲珑金矿成矿系统发育在应力场由挤压向伸展转换的构造背景,流体压力变化滞后于构造应力场变化,流体成分以低盐度、富CO2为特征,应属典型的造山型金矿系统。  相似文献   

3.
额尔古纳成矿带是中国东北重要的银、铅、锌、铜、钼多金属成矿带,它位于蒙古-鄂霍茨克造山带的东南缘。最近,额尔古纳成矿带西北部发现了砂宝斯、老沟、小伊诺盖沟等金矿床和一些金矿点。这些金矿受洛古河-二根河韧性剪切带和额尔古纳河韧性剪切带控制,矿体常赋存于韧性剪切带的次级张扭性断裂构造中。矿石中硫化物含量一般不超过3%,且硫化物以黄铁矿为主。流体包裹体有气液两相、含CO2三相和纯CO2包裹体3种类型。气相成分以H2O、CO2和N2为主,含少量H,S、CH4为特征。流体包裹体的盐度低,介于2.06~8、54%NaCleqv之间。老沟金矿流体包裹体均一温度介于171℃~452℃之间,平均295℃,小伊诺盖淘金矿包裹体均一温度为169℃~493℃,平均亦为295℃,均属中温热液矿床。老淘金矿成矿压力为61~122MPa,平均82MPa;小伊诺盖沟金矿成矿压力为38~172MPa,平均93MPa。前者成矿深度介于6~9km,平均7km;后者成矿深度为4~11km,平均8km。上述金矿床的地质-地球化学特征与世界造山型金矿类似,形成于蒙古-中朝板块与西伯利亚板块之间的陆-陆碰撞造山作用。  相似文献   

4.
内蒙古白乃庙铜金矿床位于华北板块北缘增生型造山带,石英脉型和蚀变岩型矿体受EW向韧.脆性剪切带控制。成矿过程分为三个阶段:旱阶段石英-黄铁矿,乳白色石英和粗粒黄铁矿变形、破碎;中阶段多金属硫化物充填胶结旱阶段变形、破碎的石英角砾和黄铁矿裂隙;晚阶段为石英-碳酸盐细脉,穿切早中阶段脉体和矿物组合。冷热台显微测温结果显示.旱阶段石英中原生流体包裹体的均一温度为248℃~380℃,盐度为4.34%~6.59%,次生包裹体均一温度为180℃~260℃.盐度为3,23%~4.18%NaCleqv;中阶段石英中原生包裹体的均一温度变化范围为215℃~241℃,盐度为2.90%~4.18%NaCleqv,与旱阶段次生流体包裹体一致;晚阶段石英细脉和方解石中的流体包裹体均一温度为137℃~181℃,盐度为0.50%~2.00%NaCleqv。激光拉曼测试结果表明,流体包裹体气相成分为CO2、CH4和N2。成矿流体为低盐度、低密度、富CO2的流体,当这种流体到达剪切带时,由于压力骤然降低发生以CO2逸失为特征的沸腾作用,导致成矿流体过饱和,成矿物质快速沉淀下来形成矿床。白乃庙铜金矿床成矿流体及矿床地质特征与造山型矿床一致,确证了造山型铜矿的存在并提供了实例。  相似文献   

5.
为使流体包裹体研究结果得到较好的解释,避免矿床地质描述与流体包裹体研究结果发生矛盾,本文试图以金矿床为例,建立科学而简便易行的矿床地质与包裹体特征之间的链接。为此,本文简单评述了现有金矿床成因分类方案,建议以主导成矿系统发育的地质作用特征划分5种类型:①浆控高温热液型,包括斑岩型、爆破角砾岩型、铁氧化物型、夕卡岩型等岩浆热液型矿床;②造山型,即变质热液型;③浅成低温热液型——陆相火山岩一次火山岩中的改造热液型;④微细粒浸染型(卡林型或/类卡林型)——沉积岩容矿的改造热液型;⑤热水沉积型(VMS型和SEDEX型)——水下喷出地表的改造热液型。然后,分别介绍了5类成矿系统的标志性地质和流体包裹体特征,找出了它们之间具有成因标志意义的关键性差异;将成矿流体分为改造、变质和岩浆3个端元性成分,发现多数热液矿床具有多阶段多因复成的特点,晚阶段流体均为改造热液或有大量改造热液注入,因此指出,晚阶段的流体、蚀变和矿化特征不能用于判别矿床成因和类型,只有早阶段的特征才能准确指示矿床成因和类型。改造热液以低温、低盐度、低CO2含量为特征,主要来自大气降水和/或海水;变质热液以中温、低盐度、高CO2含量为特征,而岩浆热液则以高温、高盐度、高CO2含量为特征;岩浆热液矿床发育含多种子晶包裹体和高盐度富CO2的包裹体,变质热液矿床发育低盐度富CO2包裹体,改造热液矿床总体缺乏含子晶包裹体和富/含CO2包裹体,大量发育水溶液包裹体。最后,讨论了各类成矿系统发育的岩石圈构造背景,如造山型矿床形成于地壳挤压造山.变质.隆升过程,热水沉积型矿床形成于地壳拉张成盆过程,古生代或更早的浅成低温热液型矿床只能保存在增生型造山带等,提出矿床及其包裹体是研究大陆动力学的理想探针。  相似文献   

6.
内蒙古乌努格吐山(简称乌山)斑岩铜钼矿床位于得尔布干深断裂北侧的额尔古纳地体。作为兴蒙造山带的一部分,额尔古纳地体经历了古生代俯冲增生、早中生代碰撞造山和晚中生代一新生代期间的与太平洋板块俯冲有关的碰撞后构造演化。乌山矿床形成于侏罗纪,是陆-陆碰撞体制斑岩矿床的典型实例,其地质地球化学特征有助于理解碰撞环境的斑岩矿床的成因,因此本文报道该矿床流体包裹体显微测温学、激光拉曼光谱和扫描电影能谱研究结果。乌山矿床流体成矿过程包括早、中、晚3个阶段,分别以石英-钾长石化、石英-绢云母.多金属硫化物化和伊利石-石英-碳酸盐化为特征。石英中可见水溶液包裹体、含子晶和含CO2三相流体包裹体,但晚阶段石英中缺乏后两类包裹体。早阶段流体包裹体均一温度〉510℃,盐度最高达75.8wt%NaCleqv,包裹体的子晶矿物有石盐、黄铜矿以及指示氧化条件的赤铁矿,气相成分富含CO2,液相成分以水为主,且多含CO3^2-。矿化主要发生在中阶段,可分为早期的钼矿化阶段和晚期的铜矿化阶段,其成矿温度分别为340℃-510℃和240℃-340℃。该阶段流体盐度介于6.3—52.0wt%NaCleqv。中阶段包裹体含石盐和黄铜矿子矿物,富气相、富液相与含子晶包裹体共存,且具有相近的均一温度,而盐度相差悬殊,指示流体发生沸腾,成矿物质快速沉淀。晚阶段流体温度降低至100℃-240℃,盐度则低于12.4wt%NaCleqv。总之,早阶段成矿流体来自岩浆,以高温、高盐度、高氧逸度、富CO2为特征;中阶段流体发生沸腾,导致CO2逸失、氧逸度降低、成矿物质快速沉淀;晚阶段流体以低温、低盐度、无子晶、贫CO2为特征,可能属大气降水热液。  相似文献   

7.
造山型金矿的成矿作用与H20-CO2流体有着密切的联系。然而对阿尔泰山南缘和穆龙套金矿的流体包裹体研究表明,无水的CO2-CH4流体在中亚成矿域中一些金矿床中具有同样重要意义。阿尔泰山南缘萨热阔布金矿包裹体的Xch4达0.20~0.23,穆龙套金矿的XCH4为0.07~0.23。CH4扩大了流体不混溶的范围,有利于对Au的富集沉淀。CO2流体在Au成矿中的重要作用至少包括了三方面的意义,即:缓冲流体PH值范围、提高流体中的Au含量并使其维持与还原硫的络合作用进行迁移;扩大超临界流体的温度范围;增加流体不混溶的区域。CH4的加入扩大了流体不混溶的范围,有利于对Au的富集沉淀。  相似文献   

8.
Halite precipitation with water and air temperature was observed in detail, and homogenization temperature of fluid inclusions in halite formed in ancient and modem Chaka Salt Lake was studied. Halite precipitates mainly in August every year and largely precipitates between 13 and 15pm at one day when water temperatures reach 20℃ but can seldom reach 30℃. Homogenization temperatures of fluid inclusions in halite formed in Chaka Salt Lake range from 14℃ to 38℃ with an average of 23.7℃. The number of inclusions appears an obvious peak value at homogenization temperatures between 18 - 25℃, which probably represent the water temperature in which halite mainly precipitates when water temperatures reach 20℃. Therefore, homogenization temperatures of fluid inclusions in halite formed in Chaka Salt Lake can wall reflect the water temperature.  相似文献   

9.
The acoustic decrepitation method heats a small monomineralic sample and counts pressure impulses as the inclusions burst when they develop high internal pressures. For aqueous fluids, the decrepitation temperature is correlated with the homogenisation temperature, but gas rich fluids give a distinct and characteristic low temperature decrepitation peak which can be used to recognize gas rich fluid inclusions. This information is useful in exploration for Au deposits, which are frequently associated with CO2 rich and sometimes CH4 rich fluids. This distinctive decrepitation occurs because the CO2 rich inclusion fluids expand according to the gas law and develop internal pressures high enough to burst the host mineral grain at temperatures well below their homogenisation temperatures. In contrast, aqueous fluids condense to a liquid and vapour phase during post-entrapment cooling. Upon subsequent heating their internal pressures do not increase significantly until after homogenisation to a single phase occurs and hence they do not decrepitate "prematurely" as gas rich inclusions do. This behaviour is usually regarded as an annoyance in conventional microthermometric homogenisation studies, but can readily be used as an exploration aid to find mineralisation deposited from such gas rich fluids. Decrepitation results on samples from Cowra Ck, NSW, Australia, which have also been microthermometrically measured for CO2 content, show that amounts of less than 5 mole % CO2 are easily distinguished by decrepitation and amounts as low as 1 mole % CO2 may be determinable. Examples of the use of acoustic decrepitation in the study of 6 gold mines in the Shandong and Hebei provinces of China are discussed.  相似文献   

10.
The Grains containing Oil Inclusions (GOI) data in currently gas/condensate-beating Jurassic and Cretaceous reservoir sandstones of Well Pen 5 (the Mosuowan area of central Junggar Basin, NW China) are generally greater than the empirical threshold line of 5%. This is consistent with the gas-condensate section originally containing a palaeo-oil column. In order to assess the origin of the oil trapped in the oil inclusion and its relationship to the free oil/gas-condensate, a detailed molecular geochemical study was carried out for correlation between the free and inclusion oils. The paleo oil is most likely sourced from the Lower Permian Fengcheng Formation, which generated hydrocarbons primarily during Late Triassic and the oils were later secondarily altered and dysmigrated along faults likely during Late Jurassic-Early Cretaceous. In contrast, the current reservoired oil/gas-condensate mainly derived from the Middle Permian Lower Wuerhe Formation, whose peak generation time last from Late Cretaceous even to the present. This paper showed that integrated oil-bearing fluid inclusion analyses have likely allowed a complex multi-phase charge history to be recognized and resolved with a high degree of confidence.  相似文献   

11.
阿尔泰东南缘布尔根地区造山带型金矿床受韧性剪切带控制,有两种矿化类型:一为石英脉型,另一种为糜棱岩型。糜棱岩型金矿硫化物的δ^34S值变化于-10.009‰~-2.819‰,平均值为-5.29‰,石英脉型金矿硫化物的δ^34S值变化于-0.062‰~-1.688‰,平均值为-1.0575‰。布尔根地区金矿床的金属硫化物样品具有较窄的^207Pb/^204Pb比值,变化于17.71~18.35;相对较高的^207Pb/^204Pb比值为15.31~15.64和^208Pb/^204Pb比值为37.13~38.07,铅同位素分析结果表明,该区金矿床成矿物质铅来源于地幔及下地壳。硫、铅同位素特征反映了布尔根地区金矿床成矿物质具有多来源特征。  相似文献   

12.
招-平断裂是胶东招掖金矿带的主要控矿断裂,其上盘金矿床受NE向断裂构造控制,赋矿围岩为胶东群变质岩,金矿化以含金硫化物石英脉为主。通过首次对招远灵雀山金矿床富金石英脉石英流体包襄体Rb-Sr等时线年龄的测定,获得116±23Ma成矿年龄。从而说明招-平断裂带上盘金矿大规模成矿期发生于早白垩世的构造体系转折期。对富金石英脉石英流体包襄体同位素特征研究表明。该地区成矿热液均以幔源为主,具有与招掖金矿带其它金矿类似的成矿热液系统。由此可以看出招.平断裂带上盘也具有良好的成矿条件。  相似文献   

13.
14.
Cerebrospinal fluid protein estimation is a routine diagnostic tool for various diseases. The proposed modified bromocresol green (BCG) method is applicable to automated as well as manual measurements. Protein concentrations and absorbance at 600 nm are linearly related throughout a wide range of concentrations from 10 mg % to 2000 mg %. Ninety C.S.F. samples were analyzed and results obtained by both the modified BCG method and routine pyrogallol red method were compared. An excellent co-relation was observed (n=90, g=0.996, P<0.001).  相似文献   

15.
基于2005年-2016年中国与部分发达国家的统计数据,对我国与发达国家的创新能力进行了比较。首先对中美两国的GDP总量进行了对比分析,并对未来我国的GDP总量进行了预测。之后试图通过比较中国与美国、日本、英国、瑞士、丹麦等创新强国在科技资源投入(R D 经费投入、人力资源投入等)和科技成果产出(专利、科技论文产出)两大方面的基本情况,对比分析了我国与这些科技创新强国的差异,对我国的科技创新能力在综合比较中进行较为客观、全面、可靠的定位。最后就如何减少我国科技创新过程中存在的制约因素,顺利实现创新强国的目标提出了建议。  相似文献   

16.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号