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 46 毫秒
1.
矽卡岩型钨矿是赣南地区的一种重要钨矿床类型。本文以焦里和宝山两个典型的矽卡岩型钨多金属矿床为例,开展了系统的成岩成矿年代学和岩石地球化学研究,结合区域钨锡矿床最新年代学研究成果,探讨了赣南地区钨矿的成岩成矿时代及形成构造环境。结果表明,焦里矽卡岩型钨多金属矿区斑状花岗闪长岩SHRIMP锆石U-Pb年龄为164.4±1.1Ma,辉钼矿Re-Os等时线年龄为170.6±4.6Ma;宝山矽卡岩型钨矿区花岗岩SHRIMP锆石U-Pb年龄为156.6±3.9Ma,辉钼矿Re-Os模式年龄加权平均值为161.0±1.9Ma,厘定了它们的成岩成矿年龄为中-晚侏罗世,同一矿区的成岩和成矿年龄在误差范围内基本一致。结合赣南崇(义)-(大)余-(上)犹钨锡矿集区已有的年代学资料,指出本区的成岩成矿年龄介于170~150Ma,集中在160~150Ma,认为赣南钨矿形成于华南中生代岩石圈伸展-减薄时期的侏罗纪板内拉张的地球动力学背景,系同一成岩成矿系统的产物。  相似文献   

2.
The Xihuashan and Tieshanlong tungsten deposit is an important large quartz vein‐type W‐polymetallic deposit in the southern Jiangxi Province, eastern Nanling Range. Zircon U–Pb analyses of representative ore‐forming granites from the Xihuashan and Tieshanlong tungsten deposit yield ages of 146.3 ± 2.9 Ma and 146.0 ± 3.8 Ma, respectively. According to the zircon Raman spectroscopy, these granitic rocks are disturbed by different degrees of hydrothermal alteration, whereas most zircons exhibit primary oscillatory zoning and Th/U ratios in the range of magmatic zircon, which means the analysis results represent the crystallization age of metallogenetic granitic assemblages. In combination with regional geological data, it is suggested that the Late Jurassic is probably another important episode of granitic magmatism and W‐Sn mineralization in southern Jiangxi Provinces, even South China.  相似文献   

3.
The multi-stage intrusions of intermediate-acid magma occur in the Bangpu mining district, the petrogenic ages of which have been identified. The times and sequences of their emplacement have been collated and stipulated in detail in this paper by using the laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) zircon U-Pb dating method. The ages of biotite monzogranite that were formed before mineralization in the southwest of this mining district are 70±1?Ma (mean square of weighted deviates (MSWD) =9.5, n=8) and 60.60±0.31?Ma (MSWD=3.8, n=16), which belong to the late Cretaceous–early Paleocene in age. That means, they are products of an early tectonic-magmatic event of the collision between the Indian and Asian continentals. The ages of ore-bearing monzogranite porphyry and ore-bearing diorite porphyrite are 16.23±0.19?Ma (MSWD=2.0, n=26) and 15.16±0.09?Ma (MSWD=3.9, n=5) separately, which belong to the middle Miocene in age; namely, they are products of the Gangdese post-collision extensional stage when crust-mantle materials melted and mixed as well as magmatic intrusion simultaneously occurred. Some zircons with ages of 203.6±2.2?Ma (MSWD=1.18, n=7) were captured in the ore-bearing diorite porphyrite, which shows that there had been tectono-magmatic events in the late Triassic–early Jurassic. Molybdenum (copper) ore-bodies produced in the monzogranite porphyry and copper (molybdenum) ore-bodies produced in the diorite porphyrite are the main ore types in this ore deposit. The model ages of Re-Os isotopic dating for the 11 molybdenite are 13.97–15.84?Ma, while isochron ages are 14.09±0.49?Ma (MSWD=26). The isochron ages of seven molybdenite from molybdenum (copper) ore with monzogranite porphyry type are 14.11±0.31?Ma (MSWD=5.2). There is great error in the isochron ages of four molybdenite from copper (molybdenum) ore with diorite porphyrite type, and their weighted average model ages of 14.6±1.2?Ma (MSWD=41), which generally represent the mineralization age. The results about the Re-Os isotopic dating of molybdenite in the ore of different types have limited exactly that, the minerlazation age of this ore deposits is about 14.09?Ma, which belongs to the middle Miocene mineralization. The Bangpu deposit has a uniform metallogenic dynamics background with the porphyry type and skarn-type deposits such as Jiama, Qulong and others.  相似文献   

4.
Xihuashan tungsten deposit is one of the earliest explored tungsten deposits in southeastern China. It is a vein type deposit genetically associated with the Xihuashan granite pluton. Here we report new dating and zircon geochemistry results. Re–Os isotopic dating for molybdenite intergrowth with wolframite in the oldest generation of the Xihuashan pluton yielded an isochron age of 157.0 ± 2.5 Ma (2σ). Zircon U–Pb laser ablation inductively coupled plasma mass spectrometry (LA‐ICP‐MS) dating shows that the pluton crystallized at 155.7 ± 2.2 Ma (2σ). This age is similar to the molybdenite Re–Os age for the ore deposit within error. This, together with published data, suggests that the major W(Mo)‐Sn mineralization occurred between 160–150 Ma in southeastern China. These deposits constitute a major part of the magmatic‐metallogenic belt of eastern Nanlin. The lower Re content in molybdenite of the Xihuashan tungsten deposit shows crustal origin for the ore‐forming material. The limited direct contributions from the subducting slab for the tungsten mineralization in the Nanling region suggest a change of the style of the paleo‐Pacific plate beneath southeastern China.  相似文献   

5.
赣南葛廷坑钼矿辉钼矿Re-Os年龄及其地质意义   总被引:1,自引:0,他引:1       下载免费PDF全文
赣南葛廷坑钼矿为产在花岗斑岩与围岩内外接触带的中型斑岩型钼矿床。通过对矿区含矿石英脉中7个辉钼矿样品进行Re Os同位素测定,获得等时线年龄及模式年龄的加权平均值分别为(1594±16)和(1588±13) Ma。等时线初始187Os为(0001±0055)ng/g,MSWD=17。葛廷坑钼矿形成于中侏罗世中晚期,其成矿年龄对应于华南中晚侏罗世第二成矿阶段(170~150 Ma),与区域内160 Ma左右的钨锡矿成矿作用基本一致。区域上华南钼的成矿时间具有连续性,在165~90 Ma均有发生。  相似文献   

6.
The Huaheitan molybdenum deposit in the Beishan area of northwest China consists of quartz‐sulfide veins. Orebodies occur in the contact zone of the Huaniushan granite. LA‐ICPMS U–Pb zircon dating constrains the crystallization of the granite at 225.6 ± 2.2 Ma (2σ, MSWD = 4.5). Re–Os dating of five molybdenite samples yield model ages ranging from 223.2 ± 3.5 Ma to 228.6 ± 3.4 Ma, with an average of 225.2 ± 2.4 Ma. The U–Pb and Re–Os ages are identical within the error, suggesting that the granite and related Huaheitan molybdenum deposit formed in the Late Triassic. Our new data, combined with published geochronological results from the other molybdenum deposits in this region, imply that intensive magmatism and Mo mineralization occurred during 240 Ma to 220 Ma throughout the Beishan area.  相似文献   

7.
昆山W-Mo-Cu矿床地处赣北九岭矿集区南部,距大湖塘超大型钨矿床狮尾洞矿区仅3 km。矿床目前处于详查阶段,已探明钨达中型规模,同时伴生中型钼矿及小型铜矿,具有良好的找矿潜力。昆山矿床矿化样式较为单一,W-Mo-Cu矿体以石英脉形式产出,主要赋存在燕山期侵入岩顶部与新元古界双桥山群浅变质岩的外接触带,具有"上钨中钼下铜"的特点,明显区别于大湖塘矿床矿体主要产在燕山期侵入岩与晋宁期黑云母花岗闪长岩的内外接触带,具细脉浸染型白钨矿、热液爆破角砾岩型钨铜矿及石英脉型黑钨矿"三位一体"的矿化特征。本文在详细的野外地质调查基础上,对昆山W-Mo-Cu矿床的成岩成矿时代进行了详细研究,并探讨了其地质意义。利用LA-ICP-MS锆石U-Pb法获得矿区内呈岩株状产出的似斑状花岗岩的年龄为151.7±1.3 Ma,晚期花岗斑岩脉的年龄为136.6±2.5 Ma;利用辉钼矿Re-Os法,获得辉钼矿Re-Os等时线年龄和加权平均年龄分别为151.0±1.3 Ma和150.0±1.0 Ma,厘定矿床成矿时代为晚侏罗世,且与似斑状花岗岩有关。结合前人所得高精度成岩成矿年龄数据,认为赣北地区燕山期成岩成矿具多期性,可分为160~150 Ma(塔前、朱溪钨多金属矿床)、140 Ma(大湖塘钨多金属矿床)和125 Ma(香炉山钨矿),主要集中于150~140 Ma。晚侏罗世,华南地区全面进入岩石圈"伸展-减薄"的地球动力学背景,赣北地区燕山期成岩成矿可能与这一构造背景有关。昆山矿床具"上钨中钼下铜"的分带模式,其成因值得进一步研究。  相似文献   

8.
Previous studies have obtained some petrogenetic and metallogenic chronological data with SHRIMP (sensitive high-resolution ion microprobe) zircon U-Pb, zircon LA-ICPMS (laser-ablation–inductively coupled plasma mass spectroscopy) U-Pb, molybdenite Re-Os isochron and muscovite Ar-Ar methods in southern Jiangxi Province and its adjacent areas. Based on these, the purpose of this paper is to study the petrogenetic and metallogenic ages and their time gap for different genetic types of W-Sn deposits, and thus to research their numerous episodes, zonal arrangement and their geodynamic background. The result shows that the large-scale W-Sn mineralization in southern Jiangxi Province occurred in the middle to late Jurassic (170–150 Ma), the skarn W-Sn-polymetallic deposits formed much earlier (170–161 Ma), and all of the wolframite – quartz vein type, greisen type, altered granite type and fractured zone type tungsten deposits formed in the late Jurassic (160–150 Ma). In one ore field or ore district, greisen type tungsten deposits formed earlier than quartz vein type ones hosted in the endo- or exo-contact zone; and quartz vein type hosted in the endocontact zone formed earlier than that of exocontact zone. There is no significant time difference between tungsten-tin mineralization and its intimately associated parent granite emplacement (1–6 Ma). They all formed in the same rock-forming and ore-forming system and under the same geodynamic setting. Regionally, rock-forming and ore-forming processes of the W-Sn deposits in the Nanling region (include southern Jiangxi Province, southern Hunan Province, northern Guangdong Province and eastern Guangxi Zhuang Autonomous Region) exhibit numerous episodes. The mineralization in the Nanling region mainly occurred at (240–210) Ma, (170–150) Ma and (130–90) Ma. The tungsten-tin deposits in this region are centered by the largest scale in southern Jiangxi Province and southern Hunan Province, and become small in the east, west, south and north directions. This displays a zonal arrangement and temporal and spatial distribution regularity. Integrated with the latest research results, it is concluded that the W-Sn mineralization in southern Jiangxi Province and its adjacent areas corresponds to the second large-scale mineralization in South China. The Indosinian W-Sn mineralization formed under the extensional tectonic regime between collisional compressional stages, while the Yanshanian large-scale petrogenetic and metallogenic processes occurred in the Jurassic intraplate extensional geodynamic setting of lithosphere extension.  相似文献   

9.
杨斌  赵磊  陈正乐  莫火华  鲁捷  谭友 《中国地质》2021,48(2):495-506
江西省兴国县见龙铜钨矿床位于南岭东西向构造-岩浆岩带东端与武夷山隆起带西侧之雩山坳陷带交汇部位,是赣南地区新近发现的铜(钨)多金属矿床。矿体产于佛子山岩体与震旦系浅变质岩的内、外接触带内,包括石英脉型矿化和云英岩型矿化。前人对本矿床鲜有研究,文章基于详细的野外地质调查,分别采用LA-ICP-MS锆石U-Pb法和辉钼矿Re-Os等时线法对见龙铜钨矿细粒黑云母花岗岩和云英岩中的辉钼矿进行精确定年。获得花岗岩单颗粒LA-ICP-MS锆石U-Pb加权平均年龄值为(154.2±1.7)Ma,云英岩型矿体的辉钼矿Re-Os等时线加权平均年龄为(155.9±1.2)Ma。研究表明成岩与成矿作用几乎同时发生,厘定矿床成岩成矿时代为晚侏罗世。见龙铜钨矿与区内已知的画眉坳、张家地和岩前等钨矿床成岩成矿时代相近。结合前人资料,进一步证实南岭东段钨多金属矿床主要形成于170~150 Ma。矿石中辉钼矿的铼含量为6.484×10~(-6)~21.346×10~(-6),结合硫同位素分析结果,综合分析认为矿床成矿物质来源于壳幔混合。  相似文献   

10.
赣西北大雾塘钨矿区地质特征及Re-Os同位素年代学研究   总被引:2,自引:1,他引:1  
通过对大湖塘钨矿田的大雾塘钨矿区辉钼矿Re-Os同位素年代学的研究,测得辉钼矿的w(Re)为0.3368×10~(-6)~8.256×10~(-6),获得的5个模式年龄比较一致,介于(136.6±2.2)Ma~(138.4±2.4)Ma,加权平均年龄为(137.7±2.7)Ma(MSWD=0.07)。将5个模式年龄进行等时线年龄计算,获得一条相关性较好的~(187)Re-~(187)Os等时线,计算得到辉钼矿Re-Os等时线年龄为(137.9±2.0)Ma(MSWD=0.20),与加权平均年龄一致,可代表辉钼矿的形成年龄。结合石门寺和狮尾洞矿区典型矿床地质、地球化学特征和成岩作用时空关系,认为大雾塘矿床的形成是大湖塘钨矿田的第二期次(140 Ma)大规模成矿作用的产物,2期成矿作用可能是大湖塘钨矿田巨量成矿元素堆积的重要原因之一。  相似文献   

11.
Mesozoic ore deposits in Zhejiang Province, Southeast China, are divided into the northwestern and southeastern Zhejiang metallogenic belts along the Jiangshan–Shaoxing Fault. The metal ore deposits found in these belts are epithermal Au–Ag deposits, hydrothermal‐vein Ag–Pb–Zn deposits, porphyry–skarn Mo (Fe) deposits, and vein‐type Mo deposits. There is a close spatial–temporal relationship between the Mesozoic ore deposits and Mesozoic volcanic–intrusive complexes. Zircon U–Pb dating of the ore‐related intrusive rocks and molybdenite Re–Os dating from two typical deposits (Tongcun Mo deposit and Zhilingtou Au–Ag deposit) in the two metallogenic belts show the early and late Yanshanian ages for mineralization. SIMS U–Pb data of zircons from the Tongcun Mo deposit and Zhilingtou Au–Ag deposit indicate that the host granitoids crystallized at 169.7 ± 9.7 Ma (2σ) and 113.6 ± 1 Ma (2σ), respectively. Re–Os analysis of six molybdenite samples from the Tongcun Mo deposit yields an isochron age of 163.9 ± 1.9 Ma (2σ). Re–Os analyses of five molybdenite samples from the porphyry Mo orebodies of the Zhilingtou Au‐Ag deposit yield an isochron age of 110.1 ± 1.8 Ma (2σ). Our results suggest that the metal mineralization in the Zhejiang Province, southeast China formed during at least two stages, i.e., Middle Jurassic and Early Cretaceous, coeval with the granitic magmatism.  相似文献   

12.
王少怀 《地质论评》2013,59(5):885-892
福建武平十二排铝矿床是近年来在闽西南地区找到的又一处铝矿床.钼矿化在中细粒黑云母花岗岩岩体与新元古界楼子坝群、晚古生界变质岩接触带内呈浸染状和脉状产出,并且构成透镜状矿体.本次研究过程中,对5件代表性辉钼矿样品进行了Re-Os同位素年龄测定,模式年龄值变化范围为149.7 ~ 152.8Ma,等时线年龄为(151 ±2) Ma,略晚于黑云母花岗岩的成岩年龄,由此认为十二排钼矿床与黑云母花岗岩的形成时间均为晚侏罗世,属燕山早期构造—岩浆活动的产物.结合矿区外围其他钼矿床同位素年龄数据,可以推测闽西南大规模钼矿化发生在印支期台地向活动大陆边缘转变阶段,并伴随燕山早期挤压隆升(约160 ~ 145 Ma)和燕山晚期由挤压向拉张机制转换(约105 ~90 Ma)作用所诱发的岩浆活动是导致钼矿床形成的主导因素.  相似文献   

13.
内蒙古乌拉特后旗查干花钼矿床地质特征及Re-Os测年   总被引:10,自引:1,他引:9  
查干花钼矿是近年来在内蒙古西部中蒙边境地区新发现的一个具大型规模隐伏矿床,区内辉钼矿化呈浸染状、团块状、细脉状分布于中细粒二长花岗岩与古元古界宝音图群地层北东接触带部位,具斑岩型矿床特点.本文在对矿区矿化和蚀变特征初步研究的基础上,开展了辉钼矿Re-Os测年,获得模式年龄为(239.3±3.3)~(242.6±3.6)...  相似文献   

14.
赣中大王山钨钼多金属矿床位于钦杭结合带西缘大王山—于山W-U-Sn-Au多金属成矿带,为典型的石英脉型矿床,其赋矿岩体具有多阶段特征。通过LA-ICPMS锆石U-Pb测年技术,得到晚阶段细粒花岗岩成岩年龄为145.1±0.89 Ma,与早阶段形成的中粗粒花岗岩形成时间接近(147.8±1.9 Ma);利用辉钼矿Re-Os同位素测年技术,得到成矿年龄为147.6±1.8 Ma,表明该矿床形成于晚侏罗世,与南岭地区及其周边的燕山期石英脉型钨钼多金属矿床的成岩、成矿时代一致。辉钼矿中Re的含量具有指示成矿物质来源的重要参考价值,大王山钨多金属矿床的辉钼矿中Re含量较低,为2 215×10-9~10 183×10-9,与以钨为主、共生或伴生钼的矿床特征相吻合,指示其成矿物质主要来自于壳源或壳幔混合源,即在160~110 Ma之间,古太平洋板块与欧亚板块之间的主应力作用方向发生转变,促使我国东部岩浆活动频繁,岩浆期后热液与围岩碱交代明显,大量成矿物质被萃取,并在成矿有利部位富集。  相似文献   

15.
盘古山钨铋矿床位于南岭成矿带东段的赣县-于都钨多金属矿集区,为一赋存于隐伏岩体外接触带的石英脉大型钨铋(碲)矿床.笔者采集了该矿区内2条不同地质产状黑钨矿-石英脉中的辉钼矿样品,进行了辉钼矿Re-Os同位素测试,获得其等时线年龄为(157.75±0.76) Ma(MSWD=0.99)和(158.8±5.7)Ma(MSW...  相似文献   

16.
内蒙古红花尔基钨多金属矿床成岩成矿年代学研究   总被引:6,自引:3,他引:3  
红花尔基钨多金属矿床是近年在大兴安岭中北部新发现的一处储量达大型规模的钨多金属矿床,矿体受含矿花岗岩体控制,总体呈平缓似层状赋存于花岗岩体内的顶部接触带。含矿花岗岩为不等粒结构,岩体无显著变形变质特征,保存基本完好。岩体含矿部位均遭受强烈的绢云母化、云英岩化、硅化等蚀变,与成矿有关的蚀变主要为绢云母化。矿床主要有用金属矿物为白钨矿和辉钼矿,岩体内辉钼矿与白钨矿大体具上钼下钨的分带特点,其钨矿体呈细脉状或稀疏大脉状分布于灰白色蚀变花岗岩内,多伴随硅化石英脉。辉钼矿呈细脉状、薄膜状或团块状产于花岗岩内,地层中局部可见与黄铁矿、黄铜矿、白钨矿共生,显示该矿床为一高温热液脉型钨多金属矿床。笔者对矿区2件含矿花岗岩样品——黑云母花岗岩HHW-1、HHW-12进行了LA-ICP-MS锆石U-Pb测年,2件样品的年龄结果具有一致性,谐和年龄为(179.4±2.3)Ma~(179.2±1.8)Ma;同时,对矿区7件辉钼矿样品进行了铼-锇同位素分析,获得同位素等时线年龄为(176.8±2.2)Ma(MSWD=0.29),岩体的形成年龄稍早于成矿年龄,在测试误差范围内具有一致性。结合野外地质特征及岩相学研究,我们认为黑云母花岗岩体与成矿密切相关,矿床成岩及成矿时代均为早-中侏罗世,属燕山期构造-岩浆活动的产物。  相似文献   

17.
红花尔基钨多金属矿是近年在大兴安岭中北部地区发现的一处大型钨多金属矿床,主要矿化蚀变为云英岩化、绢英岩化,主要有用金属矿物为白钨矿和辉钼矿,岩体内辉钼矿与白钨矿有上钼下钨的带状分布特点,地质特征显示该矿床为一高温热液型钨(钼)矿床。为准确限定成矿热液活动时间,本文对矿区典型蚀变矿物——云英岩化蚀变带白云母进行Ar-Ar同位素定年,获得Ar-Ar坪年龄为174.4±1.2 Ma,等时线年龄为173.2±4.3 Ma。根据矿区云英岩化带与钨钼矿化带空间上重合和密切共生的关系,可知白云母的形成是与白钨矿、辉钼矿形成同源、同时,且辉钼矿Re-Os年龄(176.8±2.2 Ma)与Ar-Ar年龄在误差范围内具有一致性,该年龄代表了钨钼矿热液成矿时代。结合野外地质特征及锆石U-Pb、辉钼矿Re-Os年龄,进一步限定该矿床成矿时代为早中侏罗世,属燕山期构造岩浆活动的产物。  相似文献   

18.
The Middle–Lower Yangtze Region (MLYR) is one of the most important metallogenic belts in China that hosts numerous Cu–Fe–Au–S deposits. The Hucunnan deposit in the central part of MLYR is a newly discovered porphyry–skarn‐type copper–molybdenum deposit during recent drilling exploration. Laser ablation ICP–MS analysis carried out in this study yields U–Pb isotopic ages of 137.5 ± 1.2 Ma for the Cu–Mo bearing granodiorite rock and 125.0 ± 1.5 Ma for the Cu‐bearing quartz diorites. The Re–Os isotopic dating of seven molybdenite samples gave an isochron age of 139.5 ± 1.1 Ma, suggesting a syn‐magma mineralization of molybdenite in the Hucunnan deposit. Since porphyry‐type molybdenum deposits are rare in central MLYR, the discovery of the Hucunnan deposit suggests possible molybdenite mineralizations in the deep places of the Cu–Mo bearing granitoids. In addition, the U–Pb isotopic age of 125 Ma for the Cu‐bearing quartz diorites implies a new Cu mineralization period for the MLYR that was rarely reported by previous studies.  相似文献   

19.
The Xinlu Sn‐polymetallic ore field is located in the western Nanling Polymetallic Belt in northeastern Guangxi, South China, where a number of typical skarn‐, hydrothermal vein‐type tin deposits have developed. There are two types of Sn deposits: skarn‐type and sulfide‐quartz vein‐type. The tin mineralizations mainly occur on the south side of the Guposhan granitic complex pluton and within its outer contact zone. To constrain the Sn mineralization age and further understand its genetic links to the Guposhan granitic complex, a series of geochronological works has been conducted at the Liuheao deposit of the ore field using high‐precision zircon SHRIMP U‐Pb, molybdenite Re‐Os, and muscovite Ar‐Ar dating methods. The results show that the biotite‐monzogranite, which is part of the Xinlu intrusive unit of the Guposhan complex pluton, has a SHRIMP U‐Pb zircon age of 161.0 ± 1.5 Ma. The skarn‐type ore has a 40Ar‐39Ar muscovite plateau age of 160 ± 2 Ma (same as its isochron age), and the sulfide‐quartz vein‐type ore yields an Re‐Os molybdenite isochron age of 154.4 ± 3.5 Ma. The magmatic‐hydrothermal geochronological sequence demonstrated that the hydrothermal mineralization took place immediately following the emplacement of the monzogranite, with the skarn metasomatic mineralization stage predating the sulfide mineralization stage. Geochronologically, we have compared this ore field with 26 typical Sn deposits distributed along the Nanling Polymetallic Belt, leading to the suggestion of the magmatic‐metallogenic processes in the Xinlu ore field (ca. 161–154 Ma) as a component of the Early Yanshanian large‐scale Sn‐polymetallic mineralization event (peaked at 160–150 Ma) in the Nanling Range of South China. Petrogenesis of Sn‐producing granite and Sn‐polymetallic mineralization were probably caused by crust–mantle interaction as a result of significant lithospheric extension and thinning in South China in the Late Jurassic.  相似文献   

20.
Jilin Province in NE China lies on the eastern edge of the Xing–Meng Orogenic Belt. Mineral exploration in this area has resulted in the discovery of numerous large, medium, and small sized Cu, Mo, Au, and Co deposits. To better understand the formation and distribution of both the porphyry and skarn types Cu deposits of the region, we examined the geological characteristics of the deposits and applied zircon U–Pb and molybdenite Re–Os isotope dating to constrain the age of the mineralization. The Binghugou Cu deposit yields a zircon U–Pb age for quartz diorite of 128.1 ± 1.6 Ma; the Chang'anpu Cu deposit yields a zircon U–Pb age for granite porphyry of 117.0 ± 1.4 Ma; the Ermi Cu deposit yields a zircon U–Pb age for granite porphyry of 96.8 ± 1.1 Ma; the Tongshan Cu deposit yields molybdenite Re–Os model ages of 128.7 to 130.2 Ma, an isochron age of 129.0 ± 1.6 Ma, and a weighted mean model age of 129.2 ± 0.7 Ma; and the Tianhexing Cu deposit yields molybdenite Re–Os model ages of 113.9 to 115.2 Ma, an isochron age of 114.7 ± 1.2 Ma, and a weighted mean model age of 114.7 ± 0.7 Ma. The new ages, combined with existing geochronology data, show that intense porphyry and skarn types Cu mineralization was coeval with Cretaceous magmatism. The geotectonic processes responsible for the genesis of the Cu mineralization were probably related to lithospheric thinning. By analyzing the accumulated molybdenite Re–Os, zircon U–Pb, and Ar–Ar ages for NE China, it is concluded that the Cu deposits formed during multiple events coinciding with periods of magmatic activity. We have identified five phases of mineralization: early Paleozoic (~476 Ma), late Paleozoic (286.5–273.6 Ma), early Mesozoic (~228.7 Ma), Jurassic (194.8–137.1 Ma), and Cretaceous (131.2–96.8 Ma). Although Cu deposits formed during each phase, most of the Cu mineralization occurred during the Cretaceous.  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