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1.
冀西北东坪金矿床成矿流体的来源研究   总被引:1,自引:0,他引:1  
冀西北东坪金矿床成矿流体的来源研究*莫测辉王秀璋程景平梁华英(华南农业大学资源环境学院,广州510642)(中国科学院广州地球化学研究所,广州510640)关键词金矿床成矿流体来源岩浆热液大气降水热液侵入岩体中的金矿床乃至岩体接触带或附近地层中的金矿...  相似文献   
2.
青藏高原东北地区现代降水中δD与δ^18O的关系研究   总被引:11,自引:0,他引:11  
章新平  姚檀栋 《冰川冻土》1996,18(4):360-365
根据对取自青藏高原东北地区部分降水样中氢氧稳定同位素比率的分析,得到沱沱河站的大气水线(MWL)为:δD=8.25δ^18O+9.22‰,与全球平均MWL的差别较小;德令哈、西宁站的MWL分别为:δD=5.86δ^18O-27.28‰和δD=6.96δ^18O-30.19‰,均与全球平均MWL差别较大。这主要归因于水汽源地的非平衡蒸发和凝结物在非饱和大气中降落时的非平衡蒸发。上述地区的过量氘Exd  相似文献   
3.
南秦岭十里坪锑矿床成矿时代及成因的初步研究   总被引:1,自引:1,他引:1  
十里坪锑矿床受赵川陆缘隆_滑构造的主滑脱拆离带的控制。矿体呈脉状赋存于韧_脆性主滑脱带上部的脆性次级断层_节理中,矿石类型主要为萤石石英辉锑矿型。围岩为太古宙_元古宙变质岩系,围岩蚀变弱。成矿流体属H2O_CO2_NaCl体系,流体包裹体盐度w(NaCleq)为3.6%~11.3%,均一温度为109~232℃,形成压力大致为800×105Pa。硫、铅同位素研究表明,矿质主要来源于变火山岩围岩;氢、氧同位素显示,成矿流体以大气降水为主,初步将该矿床定为变质岩源就地式大气降水热液矿床。矿石中萤石Sm_Nd等时线年龄为(392±24)Ma,与南秦岭北部晚古生代拗陷区热水喷流_沉积成矿时代相一致,它们都形成于秦岭微板块泥盆纪非造山裂解阶段。  相似文献   
4.
Time series of hydrogen and oxygen stable isotope ratios (δ2H and δ18O) in rivers can be used to quantify groundwater contributions to streamflow, and timescales of catchment storage. However, these isotope hydrology techniques rely on distinct spatial or temporal patterns of δ2H and δ18O within the hydrologic cycle. In New Zealand, lack of understanding of spatial and temporal patterns of δ2H and δ18O of river water hinders development of regional and national-scale hydrological models. We measured δ2H and δ18O monthly, together with river flow rates at 58 locations across New Zealand over a two-year period. Results show: (a) general patterns of decreasing δ2H and δ18O with increasing latitude were altered by New Zealand's major mountain ranges; δ2H and δ18O were distinctly lower in rivers fed from higher elevation catchments, and in eastern rain-shadow areas of both islands; (b) river water δ2H and δ18O values were partly controlled by local catchment characteristics (catchment slope, PET, catchment elevation, and upstream lake area) that influence evaporation processes; (c) regional differences in evaporation caused the slope of the river water line (i.e., the relationship between δ2H and δ18O in river water) for the (warmer) North Island to be lower than that of the (cooler, mountain-dominated) South Island; (d) δ2H seasonal offsets (i.e., the difference between seasonal peak and mean values) for individual sites ranged from 0.50‰ to 5.07‰. Peak values of δ18O and δ2H were in late summer, but values peaked 1 month later at the South Island sites, likely due to greater snow-melt contributions to streamflow. Strong spatial differences in river water δ2H and δ18O caused by orographic rainfall effects and evaporation may inform studies of water mixing across landscapes. Generally distinct seasonal isotope cycles, despite the large catchment sizes of rivers studied, are encouraging for transit time analysis applications.  相似文献   
5.
《Sedimentology》2018,65(6):1827-1858
Dedolomitization is a common diagenetic process in shallow burial environments and is often associated with sulphates in mixed carbonate‐evaporite successions. In these settings, elevated Ca2+/Mg2+ ratios necessary for dedolomitization result from the dissolution of sulphate phases by the incursion of undersaturated groundwater. Reported dedolomite textures from other studies are varied, but the most prevalent is a rhombic texture interpreted to result from the partial to complete pseudomorphic replacement of secondary dolomite rhombs formed in the burial diagenetic realm. In this study of primary cryptocrystalline to finely crystalline dolomicrites in the Prairie Evaporite Formation of north‐eastern Alberta, dedolomitization has resulted in sutured to loosely packed mosaics of dedolomite that range from subhedral to distinctly euhedral (rhombic) crystal fabrics; however, no prior aggrading neomorphism producing dolomite rhombs is evident in the precursor dolomicrites. Non‐pseudomorphic dedolomitization of the dolomicrites results in textures that include rhombic dedolomite crystals with cloudy cores comprising remnant dolomicrite and clear rims. These textures are similar to those observed in the pseudomorphic dedolomitization of secondary dolomite rhombs. The Prairie Evaporite Formation of north‐eastern Alberta has experienced extensive karstification near the erosional margin of the sedimentary succession. Dedolomitization of dolomicrites occurs in marker beds within the Prairie Evaporite succession associated with evaporite karstification. Along with stratigraphic and petrographic considerations, stable isotope results support the interpretation of a shallow dedolomitization event influenced by meteoric waters derived from the basin margin. Negative δ 18O and low δ 13C values (averages of −13·6‰VPDB and 0·5‰VPDB, respectively) of the dedolomite, compared with those of the primary dolomicrite (averages of −6·0‰VPDB and 1·2‰VPDB, respectively), point to isotopically light diagenetic fluids. These results show that rhombic dedolomite textures can form through shallow, non‐pseudomorphic dedolomitization of dolomicrites by meteoric fluids in the presence of sulphates, with resulting textures that are similar to the pseudomorphic dedolomitization of secondary dolomite rhombs.  相似文献   
6.
The late Quaternary shallow-water carbonates have been altered by a variety of diagenetic processes, and further influenced by high-amplitude global and regional sea level changes. This study utilizes a new borehole drilled on the Yongxing Island, Xisha Islands to investigate meteoric diagenetic alteration in the late Quaternary shallowwater carbonates. Petrographic, mineralogical, stable isotopic and elemental data provide new insights into the meteoric diagenetic processes of the reef limestone. The results show the variation in the distribution of aragonite,high-Mg calcite(HMC) and low-Mg calcite(LMC) divides the shallow-water carbonates in Core SSZK1 into three intervals, which are Unit I(31.20–55.92 m, LMC), Unit II(18.39–31.20 m, aragonite and LMC) and Unit III(upper 18.39 m of core, aragonite, LMC and HMC). Various degrees of meteoric diagenesis exist in the identified three units. The lowermost Unit I has suffered almost complete freshwater diagenesis, whereas the overlying Units II and III have undergone incompletely meteoric diagenesis. The amount of time that limestone has been in the freshwater diagenetic environment has the largest impact on the degree of meteoric diagenesis. Approximately four intact facies/water depth cycles are recognized. The cumulative depletion of elements such as strontium(Sr),sodium(Na) and sulphur(S) caused by duplicated meteoric diagenesis in the older reef sequences are distinguished from the younger reef sequences. This study provides a new record of meteoric diagenesis, which is well reflected by whole-rock mineralogy and geochemistry.  相似文献   
7.
吉黑东部斑岩型-浅成热液型铜金矿床多重成矿模型   总被引:5,自引:0,他引:5  
通过四个典型矿床(小西南岔、闹枝、五凤和刺猬沟)的对比,发现它们在形成时间-空间一成因上既相互联系,又相互区别。小西南岔和闹枝矿床存在三个成矿流体系统:加热天水系统(A)、排放流体系统(B)、蒸气缕(steam plume)反应系统(C);五凤和刺猬沟矿床只有一个成矿流体系统,即排放流体系统(B)。前者的成矿流体由浅成岩浆房的补给;后者的成矿流体主要为循环天水,浅成岩浆房的补给不明显。小西南岔金铜矿床产于中生代火山岩盆地边缘的隆起带,属于斑岩型矿床;闹枝金(铜)矿床产于中生代火山岩盆地内的断隆块,属于斑岩-浅成热液过渡型矿床;五凤和刺猬沟金(银)矿床产于中生代火山岩盆地内断裂带,属于浅成热液型矿床。在区域成矿上,由浅入深,浅成热液型斑岩-浅成热液过渡型和斑岩型构成多重成矿模型。  相似文献   
8.
锡矿山超大型锑矿床流体成矿作用及矿床成因   总被引:5,自引:0,他引:5  
本文对锡矿山流体包裹体,稳定同位素,活动性微量元素,硅化作用及元素存在相态和淋滤率进行了详细研究。揭示了其成矿流体来源于深循环大气降水,是一种中低温,低盐度的弱碱性流体,成矿物质来自于前泥盆系地层,主要是震旦,寒武系地层,区域地层可能经受过大规模的流体运移作用。得出了锡矿山锑矿是由深循环大气降水林滤基底地层的成矿物质后形成含矿流体沿主断裂向上运移至浅部,由于物理化学条件的改变导致锑沉淀成矿的结论。  相似文献   
9.
吉黑东部斑岩型-浅成热液型铜金矿床多重成矿模型   总被引:9,自引:2,他引:9  
通过四个典型矿床(小西南岔、闹枝、五凤和刺猬沟)的对比,发现它们在形成时间-空间-成因上既相互联系,又相互区别。小西南岔和闹枝矿床存在三个成矿流体系统:加热天水系统(A)、排放流体系统(B)、蒸气缕(steamplume)反应系统(C);五凤和刺猬沟矿床只有一个成矿流体系统,即排放流体系统(B)。前者的成矿流体由浅成岩浆房的补给;后者的成矿流体主要为循环天水,浅成岩浆房的补给不明显。小西南岔金铜矿床产于中生代火山岩盆地边缘的隆起带,属于斑岩型矿床;闹枝金(铜)矿床产于中生代火山岩盆地内的断隆块,属于斑岩-浅成热液过渡型矿床;五凤和刺猬沟金(银)矿床产于中生代火山岩盆地内断裂带,属于浅成熟液型矿床。在区域成矿上,由浅入深,浅成热液型斑岩-浅成热液过渡型和斑岩型构成多重成矿模型。  相似文献   
10.
为查明青海驼路沟新型独立钴(金)矿床的成因和成矿物质来源,文章对矿区发育的块状、条带状和浸染状黄铁矿矿石进行了黄铁矿流体包裹体氦氩同位素和黄铁矿硫、铅同位素测试。结果表明,不同类型矿石的成矿流体氦、氩同位素组成基本一致,3He/4He介于0.10~0.31Ra(平均0.21Ra),40Ar/36Ar比值为302~569(平均373),反映钴矿化流体主要来源于在赋矿岩系中深循环的大气降水;矿石黄铁矿硫同位素值分布集中且接近于零,δ34S变化于-4.5‰~+1.5‰,集中在-1.8‰~-0.2‰,显示深部来源;矿石铅以高放射性成因为特征(206Pb/204Pb>19.279、207Pb/204Pb>15.691、208Pb/204Pb>39.627),且自地层围岩→区域早古生代火山岩→矿石依次明显增大,可能指示高放射性成因矿石铅主要是由以深循环大气降水来源为主的热液不断从围岩地层中淋取而来。  相似文献   
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