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我国电气石矿床类型及其地质特征 总被引:4,自引:0,他引:4
在研究我国电气石矿产产出地质环境、成矿地质过程和电气石矿物组分特征的基础上,总结了我国电气石矿产成矿类型:花岗伟晶岩型、岩浆热液型、火山次火山热液型、热水沉积型和表生残积砂矿型。并阐述了各类型电气石矿床类型产出的时代、成矿地质特征和电气石矿物化学特征。 相似文献
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对黄沙坪矿床硫化物期矿物进行矿物包裹体温度和成分测定,并进行热力学计算,获得毒砂-闪锌矿阶段成矿温度为300°,logfCO2为0.4~1.4;logfCH4为-2.05~2.07logfH2O为1.67~1.93;logfO2为-32.87~-38.39。对矽卡岩期和硫化物期硫化物进行硫同位素测定,获得矽卡岩期黄铁矿的δ34S为4.1‰~4.6‰; 硫化物期硫化物的δ34S为6.2‰~17.5‰,并具有δ34SSp大于δ34SGn和两组δ34SΣs值。对长石、方铅矿和闪锌矿进行了铅同位素测定,获得长石的206Pb/204Pb比值为18.429~19.305,207Pb/204Pb比值为15.598~15.905;208Pb/204Pb比值为38.647~39.235。方铅矿和闪锌矿的206Pb/204Pb比值为18.00~18.772,207Pb/204Pb比值为15.580~16.045,208Pb/204Pb比值为38.490~41.560,并呈线性排列,显示矿床硫铅是两种以上的物质来源。 相似文献
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The late Mesozoic terrestrial strata in numerous basins in S (South) China provide important sedimentary archives to understand the tectonic evolution of S China and East Asia. However, establishing regional stratigraphic framework within a basin and precisely correlating strata among basins remain challenging due to limited chronological constraints. In this study, we report zircon U-Pb ages of 21 samples and a compilation of 132 reliable age data from 15 type sections of the volcanic-sedimentary basins in S China. The synthesized geochronology allows us to establish a refined chronostratigraphy for the late Mesozoic terrestrial strata. New calibrated results indicate that most of the lithostratigraphic units are diachronic, laterally stacking, and/or interfingering. Six stacking styles are classified for the relationship of lithostratigraphic units. Analysis of the refined chronostratigraphy and the stratal stacking styles, together with lithological composition, reveals three episodes of tectono-stratigraphic evolution. Episode I (~145–125 Ma) is characterized by intense volcanism, as evidenced by widespread occurrence of volcanic strata and (137–120 Ma) A-type granites, and was probably related to the rollback of the subducting Paleo-Pacific plate; The strata deposited during Episode II (~125–100 Ma) are composed of variegated sediments associated with/without volcanic intercalations in sedimentary faulted-depression basins, indicating the waning of volcanism and tectonism attributed to the ending of the Izanagi/Kula plate subduction; In Episode III (<~100 Ma), red strata occurred along the NE-SW sinistral strike-slip faulting or failed rifting in small basins, which probably resulted from the drastic directional change of the Paleo-Pacific plate subduction from NW to SN. 相似文献
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The Hahaigang W–Mo polymetallic skarn deposit is located in the central-eastern part of Gangdese tectono-magmatic belt in Lhasa terrane, Tibet. The deposit was discovered in 2007 with currently proven 46 million tons of WO3 ores, 12 million tons of Mo ores, and 1.31 million tons of combined Cu–Pb–Zn ores, at an average grade of 0.20% WO3, 0.07% Mo, 0.026% Cu, 0.49% Pb, and 3.1% Zn. Ore bodies occur in veins or disseminations, and are confined within the NE-striking Dalong fault zone which is hosted by the Lower-Permian Pangna Group of dominantly quartz sandstone and slate. Several granitic plutons are exposed in the area or known from drill-holes. Ages of these granitic plutons are determined by using zircon U–Pb LA–ICP–MS method. For example, the biotite monzogranite yields a 206Pb/238U–207Pb/238U concordia age of 58.66 ± 0.90 Ma and a weighted mean 206Pb/238U age of 57.02 ± 0.42 Ma. The granite porphyry yields a 206Pb/238U–207Pb/238U concordia age of 109.1 ± 8.9 Ma and a weighted mean 206Pb/238U age of 114.0 ± 2.6 Ma. The biotite monzogranite yields a weighted mean 206Pb/238U age of 56.1 ± 1.1 Ma. Re–Os isochron age of 63.2 ± 3.2 Ma from 5 molybdenite samples collected from the W–Mo skarn ores is also obtained in this study. The zircon U–Pb and molybdenite Re–Os geochronological data suggest that the W–Mo mineralization was not temporally associated with any of the dated igneous plutons. However, the molybdenite Re–Os age of 63.2 ± 3.2 Ma indicates that the W–Mo mineralization might have occurred during the main India–Eurasia collision that was initiated around 65 Ma. Microprobe analysis of ilvaite that occurs in two generations in the W–Mo skarn ores reveals a close relationship to Ca–Fe–F-rich hydrothermal fluids, which were probably derived from deeply-seated magmas. We suggest that ascent of the fluids was strictly controlled by the ore-controlling Dalong fault zone, and that chemical interaction and metasomatism between the fluids and the Lower-Permian Pangna quartz-feldspathic host rocks produced the ilvaite and the W–Mo polymetallic skarn deposit during the main India–Eurasia collision. Although the majority of the polymetallic deposits in the Gangdese belt are reported to be either pre- or post-main collision, it is evident from this study that the main collision also produced W–Mo polymetallic mineralization within the belt. 相似文献
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