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1.
辽宁新岭铅锌银矿床位于华北克拉通东北缘,矿体赋存于古元古代辽河群变质岩中,受断裂构造控制。为了确定新岭矿床的成岩成矿时代、成矿流体和物质来源及其与中生代岩浆活动的关系,文章对新岭矿床开展了详细的矿床地质特征、年代学及同位素地球化学研究。结果表明,新岭矿床内与成矿有关花岗斑岩的LA-ICP-MS锆石U-Pb年龄为(227.3±1.5)Ma。5件闪锌矿样品的Rb-Sr等时线年龄为(222.9±2.9)Ma,初始Sr同位素比值为0.7104,确认新岭成岩成矿时代为晚三叠世。成矿流体的δ18OW值介于4.7‰~7.6‰,δDW值介于-97.7‰~-82.0‰,指示成矿流体主要为岩浆热液。黄铁矿3He/4He值介于0.15~0.21 Ra,进一步揭示成矿流体具有壳-幔混源特征。黄铁矿样品的LA-ICP-MS原位δ34S值介于+3.9‰~+7.2‰,均值为+5.5‰。6件闪锌矿样品的铅同位素组成为206Pb/204Pb=17...  相似文献   

2.
刘军  李铁刚  段超 《地质学报》2018,92(7):1432-1446
八家子金矿床是华北克拉通北缘夹皮沟金矿带中的重要金矿床之一,赋存于太古宙花岗-绿岩带内。矿体多呈脉状产出,受NW向夹皮沟断裂控制,与中生代正长斑岩有成因联系。本文在八家子矿床选取8件黄铁矿样品开展了Rb-Sr定年,获得Rb-Sr等时线年龄为218.6±1.5Ma(MSWD=1.4),初始Sr同位素比值ISr=0.71047。成矿流体的δ18 OW值为3.2‰~5.1‰,δDW值为-100.7‰~-88‰。成矿流体主要来源于岩浆流体,混合部分变质流体和大气降水。金属硫化物的δ34S值介于-0.2‰~+7.9‰之间,均值+5.7‰,表明硫主要来自深源岩浆。黄铁矿中流体包裹体3 He/4 He值为1.05~1.20Ra,平均值1.13Ra。地幔流体参与成矿作用的比例为11.6%~13.2%,地壳流体占主导地位。八家子金矿的成矿时代为晚三叠世,形成于华北克拉通北缘的碰撞后伸展环境。  相似文献   

3.
辽宁省盖县猫岭金矿床地质特征及成因探讨   总被引:2,自引:0,他引:2  
猫岭金矿床赋存于早元古代辽河群盖县组变质岩系内,空间上与印支期猫岭似斑状花岗岩体关系密切,两者相距仅0.2km,花岗岩体本身有金矿化及蚀变现象。矿床的成矿热液为一种氧逸度较低、富集碱金属及卤族(特别是Cl)元素的热液,其δD=-77——80‰,δ18O=6.05-7.38‰,δ34S=6.15-10.3‰。矿床的矿石铅与猫岭花岗岩体长石铅的同位素组成不尽一致。根据上述特征可认为:猫岭金矿床为与中生代花岗岩有关的、典型的岩浆热液型金矿床,但金属成矿物质除成矿热浪本身带来外,部分还由成矿热液萃取自容矿围岩-辽河群盖县组。  相似文献   

4.
四川天宝山铅锌矿床是赋存于震旦系灯影组白云岩中的大型铅锌矿床,一直以来缺乏精确的成矿年龄数据,致使其成矿构造环境存在争议.获取了闪锌矿Rb-Sr年龄,联合H-O、C-O同位素数据,以确定其成矿年代、成矿物质来源及成矿构造环境.闪锌矿Rb-Sr年龄为348.5±7.2 Ma(MSWD=1.10),表明矿床形成于早石炭世.热液矿物δDH2O、δ18O值分别为-19.3‰~-58.1‰、-1.4‰~0.6‰,沿海水与地层有机质反应线分布,并有向雨水线漂移的趋势,说明成矿流体中水是海水与地层有机质反应并加入雨水的混合体.热液方解石δ13C、δ18O值明显分为两群,分别为-1.7‰~-1.6‰、12.9‰~15.2‰和-6.5‰~-4.9‰、19.3‰~20.2‰,暗示成矿流体中C、O可能来源于赋矿围岩溶解作用和有机质脱羧基作用.闪锌矿(87Sr/86Sr)i值为0.710 42 ±0.000 13,高于赋矿围岩Sr同位素值而明显低于基底Sr同位素值,指示成矿物质主要来源于赋矿围岩与基底.结果表明川滇黔地区存在两期铅锌成矿作用,分别形成于晚泥盆世-早石炭世与古特提斯洋张开有关的伸展构造环境和晚三叠世-早侏罗世与古特提斯洋闭合有关的收缩构造环境.   相似文献   

5.
晋北火山岩型金银矿床同位素地球化学特征   总被引:5,自引:0,他引:5  
李兆龙  张连营  骆华宝 《地球学报》1994,15(Z1):145-151
晋北地区是浅成低温热液金银矿床重要分布区。金银矿床与火山岩岩体密切相关。与成矿有关的石英斑岩、石岗斑岩基 Rb-Sr等时线年龄为136-167Ma,为燕山早中期产物,(87Sr/86Sr)。为0.7058-0.7065,属幔壳混源型。铅同位素资料表明,支家地银矿和刁泉银、金、铜矿铅同位素组成与高于庄组白云岩及有关次山岩岩石铅组成相似,可能均属壳幔混合源。耿庄金矿铅同位素属异常铅。金银矿床的δ34S值分布范围为-0.8‰-+9.6‰,算术平均值为3.8‰,为岩浆热液型特征。成矿流体氢氧同位素及碳酸盐的碳氧同  相似文献   

6.
通过矿物流体包裹体Rb-Sr同位素测年,获得鄂北黑龙潭金矿石英Rb-Sr等时线年龄为132.6±2.7Ma,表明该金矿床形成于早白垩世中期。矿石石英中流体包裹体Sr同位素初始比(~(87)Sr/~(86)Sr)i平均值为0.710798,小于陆源硅酸盐的值(0.720),高于地幔Sr的初始值(0.707),暗示成矿物质来源于壳幔混合。结合各类岩矿石Au丰度变化,S、Pb、H、O等同位素组成,以及稀土和微量元素特征、成矿流体等研究,认为该矿床的形成可能与燕山期持续伸展阶段大规模构造-岩浆活动有关,燕山期中酸性岩浆活动为金矿成矿提供了主要矿源和热源。  相似文献   

7.
铲子坪金矿位于雪峰山构造岩浆岩带的白马山复式花岗岩体外接触带附近。本文通过对铲子坪金矿床岩石地球化学以及稳定同位素的研究,探讨其矿床成矿物质来源及矿床成因。研究结果表明:矿石中金属硫化物的δ34S介于-7.58‰~+0.32‰,平均为-2.44‰,富轻硫,表明硫化物中的硫主要来自花岗岩浆,有部分地层硫酸盐中的硫混入;铅同位素组成相对稳定,变化范围很小。根据铅构造模式图解和△γ-△β图解,铅同位素主要来源于地幔,有部分地壳铅的加入;氢、氧同位素表明成矿流体具有变质热液和岩浆热液的双重性,成矿晚期热液有大气水成分加入;碳同位素表明成矿流体与砂质板岩关系密切,与地幔或深部流体有一定的关系,矿床成矿流体中的CO2很可能为壳幔混合;锶同位素研究表明,铲子坪金矿床的(87Sr/86Sr)i组成特征与华南陆壳重熔性花岗岩初始岩浆水的(87Sr/86Sr)i组成特征基本一致,表明其成矿作用可能与岩浆热液有关。铲子坪金矿成因类型为岩浆热液型。  相似文献   

8.
位于东准噶尔北缘的希勒库都克铜钼矿床是一个以钼为主的斑岩型矿床,形成于早石炭世。希勒库都克铜钼矿床硫化物δ34S值介于+0.4‰~+7.6‰之间,平均为+4.1‰,其中黄铁矿δ34S值为+0.4‰~+7.6‰(平均+4.2‰)、辉钼矿δ34S值为+3.2‰~+4.7‰(平均+4.2‰)、黄铜矿δ34S值为+1.6‰~+2.5‰(平均+2.1‰),均显示出岩浆硫的组成特征。硫化物稀土元素特征与含矿斑岩类似,暗示成矿物质可能来源于含矿斑岩;流体包裹体地球化学及H-O同位素特征也表明成矿流体主要来自岩浆热液。而含矿斑岩高的正εNd(t)值、低的87Sr/86Sr初始比值表明含矿岩浆可能主要来自于地幔源区。综合研究区硫化物硫同位素、稀土元素及流体包裹体地球化学特征等分析,本文认为希勒库都克铜钼矿床成矿物质主要来自地幔源区,且含矿岩浆可能经历了地壳深部壳幔物质混合均一化的过程。  相似文献   

9.
猫岭金矿床位于辽宁省盖县境内,地处华北地台东南缘。矿床的成矿物质来源于辽河群。成矿热液为吕梁期变质热液。金矿化带的展布受基底褶皱构造和剪切带构造控制,矿化类型以含硫化物石英脉型和硫化物细脉浸染型为主,矿石最大特点是含金硫化物石英脉同围岩糜棱岩化千枚岩同时卷入褶曲变形,金主要以裂隙金产于毒砂和磁黄铁矿中。对猫岭金矿床成因的认识,过去许多学者认为,辽南地区的金矿成因均与中生代构造岩浆活动密切相关,而猫岭金矿的发现,提出了一种新的观点——辽南地区早元古代可作为一个重要成矿期,揭示了辽南一种新的金矿类型——变质热液含金剪切带型。  相似文献   

10.
西秦岭李坝金矿床地质、同位素地球化学及其成因探讨   总被引:1,自引:0,他引:1  
李坝金矿床位于西秦岭造山带中的礼-岷矿集区内,赋矿围岩为泥盆系浅变质细碎屑岩,矿床产于中川岩体的外侧热接触变质带内,矿体主要受断裂破碎带控制。本文在李坝金矿床地质特征研究的基础上,对赋矿围岩、花岗斑岩岩脉、矿石硫化物进行了LA-MC-ICPMS原位微区硫同位素测试及化学溶样法分析,对不同地质体的铅同位素进行了系统测定与示踪,测定了成矿流体的氢-氧同位素组成,并对与矿体相伴产出花岗斑岩脉进行了LA-ICP-MS锆石U-Pb定年。研究表明,李坝金矿床花岗斑岩脉中黄铁矿δ34S值范围为8.19‰~10.06‰,赋矿围岩中金属硫化物δ34S值范围为4.94‰~9.81‰,矿石硫化物的δ34S值范围为4.94‰~10.82‰,矿石硫化物的硫同位素组成与矿区花岗斑岩及赋矿围岩的硫同位素组成相似,暗示成矿流体中的硫源主要来自受改造或变质的地层岩石与岩浆热液硫的混合。不同地质体的铅同位素组成变化范围较小,在Zartman铅构造模式图解中,样品投影点均落于造山带与上地壳演化线附近,矿石铅投影点与赋矿围岩及矿区岩脉的投影点重合,表明矿石中的铅可能来源于赋矿围岩和岩浆作用的混合。氢-氧同位素研究表明,成矿流体可能为变质流体、岩浆流体及地层建造水的混合热流体。矿区花岗斑岩脉与矿体相伴产出,花岗斑岩的LA-ICP-MS锆石U-Pb年龄为223 Ma,与金矿化时间一致,暗示成矿作用与岩浆活动同时发生。李坝金矿床与矿区岩浆岩同为造山作用的产物,并且其矿床地质特征、同位素地球化学特征与造山型金矿床相似,为形成于秦岭造山带由碰撞向伸展转变环境下成矿物质来源复杂的造山型金矿床。  相似文献   

11.
上海金山群斜长角闪岩Sm—Nd和Ar—Ar同位素年龄测定   总被引:2,自引:0,他引:2  
周新华  蒋荣华 《岩石学报》1993,9(4):418-421
上海地区经钻孔揭示的基底变质地层,即金山群中斜长角闪岩类经全岩Sm-Nd等时线法测定其年龄为1264±113Ma,εnd(t)为1.5±1.9。而从中分选出的角闪石的^40Ar-^39Ar体系则反映了后期多次热事件的叠加。上述测定结果反映了本区在中元石代的壳增长及显生代期间多期改造的复杂地质演化过程。  相似文献   

12.
Absolute ages of migmatization in the polymetamorphic, parautochthonous basement of the Sveconorwegian Province, Sweden, have been determined using U–Pb ion probe analysis of zircon domains that formed in leucosome of migmatitic orthogneisses. Migmatite zircon was formed by recrystallization whereas dissolution–reprecipitation and neocrystallization were subordinate. The recrystallized migmatite zircon was identified by comparison of zircon in mesosomes and leucosomes. It is backscatter electron‐bright, U‐rich (800–4400 ppm) with low Th/U‐ratios (generally 0.01–0.1), unzoned or ‘oscillatory ghost zoned’, and occurs as up to 100 μm‐thick rims with transitional contacts to cores of protolith zircon. Protolith ages of 1686 ± 12 and 1668 ± 11 Ma were obtained from moderately resorbed, igneous zircon crystals (generally Th/U = 0.5–1.5, U < 300 ppm) in mesosomes; protolith zircon is also present as resorbed cores in the leucosomes. Linkage of folding, synchronous migmatization and formation of recrystallized zircon rims allowed direct dating of south‐vergent folding at 976 ± 7 Ma. At a second locality, similar recrystallized zircon rims in leucosome date pre‐Sveconorwegian migmatization at 1425 ± 7 Ma; an upper age bracket of 1394 ± 12 Ma for two overprinting phases of deformation (upright folding along gently SSW‐plunging axes and stretching in ESE) was set by zircon in a folded metagranitic dyke. Lower age brackets for these events were set at 952 ± 7 and 946 ± 8 Ma by zircon in two crosscutting and undeformed granite–pegmatite dykes. Together with previously published data the present results demonstrate: (i) Tectonometamorphic reworking during the Hallandian orogenesis at 1.44–1.42 Ga, resulting in migmatization and formation of a coarse gneissic layering. (ii) Sveconorwegian continent–continent collision at 0.98–0.96 Ga, involving (a) emplacement of an eclogite unit, (b) regional high‐pressure granulite facies metamorphism, (c) southvergent folding, subhorizontal, east–west stretching and migmatization, all of which caused overprint or transposition of older Mesoproterozoic and Sveconorwegian structures. The Sveconorwegian migmatization and folding took place during or shortly after the emplacement of Sveconorwegian eclogite and is interpreted as a result of north–south shortening, synchronous with east–west extension and unroofing during late stages of the continent–continent collision.  相似文献   

13.
甘肃巴谢剖面黄土-古土壤的光释光测年研究   总被引:2,自引:0,他引:2  
光释光(OSL)测年是测定第四纪沉积物年龄的一种新技术。它通过单色光束激发使晶体中储存的电离辐射能释放出来。与热释光(TL)测年相比,OSL测年可以不考虑残留的OSL信号,而且测量具有简便、迅速且准确等优点。本文用细颗粒光释光技术对甘肃巴谢剖面的黄土-古土壤进行了测定,其测年结果与14C测年结果相吻合。这表明,光释光是一项极潜力的年代学技术。  相似文献   

14.
The behaviour of ice sheets as they retreated from their Last Glacial Maximum (LGM) positions provides insights into Lateglacial and early Holocene ice‐sheet dynamics and climate change. The pattern of deglaciation of the Laurentide Ice Sheet (LIS) in arctic fiord landscapes can now be well dated using cosmogenic exposure dating. We use cosmogenic exposure and radiocarbon ages to constrain the deglaciation history of Clyde Inlet, a 120 km long fiord on northeastern Baffin Island. The LIS reached the continental shelf during the LGM, retreated from the coastal lowlands by 12.5 ± 0.7 ka (n = 3), and from the fiord mouth by 11.7 ± 2.2 ka (n = 4). Rapid retreat from the outer fiord occurred 10.3 ± 1.3 ka (n = 6), with the terminus reaching the inner fiord shortly after 9.4 ka (n = 2), where several moraine systems were deposited between ca. 9.4 and ca. 8.4 ka. These moraines represent fluctuations of the LIS during the warmest summers since the last interglaciation, and this suggests that the ice sheet was responding to increased snowfall. Before retreating from the head of Clyde Inlet, the LIS margin fluctuated at least twice between ca. 7.9 and ca. 8.5 ka, possibly in response to the 8.2 ka cold event. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

15.
川西北平武地区的碧口地块中出露较多的印支期岩浆侵入岩类,但缺乏精确的年代学资料.笔者运用阴极发光技术,对碧口地块西南缘的南一里化岗闪长岩中的锆石进行了细致的内部结构分析,并在此基础上利用LA-ICP-MS锆石U-Pb原位定年技术进行了同位素年龄测定.结果表明,花岗闪长岩中锆石Th/U比值较高,阴极发光图像显示锆石内部发育振荡环带,具岩浆成因特点;南一里花岗闪长岩的结晶年龄为223.1±2.6 Ma(MSWD=1.4),表明其形成时代为晚三叠世早期、南一里花岗闪长岩侵入时代晚于勉略构造带的主碰撞期,侵位于后碰撞环境,或者至少是由同碰撞到后碰撞的转折阶段.  相似文献   

16.
江西岿美山钨矿矿床的成矿年龄及地质特征   总被引:1,自引:0,他引:1       下载免费PDF全文
江西省定南县岿美山钨矿区位于南岭东西向构造带东段与武夷山北东-北北东向构造带南段的复合部位,是赣南地区以石英脉型黑钨矿和矽卡岩型白钨矿共生为特征的钨矿床,其是否为南岭地区燕山期的成矿作用,一直没有精确的年代学研究成果。本文采用锆石SHRIMP U-Pb定年和辉钼矿Re-Os同位素定年技术,对岩体年龄和成矿年龄进行了精细的测定,获得成矿黑云母花岗岩体的锆石SHRIMP U-Pb年龄为(157.7±2.7) Ma(n=11,MSWD=1.9),黑钨矿石英脉的辉钼矿Re-Os等时线年龄为(153.7±1.5) Ma(n=5,MSWD=0.16),显示岿美山区是华南地区中生代钨矿大规模成岩成矿作用的产物之一。根据“五层楼+地下室”的找矿模型,并结合矿区的最新找矿线索,研究认为在矿区深部岩体的内外接触带具有存在新矿体的可能性,该区深部具有较大的找矿潜力,同时探索性地提出赣南地区石英脉型钨矿深边部存在矽卡岩型钨矿化的可能,对区域钨矿的深边部找矿工作具有指导意义。  相似文献   

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皖南东源含W、Mo花岗闪长斑岩及成矿年代学研究   总被引:16,自引:1,他引:15  
在详细野外观察、剖面测量和研究分析的基础上,对"江南古陆"东段北缘的皖南祁门东源含W、Mo斑岩体进行了锆石U-Pb测年,重点讨论了成岩成矿关系和成矿物质来源。东源中细粒似斑状花岗闪长斑岩呈小岩株产出,SHR IMP锆石U-Pb测年结果为(146±1)M a,其内辉钼矿Re-Os同位素测年结果为(146.4±2.3)M a,成矿与岩体形成同期,均形成于晚侏罗世。辉钼矿的Re含量(22.02×10-6~98.09×10-6)指示成矿物质来源为壳幔混源。  相似文献   

18.
Daheishan giant porphyry Mo deposit is located in the Lesser Xing’an–Zhangguangcai Ranges, Jilin Province, NE China. Mineralization is closely related to the Daheishan intrusive complex, which can be divided into Changganglin biotite granodiorite, Qiancuoluo biotite granodiorite, and Qiancuoluo granodioritic porphyry. Four stages of mineralization are distinguished, based on the cross-cutting relationships of mineralized veins. LA-ICPMS zircon U-Pb analysis yields 206Pb/238U ages of 177.9 ± 2.3 Ma for the Changganglin biotite granodiorite, 169.9 ± 2.3 Ma for the Qiancuoluo biotite granodiorite, and 166.6 ± 4.0 Ma for the Qiancuoluo granodioritic porphyry. Hydrothermal fluids responsible for mineralization evolved from different magmas. Six molybdenite samples yield Re-Os model ages of ~167 Ma. Muscovite from the last mineralization stage gives a 40Ar/39Ar plateau age of 163.6 ± 0.9 Ma. Geochronology data indicate that the entire magmatic system lasted for about 10 million years, and the total duration of hydrothermal activity was less than 4 million years. The εHf(t) values of zircons obtained from the Changganglin biotite granodiorite, Qiancuoluo biotite granodiorite, and Qiancuoluo granodioritic porphyry range from 4.5 to 9.1, 5.7 to 10.9, and 4.4 to 7.1, respectively, indicating that they were mainly derived from the depleted mantle, although contaminated by crustal materials to a greater or lesser extent. The formation of the Daheishan porphyry Mo deposit was temporally and spatially related to the amalgamation of Jiamusi Massif and Songliao terrane in the Palaeo-Pacific Ocean regime. Regional Hf isotopic compositions of zircon suggest an episode of crustal growth in the Phanerozoic in the Lesser Xing’an–Zhangguangcai Ranges. Regional Mo mineralization ages suggest a peak of porphyry Mo mineralization in the Jurassic in the Lesser Xing’an-Zhangguangcai Ranges.  相似文献   

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稀有金属花岗伟晶岩年代学是花岗伟晶岩型稀有金属矿床研究的重要内容。目前测年方法较多,但不同方法测试结果的对比研究亟待开展。我们选择吐格曼北花岗伟晶岩型锂铍矿床3条含矿伟晶岩开展锆石、锡石、铌钽铁矿及白云母四种矿物不同方法的测年对比研究。结果显示:1)ρ31白云母-锡石伟晶岩中锡石238U/206Pb-207Pb/206Pb谐和年龄为468±8.7Ma (MSWD=1.1,N=39)、白云母-钠长石-锂辉石伟晶岩中锆石206Pb/238U谐和年龄为458.7±2.3Ma (MSWD=7.2,N=16); 2)ρ38白云母-钠长石-锂辉石伟晶岩中锆石206Pb/238U谐和年龄为454.7±4.0Ma (MSWD=8.0,N=10)、白云母40Ar/39Ar坪年龄为350.2±1.6Ma (MSWD=4.7); 3)ρ87含铌钽铁矿-白云母-石英伟晶岩中铌钽铁矿206Pb/238U谐和年龄为464.1±2.7Ma (MSWD=5.2,N=39)。可以看出,铌钽铁矿与锡石的U-Pb年龄在误差范围内一致,可能代表花岗伟晶岩岩浆结晶的年龄; 2件样品的蜕晶化锆石U-Pb年龄也可以对比,可能代表岩浆锆石蜕晶化后经流体交代作用及重结晶作用导致U-Pb同位素系统重置的时间。白云母Ar-Ar年龄明显晚于铌钽铁矿、锡石和锆石的U-Pb年龄,鉴于ρ38白云母-钠长石-锂辉石伟晶岩脉中白云母与锂辉石发生了强烈变形与蚀变,认为变形的白云母记录的是叠加变形与热液蚀变的时间。由此推断吐格曼北锂铍花岗伟晶岩形成于468~454Ma,这意味着阿尔金山地区中-晚奥陶世可能存在持续时间较长的稀有金属成矿事件。基于花岗伟晶岩矿物成因与吐格曼北锂铍花岗伟晶岩不同方法测年对比结果,可以得出以下结论:铌钽铁矿与锡石的U-Pb年龄可代表伟晶岩岩浆结晶的年龄,蜕晶化的锆石U-Pb年龄记录的是岩浆锆石蜕晶化后经流体交代作用及重结晶作用导致U-Pb同位素系统重置的时间,含钾矿物的40Ar/39Ar年龄能够约束伟晶岩的变形与蚀变年龄;多种定年方法的联合约束可以更好地限定稀有金属花岗伟晶岩的各个阶段成矿事件时间。  相似文献   

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