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 453 毫秒
1.
3701铀矿床地质特征及其热液叠加改造成矿作用   总被引:2,自引:0,他引:2  
本文在介绍3701铀矿床的地质特征、矿石物质成分和稳定同位素组成等研究结果基础上,论述了该矿床的成因。3701铀矿床赋存在L花岗岩体外接触带泥盆系灰岩中。花岗岩的黑云母钾-氩法年龄为318-202Ma,矿床的矿化年龄(沥青铀矿铀-铅法年龄)为65.0—30.75Ma,矿岩时差超过137Ma。矿床的热液矿化特征明显。成矿温度约100—300℃,属中、低温热液矿化。矿床的近矿围岩蚀变较弱。矿床的稳定同位素研究结果表明,成矿物质是多源的,其中硫、碳主要来自围岩,铀、铅主要来自花岗岩。矿液水以大气降水为主。铀背景值较低(3.12ppm)的成矿围岩,汲取了从花岗岩中淋出的含铀水体中的铀。被燕山期,喜山期构造运动加热了的地下水汲取围岩中的铀等成矿物质,在角砾岩带等地段沉淀成矿,因此该矿床属多矿源热液叠加改造成因。在两次铀矿化间隔期间,早期矿体曾遭受地下水的改造。  相似文献   

2.
碳硅泥岩型铀矿床是我国铀矿地质工作者建立的铀矿床类型,是我国四大铀矿工业类型之一。桂西地区是我国华南地区一个重要的碳硅泥岩型铀矿床产出区域,包括大新(373)铀矿床等多个典型铀矿床(点)。研究辉绿岩与矿床成因的联系,对重新认识矿床成因有重要意义。本文在对桂西大新-钦甲地区碳硅泥岩型铀矿床和辉绿岩脉野外地质研究的基础上,系统研究了辉绿岩的地质特征、岩石学、地球化学特征以及其中锆石的U-Pb同位素年代学特征,在此基础上,探讨了辉绿岩的成岩与碳硅泥岩型铀矿床成矿间的关系。元素地球化学特征显示Rb、U、Th、Ba等大离子亲石元素的含量都高于MORB值,高场强元素Ta、Nb、Zr、Hf等均相对于MORB有所富集,而HREE元素中等亏损,表明本区辉绿岩属于富集地幔特征的板内碱性玄武岩系列(WPB),属于华南陆内伸展构造背景下软流圈上涌导致富集岩石圈地幔部分熔融形成的铁镁质岩浆发生侵位的产物。辉绿岩脉3个样品的锆石LA-ICP-MS U-Pb年龄为86. 7±0. 9Ma、89. 05±0. 96Ma、91. 6±8. 3Ma,表明形成于晚白垩纪早期,与华南地区与中基性岩脉有关的铀矿床成矿时代具有较好的对应关系,也与华南地区广泛分布的中生代基性岩脉时代一致,对应于华南白垩纪构造应力场中四次重要的拉张活动时代中的一期。辉绿岩脉锆石特征指示了辉绿岩成岩过程对矿源层中铀的活化所产生的重要作用以及成岩与成矿之间的热动力联系;结合元素地球化学、矿床成矿年龄和辉绿岩锆石UPb同位素年龄研究结果表明,区内铀矿床具有多期成矿特点,即"沉积期铀预富集、辉绿岩作用下二次预富集、后期热液再次富集成矿",可能是该类型矿床成矿作用的重要形式。  相似文献   

3.
湖南龙山锑金矿床白云母~(40)Ar-~(39)Ar年代学及其意义初探   总被引:1,自引:1,他引:0  
张志远  谢桂青  李惠纯  李伟 《岩石学报》2018,34(9):2535-2547
龙山锑金矿是湘中Sb-Au矿集区内规模最大的脉状锑金矿床,但其精确的成矿时代尚未厘定。本次工作发现该矿床第Ⅰ成矿阶段的石英硫化物脉中发育少量的热液白云母。通过40Ar-39Ar年代学测定,确定了白云母的~(40)Ar-~(39)Ar同位素坪年龄为162. 5±1. 8Ma,相应的等时线年龄为161. 1±1. 2Ma(MSWD=1. 0),反等时线年龄为161. 1±1. 2Ma(MSWD=1. 0)。根据矿物共生组合特征,认为白云母的~(40)Ar-~(39)Ar坪年龄能代表龙山锑金矿床的成矿年龄。结合湘中地区其他锑(金)矿床的年代学研究成果,本文认为,该地区在155~162Ma之间有一次热液成矿事件,与南岭地区165~150Ma与花岗岩有关的钨锡多金属矿床的成矿时代相一致。湘中地区已有的S同位素地球化学和地球物理学资料表明,该地区锑金矿床的形成可能与岩浆作用有关,类似于南岭地区晚侏罗世钨锡多金属矿床的构造背景。  相似文献   

4.
豫西栾灵金矿床地处熊耳山金多金属矿集区南部马超营断裂带北侧,金矿体产于构造破碎带中,呈钾长石石英脉体和蚀变岩产出,为本区一种新的金矿化类型。文章为厘定栾灵金矿床的成矿时代,采用辉钼矿Re-Os同位素定年方法,测得栾灵金矿6件辉钼矿样品的Re-Os同位素模式年龄为(161±3)Ma~(164±2)Ma,加权平均年龄(163±1)Ma(MSWD=0.68),等时线年龄(163±2)Ma(MSWD=1.5),表明栾灵金矿床形成于晚侏罗世早期。与祁雨沟、前河金矿等早白垩世(125 Ma)金矿相比,栾灵金矿的成矿作用早约38 Ma。这些年龄数据表明,该矿床在区域上可能与南泥湖-三道庄、上房沟钼矿等形成于同一成矿系统,它的发现为在熊耳山地区寻找相似成矿地质条件的金、钼矿床提供了依据。  相似文献   

5.
460铀矿床主要矿化期的同位素年龄   总被引:11,自引:0,他引:11  
李耀菘 《铀矿地质》1989,5(4):203-208
460矿床是我国北方中生代火山岩区近年来新发现的铀矿床。系统的同位素年龄测定结果表明,本矿床的铀矿化作用主要发生于两个时期:早期矿化(浸染状矿石)发生于88Ma前,而晚期矿化(脉状矿石)的年龄仅24Ma。由此确定本矿床系后成中低温热液铀矿床,成矿物质主要来源于基底岩石,经重熔的火山岩浆富集后提供成矿。  相似文献   

6.
利用石英 4 0 Ar-39Ar同位素年代学方法对萨吾尔金矿带中两个重要的金矿床进行了成矿年龄测定。阔尔真阔腊金矿床主成矿年龄为3 3 2 .0 5± 2 .0 2 Ma~ 3 3 2 .5 9± 0 .5 1Ma,布尔克斯岱金矿床主成矿年龄为 3 3 5 .5 3± 0 .3 2 Ma~ 3 3 6.78± 0 .5 0 Ma,二者的成矿时代一致 ,且与金矿带内钙碱性火山岩年龄 (3 43± 2 2 Ma)相近 ,这为解决长期存在的萨吾尔金矿带中两个主要金矿床成矿时代及矿床成因问题提供了有力的证据 ,同时还确定了海西期阿尔泰地区除已知的两期成矿作用 (早泥盆世和晚石炭世—二叠纪两期构造 -岩浆成矿作用 )外 …  相似文献   

7.
花岗岩型铀矿床是我国重要的工业铀矿床类型,广泛分布于南岭地区。粤北长江铀矿田位于南岭中段诸广山岩体中南部,是我国典型的花岗岩型铀矿田。由于铀矿物在化学组成和成因上的固有属性,前人通过传统的铀矿物U-Pb同位素定年获得的成矿年龄(157~52Ma)变化范围较大且分散,难以有效约束精确的铀成矿时代。本文在精细矿物学研究的基础上,对长江铀矿田棉花坑、书楼坵和长排三个铀矿床的沥青铀矿开展了LA-ICP-MS原位微区U-Pb同位素定年研究。结果表明,棉花坑矿床成矿年龄为60. 8±0. 6Ma和66. 8±1. 6Ma,书楼坵矿床成矿年龄为71. 4±1. 3Ma和74. 4±1. 7Ma,长排矿床成矿年龄为62. 4±2. 5Ma和70. 2±0. 5Ma,总体分为~75Ma、~70Ma和~60Ma三期成矿年龄,代表了华南花岗岩型铀矿的晚期铀矿化。长江铀矿田成矿时代与诸广地区北东向断裂带、断陷盆地的强烈拉张时期(80~60Ma)同步,指示区内铀矿化与南岭地区晚白垩世-古近纪地壳拉张作用有关,区内铀成矿的幔源矿化剂CO_2来自区域性北东向断裂带的拉张作用。综合前人资料,认为诸广地区的铀成矿具同时性和多期性特征,成矿峰期为~140Ma、~125Ma、~105Ma、~90Ma和80~60Ma,成矿统一受制于华南岩石圈伸展的动力学背景,诸广山-南雄盆山体系白垩-古近纪的构造演化可能是促使区域铀矿化形成的主要因素。  相似文献   

8.
豫西吉家洼金矿位于熊耳山金多金属矿集区西部,是一构造蚀变岩-石英脉型金矿床。矿体产于近南北向断裂带中,在倾向上呈"Y"字型分布,矿化以细脉-网脉状、浸染状黄铁矿化蚀变岩型金矿为主,其次为石英脉型金矿。热液成矿过程包括4个矿化阶段,黄铁矿-石英阶段(Ⅰ)、石英-黄铁矿阶段(Ⅱ)、石英-多金属硫化物阶段(Ⅲ)和石英-碳酸盐阶段(Ⅳ)。本次工作对吉家洼金矿床主要成矿阶段(Ⅲ)的闪锌矿进行了Rb-Sr同位素测年研究,以限定成矿时代。结果获得Rb-Sr等时线年龄为118.2±2.4Ma,表明矿床形成于早白垩世。该年龄与熊耳山地区中的庙岭、祁雨沟、公峪等金矿床的成矿年龄基本一致,对于整个熊耳山地区的金矿成矿年龄具有一定的约束意义。锶-铅同位素研究结果显示,吉家洼金矿的成矿物质为壳幔混源,新太古界太华群基底及其重熔形成的花岗岩体可能为铅同位素的主要物源。我们认为,吉家洼金矿床是熊耳山地区在早白垩世区域性强烈的构造-岩浆-流体活动事件的产物,是整个中国东部金的大规模成矿作用的组成部分。  相似文献   

9.
图古日格金矿床是位于兴蒙造山带西端的一个大型金矿床, 矿床的矿石主要有石英脉型和蚀变岩型两种, 矿床的成矿年龄尚存在争议。本文对矿床蚀变岩型矿石中热液成矿阶段的绢云母进行了40Ar-39Ar同位素定年研究, 获得坪年龄为(258.9±1.6) Ma(MSWD=0.69), 等时线年龄为(259.2±2.9) Ma(MSWD=5.4), 与前人获得的黄铁矿Re-Os等时线年龄((268±15) Ma)在误差范围内完全一致。结合矿区地质事实及前人研究结果, 认为该矿床的成矿年龄可以限定在268~259 Ma。图古日格金矿床与矿区内的似斑状花岗岩(265 Ma)具有紧密的成因关系, 属于与花岗质岩浆活动有关的石英脉型金矿床。兴蒙造山带乃至整个中亚造山带, 可能在二叠纪时期发育有一次与伸展背景下花岗质岩浆活动有关的金成矿事件, 找矿潜力巨大。  相似文献   

10.
内蒙古白乃庙铜金矿床的成矿时代和成矿构造背景   总被引:20,自引:10,他引:10  
内蒙古白乃庙铜金钼矿床位于华北板块北缘的中亚造山带的温都尔庙加里东期增生带内,其成矿时间、成因类型和构造环境一直存在分歧。为确定成矿时间,作者运用高精度单颗粒激光熔融氩氩法对含矿石英脉中的黑云母和白云母矿物进行了年龄测定。获得黑云母样品22点~(40)Ar/~(39)Ar等时线年龄为396±2 Ma(MSWD=20),白云母样品23点~(40)Ar/~(39)Ar等时线年龄为358±2 Ma(MSWD=11),确证矿床形成于泥盆纪。矿区斑岩等岩浆岩类侵位年龄为428~466 Ma,早于成矿年龄至少40 Ma;赋矿地层白乃庙群形成于1130Ma左右,早于成矿时间约700Ma。如此大的年龄差表明白乃庙矿床不是斑岩型或海底喷流沉积型矿床,而是通过矿床地质和流体包裹体研究所确定的造山型铜金矿床。白乃庙矿床的成矿年龄与赋矿地层白乃庙群的峰期变质作用年龄(384.5±6Ma)基本一致,也与晚志留世-泥盆纪时温都尔庙增生岩浆弧与华北克拉通北缘的碰撞拼贴时间吻合,因此认为白乃庙铜金矿床形成于碰撞造山体制,是世界首例造山型铜矿床。  相似文献   

11.
As China's most important gold-producing district,the Jiaodong Peninsula also contains copper,lead-zinc,molybdenum(tungsten),and other nonferrous metal ore deposits,but the space-time and genetic relationships with gold deposits remain uncertain.To investigate the temporal relationship between these nonferrous metal and gold ore deposits,We collected the samples from a number of nonferrous metallic and silver deposits and metallogenetic rock bodies in the eastern Jiaodong Peninsula for isotopic dating.The results show that the Re-Os isotopic model ages of the Lengjia molybdenum deposit in Rongcheng range from 114.5± 1.8 Ma to 112.6± 1.5 Ma,with an average age of 113.6± 1.6Ma;the LA-ICP-MS ~(206)Pb/~(238)U ages of 33 zircons in the sericitization porphyritic monzogranite that hosts the Tongjiazhuang silver deposit in Rongcheng range between 122 Ma and 109 Ma,with a weighted mean age of 116.04± 0.95 Ma;the LA-ICP-MS ~(206)Pb/~(238)U ages of 31 zircons in the copper metallogenic pyroxene monzodiorite that hosts the Kuangbei copper deposit in Rongcheng range from126 Ma to 106 Ma,with a weighted mean age of 116.6± 1.7 Ma;and the LA-ICP-MS ~(206)Pb/~(238)U ages of19 zircons in the pyroxene monzodiorite surrounding the Dadengge gold and multimetal deposit in Weihai range from 113 Ma to 110 Ma,with a weighted mean age of 111.7± 0.6 Ma.All these results indicate that the metallogenic ages of the silver and nonferrous metallic deposits in the Jiaodong Peninsula are in a limited range from 118 Ma to 111 Ma.Previous studies have demonstrated that the isotopic ages of gold deposits in the Jiaodong Peninsula range from 123 Ma to 110 Ma,while Weideshanian magmatism occurred between 126 Ma to 108 Ma.Both these ranges are grossly consistent with the metallogenic ages of silver and nonferrous metallic deposits in this study,suggesting that the large-scale mineralization occurred in the Early Cretaceous when magmatic activities were strong.This epoch may be linked to the lithosphere thinning and the thermo-upwelling extension in eastern China at that time.In addition,field investigation also shows that gold and nonferrous metallic deposits are distributed nearby the Weideshanian granite,with the nonferrous metallic deposits lying within or surrounding the granite pluton and the gold deposits outside the granite pluton.We propose the following mineralization scenario:In the Early Cretaceous,an intensive lithospheric extension induced partial melting and degassing of the metasomatized lithospheric mantle,which resulted in the formation of mantle-derived fluids enriched in metal elements.During the rapid process of magma ascent and intrusion,crust-derived fluids were activated by the magmatic thermal dome and served to further extract ore-forming materials from the crust.These fluids may have mixed with the mantle-derived fluid to form a crust-mantle mixing-type ore-forming fluid.The high-temperature conditions in the center or in contact with the granitic magmatic thermal dome would have been favorable for the formation of porphyry-type,skarn-type,and hydrothermal-vein-type ores,thus forming a series of Mo(W),Cu,and Pb-Zn deposits in the mid-eastern Jiaodong Peninsula.In contrast,the medium-to low-temperature conditions in the periphery of the magmatic thermal dome would have favored the deposition of gold(silver) ores under the appropriate physiochemical and structural conditions.The metallogenic epoch of the molybdenum,copper,and silver deposits,and their spatio-temporal and genetic relations to the gold deposits,as demonstrated in this study,not only provide important insights to the study of regional metallogeny,our understanding of the metallogenesis of the Jiaodong type gold deposit,and the geodynamic background of the large-scale mineralization in the Jiaodong Peninsula,but also have practical value in guiding the mineral exploration.  相似文献   

12.
铜山岭铅锌多金属矿床位于扬子地块湘南-桂东北坳陷与华夏地块粤北坳陷的拼贴部位,是中国南岭多金属成矿区代表性矿床之一。为确定矿床成矿时代,挑选铜山岭铅锌多金属矿床中含矿矽卡岩的石榴子石进行Sm-Nd同位素定年,获得的等时线年龄为173±3Ma,指示成矿作用发生于燕山早期。对金属硫化物矿物进行了Pb同位素分析,其~(206)Pb/~(204)Pb、~(207)Pb/~(204)Pb、~(208)Pb/~(204)Pb平均值分别为18.602、15.701、38.729,表明成矿物质来源于相对富集铀铅、略微亏损钍铅的上地壳源区。从(~(207)Pb/~(204)Pb)i-(~(206)Pb/~(204)Pb)i铅同位素演化模式图可知,寄主花岗闪长岩是铜山岭铅锌多金属矿床的重要物质来源,且成矿物质中可能含有寄存在花岗闪长岩中的地幔组分。  相似文献   

13.
相山铀矿田铀多金属成矿时代与成矿热历史   总被引:1,自引:1,他引:0  
林锦荣  胡志华  王勇剑  张松  陶意 《岩石学报》2019,35(9):2801-2816
相山铀矿田的铀多金属矿化主要可划分为碱性铀矿化、酸性铀矿化、铅锌银铜矿化和金矿化四种类型。通过沥青铀矿和矿化岩石U-Pb等时线、黄铁矿Rb-Sr等时线、绢云母~(40)Ar-~(39)Ar同位素年龄测定,结合铀多金属成矿特征研究,厘定了相山铀矿田铀多金属成矿时代,确定铀多金属矿化的成矿时序为:碱性铀矿化、铅锌银铜矿化、金矿化、酸性铀矿化。锆石裂变径迹研究表明,相山矿田铀多金属矿化样品的锆石裂变径迹峰值年龄与U-Pb、Rb-Sr和~(40)Ar-~(39)Ar同位素年龄一致性良好,裂变径迹年龄(峰值年龄)可以限定热液铀多金属成矿热事件时代。碱性铀成矿热事件的锆石裂变径迹峰值年龄为119. 8~125. 6Ma;金成矿热事件和铅锌银铜多金属成矿热事件的锆石裂变径迹峰值年龄为106. 1~113. 8Ma;酸性铀成矿热事件的锆石裂变径迹峰值年龄为86. 7~100. 0Ma;新发现一期锆石裂变径迹峰值年龄为66. 4~78. 6Ma的热事件,该期热事件可能为相山矿田最晚一期酸性铀成矿热事件。相山矿田66. 4~78. 6Ma的铀成矿热事件,与华南花岗岩型热液铀矿床的区域成矿热事件时代耦合,该发现对华南火山岩型铀矿成矿时代的重新认识,对火山岩型、花岗岩型铀矿床成矿统一性认识具有重要意义。  相似文献   

14.
新疆奇台县金水泉金矿床是东准噶尔卡拉麦里成矿带上一个典型的造山型金矿床,产于清水-苏吉泉大断裂和卡拉麦里深断裂之间的次级断裂带中,其成矿时代尚无确切的年代学资料。通过阴极发光(CL)、背散射图像(BSE)和矿物包体确定含金石英脉中的锆石种类,进行LA-ICP-MS锆石U-Pb同位素定年。捕获锆石主要呈柱状、长柱状,振荡环带清晰,粒径较热液锆石大,包括岩浆锆石和变质锆石;~(206)Pb/~(238)U年龄为365~418Ma、265Ma。热液锆石呈短柱状、棱角状、不规则状、双锥状,常含继承锆石内核,内部包裹体为磷灰石或含金磷灰石,发育不明显的波缓状振荡环带或无振荡环带;~(206)Pb/~(238)U年龄加权平均值为314.9±3.2Ma,指示金矿化作用发生于晚石炭世早期碰撞造山向造山后伸展转变的构造环境。成矿时代晚于赋矿围岩姜巴斯套组的年龄(约343Ma),与总结区域构造演化规律所限定的时间范围(320~310Ma)吻合。综合研究认为,金水泉金矿床成矿作用可划分为350~320Ma造山阶段含金流体生成、315Ma挤压-伸展转换阶段金迁移就位、二叠纪陆内变形阶段金矿体破碎变形3个阶段。  相似文献   

15.
板厂铜多金属矿床是东秦岭造山带近年来找矿取得重大突破的一处以铜为主的多金属矿床,其上部发育脉状铜铅锌银矿化,下部发育铜钼矿化.通过对矿石中辉钼矿开展Re-Os同位素定年、对花岗岩进行锆石U-Pb定年,结合硫化物的硫、铅同位素特征,讨论了矿床的成矿时代、矿床成因及成矿动力学背景.6件辉钼矿Re-Os模式年龄为149.8±2.4 Ma~151.5±2.3 Ma,加权平均年龄为150.7±1.9 Ma,等时线年龄为151.0±4.6 Ma,显示成矿作用发生于晚侏罗世.矿区南部纸坊沟花岗斑岩体的锆石U-Pb年龄为148±1 Ma,说明区域上存在成矿期的花岗岩浆活动.11件硫化物硫同位素δ34SV-CDT值介于-1.2‰~1.2‰,显示深源岩浆硫的特征,206Pb/204Pb值为17.178~17.709,207Pb/204Pb值为15.430~15.528,208Pb/204Pb值为37.476~37.847,与北秦岭燕山期花岗岩和南秦岭地壳基底具一致的铅同位素组成,明显不同于北秦岭地层的铅同位素,成矿物质来源于燕山期岩浆岩.结合矿床地质特征,研究表明板厂铜多金属矿床为与燕山期岩浆有关的类矽卡岩型-热液脉型铜多金属矿床,属岩浆热液成矿系统,形成于岩石圈减薄的构造背景.   相似文献   

16.
The Xujiashan antimony deposit is hosted by marine carbonates of the Upper Sinian Doushantuo and Dengying Formations in Hubei Province, South China. Our Sr isotopic data from pre‐ and syn‐mineralization calcites that host the mineralization show that the pre‐mineralization calcite displays a narrow range of 87Sr/86Sr ratios (0.7096 to 0.7097), similar to the ratios of the Sinian seawater, and high Sr concentrations (2645 to 8174 ppm). In contrast, the syn‐mineralization calcite exhibits low Sr concentrations (785 to 2563 ppm) and high 87Sr/86Sr ratios (0.7109 to 0.7154), which is interpreted as the result of addition of radiogenic strontium during the antimony mineralization. The study of Sr isotopes suggests that their Sr component to the pre‐mineralization calcite derived directly from the host rocks (i.e. the Sinian marine carbonates), while radiogenic 87Sr for the syn‐mineralization calcite derived from the underlying Mesoproterozoic Lengjiaxi Group basement through hydrothermal fluid circulation along the major fault that hosts the mineralization. The Pb isotopic ratios of stibnite are subdivided into two groups (Group A and Group B), Group A is characterized by higher radiogenic lead, with 206Pb/204Pb = 18.874 to 19.288, 207Pb/204Pb = 15.708 to 15.805, and 208Pb/204Pb = 38.642 to 39.001. Group B shows lower lead isotope ratios (206Pb/204Pb = 17.882 to 18.171, 207Pb/204Pb = 15.555 to 15.686, and 208Pb/204Pb = 37.950 to 38.340). The single‐stage model ages of Group A are mainly negative or slightly positive values (‐258 to 3 Ma), while those of Group B range from 636 to 392 Ma, with an average of 495 ± 65 Ma. In addition, there are positive linear correlations among Pb isotopic ratios. These results suggest that the lead of Group A stibnite was mainly derived from the Sinian marine carbonates, and that of Group B stibnite from the underlying Lengjiaxi Group basement. This conclusion is consistent with the results of the Sr isotopes. These results indicate that the Xujiashan deposit is not syngenetic sedimentary and in situ reworked origin as previously considered. The metal (mainly Sb) of this deposit was not only derived from the Sinian host rocks, but also partly derived from the underlying Mesoproterozoic Lengjiaxi Group basement.  相似文献   

17.
罗河铁矿床是20世纪80年代在长江中下游成矿带庐枞盆地中发现的规模最大的铁矿床。经深部找矿勘探工作,2013年在罗河铁矿床主矿体800~1000 m之下又发现了小包庄铁矿床,这是近年来在长江中下游成矿带深部找矿工作中的重大进展之一,对该矿床地质特征的总结和形成时代的精确厘定,是正确分析矿床成因机制,完善玢岩型铁矿床成矿理论的关键。文章在已有研究的基础上,通过详细的钻孔岩芯观察、系统的岩相学和矿相学及电子探针分析测试工作,查明了罗河铁矿和小包庄铁矿的矿化蚀变特征,厘定了矿化阶段,初步探讨了成矿作用过程;对小包庄铁矿床进行了高精度金云母~(40)Ar-~(39)Ar同位素年代学研究,获得坪年龄为(130.32±0.78)Ma,相应的等时线年龄为(130.5±1.5)Ma,反等时线年龄为(130.4±1.3)Ma。结合庐枞盆地及区域成岩成矿时代,认为盆地内玢岩型铁矿床集中形成于130 Ma左右,是长江中下游成矿带第二阶段(135~126 Ma)成矿作用的产物。  相似文献   

18.
Mineralization Ages of the Jiapigou Gold Deposits,Jilin   总被引:1,自引:0,他引:1  
The Jiapigou gold deposits are typical vein type deposits associated withArchaean greenstone belts in China. According to the crosscutting relationships between dykesand auriferous veins, single hydrothermal zircon U-Pb dating and quartz K-Ar,~(40)Ar-~(39)Ar andRb-Sr datings, the main mineralization stage of the Jiapigou deposit has been determined to be2469-2475 Ma, while mineralization superimposition on the gold deposit occurred in1800-2000 Ma and 130-272 Ma. They form a mineralization framework of one oldermetallogenic epoch (Late Archaean-Early Proterozoic) and one younger metallogenic epoch(Mesozoic) of gold deposits in Archaean greenstone belts in China.  相似文献   

19.
广东高凤金矿形成时代的Rb-Sr、40Ar-39Ar年龄测定   总被引:7,自引:0,他引:7  
用含金石英脉流体包裹体Rb-Sr和40Ar-39Ar方法测定了广东高凤金矿的形成时代为印支期(215×106a)。两种方法的结果在误差范围内完全一致,两种测定方法相互验证,结果准确可靠。研究表明含金石英脉流体包裹体Rb-Sr和40Ar-39Ar年代方法对于解决石英脉型金矿的成矿时代具有很好的应用前景。  相似文献   

20.
U–Pb isotopic analyses indicate that ores from the South Zhuguang uranium ore field, south China, have high common (non‐radiogenic) Pb contents, with variable and relatively radiogenic initial Pb contents. The U–Pb isochron method was used to date these ores, with plots of 208Pb/204Pb and 207Pb/204Pb versus 206Pb/204Pb being used to identify sample suites with similar initial Pb isotopic ratios and to normalize variable initial Pb isotopic ratios. The resulting U–Pb isochrons indicate two substages of uranium mineralization at ~57 and 52 Ma, with a later hydrothermal reformation at ~49 Ma, which homogenized Pb isotopic compositions. Initial Pb isotopic systematics indicate that the ore‐forming fluid was characterized by high 206Pb/204Pb and 207Pb/204Pb ratios and low 208Pb/204Pb ratios, suggesting that the ore‐forming fluid was sourced from Cretaceous–Paleogene red‐bed basins, rather than from magma or the mantle, with consideration of mineralization ages.  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