首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 15 毫秒
1.
新疆西南天山萨瓦亚尔顿金矿床地质特征及成矿作用   总被引:12,自引:2,他引:12  
根据大量的实际工作,并结合前人的研究成果,详细介绍了萨瓦亚尔顿金矿床的成矿地质背景和矿床地质特征,通过流体包裹体和同位素研究,对萨瓦亚尔顿金矿的成矿作用进行了深入讨论。研究结果表明,流体包裹体类型主要为气液两相包裹体,其次为富液相包裹体、富气相包裹体、含NaCl子晶多相包裹体和含液相CO2的三相包裹体。成矿流体为中低温(78~355℃)、中低盐度[w(NaCleq)2.57%~22.10%]的H2O-NaCl-CO2-CH4体系。硫化物的δ^34S值变化于-3.0‰~ 2.61‰,平均值为0.07‰,暗示硫来自地幔或与地幔相关的岩浆。白云石和菱铁矿的δ^13CPDB值为-5.4‰~-0.6‰,表明成矿物质来自地幔及海相碳酸盐岩。氢和氧同位素显示成矿流体主要来源于大气降水,并混合少量岩浆水。萨瓦亚尔顿金矿与乌兹别克斯坦穆龙套金矿和吉尔吉斯斯坦库姆托尔金矿具有相似性,但它在浅成中-低温条件下成矿,且金、锑共生。物理化学条件和流体成分的改变、水-岩交换作用及流体的不混溶作用在成矿过程中起了重要作用。  相似文献   

2.
Abstract: The Kanggur gold deposit lies in East Tianshan mountains, eastern section of Central Asia orogenic belt. The gold mineralization occurs on the northern margin of the Aqishan‐Yamansu Paleozoic island arc in the Tarim Plate. It was hosted mainly in Middle‐Lower Carboniferous calc‐alkaline volcanic rocks, and controlled by the distributions of syn‐tectonic intrusions and ductile shear zones. In order to determine ore‐forming age of the Kanggur deposit, samples were collected from ores, wall rocks, altered rocks and intrusions. The dating methods include Rb‐Sr isochron and Sm‐Nd isochron, and secondly 40Ar/39Ar age spectrum, U‐Pb and Pb‐Pb methods. Based on the mineral assemblage and crosscutting relationship of ore veins, five mineralization stages are identified. This result is confirmed by isotope geochronologic data. The first stage featuring formation of pyrite‐bearing phyllic rock, is mineralogically represented by pyrite, sericite and quartz with poor native gold. The Rb‐Sr isochron age of this stage is 2905 Ma. The second stage represents the main ore‐forming stage and is characterized by native gold–quartz–pyrite–magnetite–chlorite assemblage. Magnetite and pyrite of this stage are dated by Sm‐Nd isochron at 290.47.2 Ma and fluid inclusion in quartz is dated by Rb‐Sr isochron at 282.35 Ma. The third mineralization stage features native gold–quartz–pyrite vein. In the fourth stage, Au‐bearing polymetallic sulfide‐quartz veins formed. Fluid inclusions in quartz are dated by Rb‐Sr isochron method at 25821 Ma. The fifth stage is composed of sulfide‐free quartz–carbonate veins with Rb‐Sr age of 2547 Ma. The first and second stages are related to ductile‐brittle deformation of shear zones, and are named dynamo‐metamorphic hydrothermal period. The third to fifth stages related to intrusive processes of tonalite and brittle fracturing of the shear zones, are called magmato‐hydrothermal mineralization period. The Rb‐Sr isochron age of 2905 Ma of the altered andesite in the Kanggur mine area may reflect timing of regional ductile shear zone. The Rb‐Sr isochron age of 28216 Ma of the quartz‐syenite porphyry and the zircon U‐Pb age of 2757 Ma of tonalite in the north of Kanggur gold mine area are consistent with the age of gold mineralization (290‐254 Ma). This correspondence indicates that the tonalite and subvolcanic rocks may have been related to gold mineralization. The Rb–Sr, Sm‐Nd and U‐Pb ages and regional geology support the hypothesis that the Kanggur gold deposit was formed during collisional orogenesis process in Late Variscan.  相似文献   

3.
The Hatu large gold deposit is located on the western margin of the Junggar basin, Xinjiang. Its mineralization is characterized by auriferous quartz veins and Au-bearing altered fracturing zones. Studies on mineralogy, inclusions and decrepitation temperature indicate that the gold deposit was formed by overlapping of two kinds of fluid of different origins, instead of gradual evolution of a single fluid. The auriferous quartz veins are related to magmatism-originated fluid, but the Au-bearing altered fracturing zones to deep-derived fluid. Bonanzas in quartz veins were formed and localized at overlapping positions of two types of fluid under intensive compression.  相似文献   

4.
阿万达金矿位于新疆阿克苏市拜城县, 属西南天山造山带, 是一新发现的中型金矿床。在简要总结矿床地质特征的基础上, 通过流体包裹体显微测温和毒砂地温计研究, 详尽地探讨了阿万达金矿成矿流体的演化。研究表明:矿化石英中存在含CO2的三相和气液两相两类包裹体, 且以后者居多;气液两相包裹体均一温度为188~380℃, 呈双峰式分布, 盐度(w(NaCl))为6.9%~20.7%;含CO2包裹体的最终均一温度为238~347℃, 盐度为2.8%~7.0%。综合分析认为, 阿万达金矿成矿流体经历了由高温向中低温两个成矿阶段的演化过程。高温阶段, 成矿流体均一温度为270~380℃, 捕获温度为345~420℃, 估算的捕获压力为74~142 MPa(按静岩压力估算成矿深度为2.8~5.4 km), 以中低盐度H2O-CO2-NaCl体系为主, 形成高温毒砂及其他硫化物;中低温阶段, 均一温度为188~270℃, 捕获温度为270~304℃, 捕获压力为52~104 MPa, 成矿流体成分向中低盐度H2O-NaCl体系转变, 沉淀出低温毒砂及其他硫化物。综合阿万达金矿的矿床地质特征以及流体演化特点, 认为其成因类型属中浅成造山型金矿。  相似文献   

5.
新疆托库孜巴依金矿床地质特征及成因   总被引:2,自引:0,他引:2  
新疆托库孜巴依金矿床的地质、地球化学特征以及同位素年龄,氢、氧、硫等同位素测试和流体包裹体研究表明,该矿床经历了热液成矿期和地表氧化期2个成矿期,工业矿体主要富集在热液期的金-硫化物-碲化物-石英阶段。含矿石英脉中黄铁矿的δ(34S)值与围岩硫特征基本相符,具上地幔源δ(34S)分布特征。石英中包裹体氢氧同位素组成落于大气降水线之下,在变质水、岩浆水下部边缘,具混源特征。铅同位素组成落在上地幔和造山带增长线之间偏造山带侧。成矿流体气相成分以水为主,CO2、CO成分很少,液相离子成分以Ca2+,Na+,K+,HCO3-,SO24-为主。流体包裹体的盐度为6.00%~9.44%,密度为0.763~0.922g/cm3。均一温度为275~324,207~273,207~218,191~222℃。托库孜巴依金矿床属于韧性剪切带型金矿床。构造变形作用促使流体萃取了阿勒泰组上亚组第二岩性段变质火山岩或火山沉积岩中的成矿元素,导致金元素在有利的空间形成含金石英脉,后期岩浆侵入活动为金的进一步富集提供了热源和流体。  相似文献   

6.
甘肃礼县李坝大型金矿床成矿地质特征及成因   总被引:24,自引:4,他引:24       下载免费PDF全文
文章以成矿地质条件、矿床地质特征为基础,通过Ar—Ar年龄测定、稳定同位素测试和地层含金性分析等,研究了李坝金矿床的成因。研究表明,李坝金矿床与中川花岗岩在时间、空间和成因上关系密切。含金石英脉Ar—Ar法、Rb-Sr法和Pb—Pb法年龄为210~171.6Ma,与中川岩体年龄(177~229Ma)吻合。包裹体水的δD-74‰~-83‰,δ^18O水9.51‰~11.72‰,成矿流体水为岩浆水和大气降水的混合水。花岗岩提供了部分成矿物质来源,含矿热液通过F1导矿构造进入F3、F12等容矿断裂破碎带沉淀成矿。  相似文献   

7.
江西德兴地区是中国重要的金属矿产资源聚集地,主要矿床有德兴斑岩铜矿(包括朱砂红、铜厂和富家坞)、金山金矿、银山Pb-Zn-Ag多金属矿和蛤蟆金矿等.这些矿床可以划分为与剪切带有关的金矿和与岩浆热液成矿作用有关的铜金钼铅锌银矿床(如德兴斑岩Cu-Mo-Au矿床和银山Pb-Zn-Ag-Cu-Au矿床).在控矿构造、成矿元素组合、成矿流体来源、矿床地球化学等方面这两类矿床都有明显的差异;二者成矿年龄的差异显示它们是不同地质时期演化的结果.剪切带型金矿(如金山金矿)与斑岩铜矿(德兴铜矿)在成因上没有明显的直接关系,它们非单一同一岩浆系统的产物.  相似文献   

8.
西南天山萨瓦亚尔顿金(锑)矿床成矿时代与赋矿地层时代   总被引:14,自引:1,他引:14  
通过对萨瓦亚尔顿金(锑)矿床矿石中共生石英的流体包裹体作Rb-Sr等时线年龄(231±10Ma) 的研究,表明成矿时代为印支期,与南天山造山带陆内造山晚阶段一致。由于矿区主体赋矿地层的(2)(3) 岩性段中无化石,故采集其中的一组无矿石英脉作包裹体Rb-Sr等时线年龄(389±42Ma) ,推测赋矿地层年龄上限为志留 泥盆纪。根据近年来在赋矿岩系的(1)(1) 段所发现的动物化石年代依据,指出含矿浊积岩系东部和西部二个岩性段即(1) 和(4)段为石炭系。  相似文献   

9.
辽宁省朝阳市东五家子金矿成矿流体特征及矿床成因探讨   总被引:1,自引:0,他引:1  
东五家子金矿所处大地构造位置为华北克拉通北缘中段,其北侧以赤峰-开原深大断裂与内蒙-兴安褶皱造山带相隔,南侧以凌源-北票深断裂与燕山沉降带为邻.北西向断层为矿区内最主要的容矿构造,脉岩中的闪斜煌斑岩与矿化关系最为密切.矿石自然类型为石英脉型,矿石中硫化物主要为黄铁矿,其次为黄铜矿和方铅矿.贵金属矿物有自然金和碲银矿.围岩蚀变为硅化、绢云母化和碳酸盐化等,蚀变分带明显.矿石中明显出现碲化物,与矿化关系密切的闪斜煌斑岩发育,矿石硫同位素δ34S‰接近零值等表明成矿流体具幔源流体特征.石英流体包裹体发育较差,包裹体为单一的气液两相包裹体,属H2O-NaCl体系类型.流体盐度为9.86%~16.72%,且随着温度降低盐度出现升高的趋势.流体密度为0.936~1.017g/cm3,成矿温度为172.3~212.6℃,成矿压力为19~24MPa,形成深度为1.9~2.4km.与国内典型的造山型金矿对比表明,该矿床属浅成的造山型金矿,成矿动力学背景为早燕山期华北与西伯利亚克拉通碰撞后的陆内造山.  相似文献   

10.
东天山红石金矿床石英Rb-Sr同位素定年   总被引:6,自引:0,他引:6  
红石金矿床产于东天山秋格明塔什—黄山韧性剪切带中,其成矿作用主要受韧性剪切带控制.前人通过金矿石绢云母Ar-Ar法将该矿床主成矿时代限定在254 ~ 259Ma之间,本文从讨论Rb-Sr法测年在韧性剪切带型金矿成矿时代研究中的可行性角度出发,对红石金矿主成矿期形成的金矿石进行石英流体包裹体Rb-Sr法测年.Rb-Sr法测年得到等时线年龄为257±4Ma,n(87Sr)/n(86Sr)=0.70997±0.00016.该年龄位于红石金矿床254~259Ma的主成矿时代范围内,说明石英流体包裹体Rb-Sr测年对于解决韧性剪切带型金矿床成矿时代具有很好的可行性.另外,红石金矿床与同一剪切带内的康古尔金矿在成矿时代、空间位置关系以及成矿物质来源等方面均具有一致性,认为红石金矿与康古尔金矿属相同成矿事件的产物.通过分析红石金矿床成矿时代、韧性剪切带作用时代、右行走滑以及后期的冷却降温作用时代的关系,推测红石金矿床及其剪切带内所在的康古尔等金矿床成矿作用主因是秋格明塔什—黄山韧性剪切带内晚期的右行走滑剪切变形及走滑作用后的快速抬升和缓慢冷却作用.从韧性剪切带型金矿成矿类型来看,属于早期韧性剪切变形,后期脆—韧性变形、成矿作用叠加这一类型.  相似文献   

11.
本文通过Ar-Ar同位素计时、稳定同位素示踪、石英位错观察、差异应力计算和热水沉积岩研究等,探讨了八卦庙超大型金矿床的成矿作用和成矿机制。NW向无根揉皱石英脉含Au 0.5×10~(-6)~4×10~(-6),矿化元素组合为Au+Cu+Pb+Zn,Ar-Ar坪年龄232.58±1.59Ma;NE向石英脉含An大于4×10~(-6),可达37.2×10~(-6),Au为主,Ar-Ar年龄为131.91±0.98Ma。研究表明:①泥盆纪热水沉积岩为金矿床的形成提供了矿源,成矿热液水以岩浆水为主,从矿质富集到成矿至少经历了印支期挤压推覆、韧性剪切→印支晚期—燕山期岩浆热液作用;②印支晚期和燕山早期(即韧性构造变形向脆性变形的转换期)是本区金矿成矿的高峰期;③多期成矿作用叠加、多次脉动式构造活动的“应力泵”作用是该超大型金矿床成矿的主因。  相似文献   

12.
青海省都兰县果洛龙洼金矿成矿流体   总被引:2,自引:0,他引:2  
果洛龙洼金矿是青海东昆仑地区最典型、最具规模的金矿床之一。在前人资料基础上,将果洛龙洼金矿热液成矿期划分为4个成矿阶段:贫矿化石英阶段、石英-多金属硫化物阶段(主要成矿阶段)、石英-贫硫化物阶段(次要成矿阶段)和石英-碳酸盐阶段。随后对主要和次要成矿阶段石英脉开展流体包裹体显微测温和H-O同位素研究。结果表明:原生流体包裹体主要包括气液两相、富CO2三相、纯CO2两相共3类;成矿流体总体以CO2-NaCl-H2O体系为主,均一温度为130.0~357.3 ℃,盐度(w(NaCl))为1.83%~20.11%。石英-多金属硫化物阶段石英δ18OV-SMOW值为14.8‰~17.2‰,据此计算流体的δ18OH2O值为5.5‰~8.5‰,流体的δDV-SMOW值为-61‰~-96‰;而石英-贫硫化物阶段石英δ18OV-SMOW值为15.7‰~16.9‰,据此计算流体的δ18OH2O值为4.1‰~5.3‰,流体的δDV-SMOW值为-84‰~-101‰。由此认为:主要成矿阶段成矿流体可能为高温低盐度富CO2变质热液和低温中高盐度岩浆热液两个端元组成的混合流体;次要成矿阶段成矿流体主要为混合后更均匀的中低温中低盐度热液,但后期明显有大气降水混入。总之,成矿流体的来源、性质及其演化等方面的研究结果进一步证明果洛龙洼金矿为造山型金矿。  相似文献   

13.
江西德兴地区主要矿床类型、成矿地质征及其因关系   总被引:10,自引:0,他引:10  
江西德兴地区是中国重要的金属矿产资源聚集地,主要矿床有德兴斑岩铜矿(包括朱砂红、铜厂和富家坞)、金山金矿、银山Pb-Zn-Ag多金属矿和蛤蟆金矿等.这些矿床可以划分为与剪切带有关的金矿和与岩浆热液成矿作用有关的铜金钼铅锌银矿床(如德兴斑岩Cu-Mo-Au矿床和银山Pb-Zn-Ag-Cu-Au矿床).在控矿构造、成矿元素...  相似文献   

14.
玉海铜(钼)矿床成矿岩体为石英闪长(玢)岩,矿化呈细脉状、细脉-浸染状和稀疏浸染状。围岩蚀变主要为钾硅酸盐化、石英-绢云母化、青磐岩化和黏土化蚀变。矿床类型为斑岩型。铜(钼)矿化主要发育于钾硅酸盐化阶段、石英-绢云母化阶段和青磐岩化阶段。流体包裹体可划分为气液两相包裹体、含子晶三相包裹体和CO_2包裹体3种类型。钾硅酸盐化阶段的均一温度为307~423℃,盐度w(NaCleq)为4.18%~10.11%,密度0.62~0.77g/cm~3,属于高温、中-低盐度流体;石英-绢云母化阶段均一温度为172~336℃,盐度为w(NaCleq)为3.23%~8.55%,密度0.70~0.93 g/cm~3,属于中温、低盐度流体;晚期青磐岩化阶段均一温度155~296℃,盐度w(NaCleq)为3.71%~9.08%,密度0.80~0.96 g/cm~3,属于中低温、低盐度流体。从早阶段到晚阶段,成矿流体温度逐渐下降,各成矿阶段成矿流体盐度均小于11%,但钾硅酸盐化阶段成矿流体盐度稍高。石英-绢云母化阶段成矿流体δD=-91.6‰~-72.1‰,δ~(18)OH_2O=-1.8‰~6.3‰;青磐岩化阶段成矿流体δD=-97.1‰~-68.3‰,δ~(18)OH_2O=-6.3‰~2.2‰;成矿流体具有岩浆水和大气降水混合特征,但青磐岩化阶段大气降水含量更高。硫化物的δ~(34)S值为-3.5‰~2.8‰,硫来自石英闪长(玢)岩。  相似文献   

15.
穆龙套金矿地质和地球化学   总被引:2,自引:0,他引:2  
总结了世界最大造山型金矿穆龙套金矿(黄金储量〉6100t)的地质、地球化学特征。穆龙套金矿的赋矿围岩为晚奥陶世早志留世黑色碳质页岩,矿床产于剪切带和断裂的交汇部位,受韧性剪切带控制。下部有强烈蚀变的白岗岩(约287Ma),矿体北部‘出露火成岩岩墙(273~286Ma)。金主要赋存于石英脉中,矿石及其围岩蚀变组合的地球化学特征指示了岩浆流体对成矿作用的贡献,但流体包裹体研究表明,成矿流体中绝大多数He来自地壳,惰性气体主要来自大气。金矿年龄被确定为约275Ma(SmNd等时线)、226~254Ma(绢云母40Ar/39Ar坪年龄)和约290Ma(毒砂Re-Os)。在有限的地区内短时期形成巨型金矿需要特殊的机制和长期的流体演化过程。  相似文献   

16.
新疆萨日达拉金矿地质特征及成因探讨   总被引:6,自引:0,他引:6  
萨日达拉金矿是新近发现的一个成矿机制和控矿因素都与韧性剪切带密切相关的金矿床,具有独特的成矿特征。文章对萨日达拉金矿的地质特征和作用特征进行了较系统的研究,结合矿区不同岩石的痕量金、自然金和硫化物的成分及硫化物的硫同位素、铅同位素测试结果,对矿床的形成过程进行了详细讨论。研究表明,萨日达拉金矿与胜利达坂韧性剪切带在空间、时间及成因上密切相关,属典型的韧性剪切带型金矿,成矿具有多期、多阶段和多物源的特点,韧性剪切变形、热液活动及其成矿构成了统一的韧性剪切成岩成矿作用过程。对于一个含金韧性剪切带系统,不论是垂向上还是横向上,强变形区段都是成矿元素活化、迁出的区段,而低应变-中等应变部位以及不同强度应变带的过渡部位才是含金流体中的金富集、沉淀成矿的最有利部位,也是寻找大型矿床、矿体的有利部位。  相似文献   

17.
The Tieluping silver deposit, which is sited along NE-trending faults within the high-grade metamorphic basement of the Xiong‘er terrane, is part of an important Mesozoic orogenic-type Ag-Pb and Au belt recently discovered. Ore formation includes three stages: Early (E), Middle (M) and Late (L), which include quartz-pyrite (E),polymetallic sulfides (M) and carbonates (L), respectively. The E-stage fluids are characterized by δD=-90%c,δ^13CCO2=2.0‰ and δ^18O=9‰ at 373℃, and are deeply sourced; the L-stage fluids, with δD=-70‰, δ^13C CO2=-1.3%c and δ^18O=-2‰, are shallow-sourced meteoric water; whereas the M-stage fluids, with δD=-109‰, δ^13C CO2=0.1%c and δ^18O2‰, are a mix of deep-sourced and shallow-sourced fluids. Comparisons of the D-O-C isotopic systematics of the Estage ore-forming fluids with the fluids derived from Mesozoic granites, Archean-Paleoproterozoic metamorphic basement and Paleo-Mesoproterozoic Xiong‘er Group, show that these units cannot generate fluids with the measured isotopic composition (high δ^180 and δ^13C ratios and low δD ratios) characteristic of the ore-forming fluids. This suggests that the E-stage ore-forming fluids originated from metamorphic devolatilization of a carbonate-shale-chert lithological association, locally rich in organic matter, which could correspond to the Meso-Neoproterozoic Guandaokou and Luanchuan Groups, rather than to geologic units in the Xiong‘er terrane, the lower crust and the mantle. This supports the view that the rocks of the Guandaokou and Luanchuan Groups south of the Machaoying fault might be the favorable sources. A tectonic model that combines collisional orogeny, metallogeny and hydrothermal fluid flow is proposed to explain the formation of the Tieluping silver deposit. During the Mesozoic collision between the South and North China paleocontinents, a crustal slab containing a lithological association consisting of carbonate-shale-chert, locally rich in organic matter (carbonaceous shale) was thrust northwards beneath the Xiong‘er terrane along the Machaoying fault.Metamorphic devolatilization of this underthrust slab provided the ore-forming fluids to develop the Au-Ag-(Pb-Zn) ore belt, which includes the Tieluping silver deposit.  相似文献   

18.
耿庄金矿床产于燕山期隐爆角砾岩体内,是晋东北具有代表意义的金多金属矿床之一。对矿床流体包裹体系统研究表明,不同成矿阶段石英中流体包裹体主要有5种类型:富气相包裹体、富液相包裹体、含CO2三相包裹体、含子矿物三相包裹体及少量纯液相包裹体,流体属H2O-CO2-NaCl体系类型。成矿前阶段包裹体类型多样,且以相似的均一温度共存,显示流体具明显沸腾及不混溶特性;成矿温度集中于170~180 ℃。结合同位素和金矿物特征,认为耿庄金矿床应为与燕山期次火山热液有关的中-低温热液型金矿床。  相似文献   

19.
Liqiang Yang    Jun Deng    Chunying Guo    Jing Zhang    Shaoqing Jiang    Bangfei Gao    Qingjie Gong    Qingfei Wang 《Resource Geology》2009,59(2):181-193
The Dayingezhuang gold deposit is located in the central part of the Zhaoping Fault Zone, which is one of the most important gold-hosting faults in the Jiaodong gold province of China. Dayingezhuang is a typical large-scale shear zone-hosted disseminated gold deposit with superimposed silver mineralization. Fluid inclusion (FI) petrography and microthermometry, and analysis of oxygen and hydrogen isotopes for fluid inclusions were conducted to determine the characteristics of the ore-forming fluids and the processes of silver mineralization. Microthermometry data of FI indicated that ore-forming fluids are characterized by low salinity and low density. Homogenization pressures of FI are estimated at 20 × 105–220 × 105 Pa. The change in ore-forming fluids from K2SO4 type to NaCl type indicates the superposition of two hydrothermal mineralizing events. Ore-forming fluids were dominated by magmatic components in the early mineralization period, and affected by meteoric waters in the late period. Gold may have been transported as Au-S or Au-Cl complexes, whereas silver was transported as Ag-Cl complexes. Early fluid boiling and later fluid mixing are thought to be two of the main factors causing the deposition and superimposing of gold and silver to form the large deposit.  相似文献   

20.
黔西南水银洞金矿床流体包裹体研究   总被引:5,自引:0,他引:5  
水银洞金矿床是黔西南典型的特大型卡林型金矿床之一。但其成矿流体来源尚有争议。通过对水银洞金矿床脉石英和方解石中流体包裹体的温度与压力、盐度与密度、包裹体成分和包裹体H和O同位素等方面的研究,指出水银洞卡林型金矿床成矿流体属中低温(96.7~220℃)、低盐度(NaCl)0.635%~9.861%,平均值为4.282%±2.260%、中等密度(0.725~0.977 g/cm3,平均值为0.910±0.061 g/cm3);脉石英阶段流体水化学类型属Cl--Na+型或SO42--Cl-Na+型,方解石阶段属SO42--Cl--Ca2+型。成矿流体压力可能为高-超高压(160±40 MPa);成矿流体主要是大气降水形成的地下热水,可能有部分岩浆热液的掺入。  相似文献   

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