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1.
豫西骆驼山多金属硫铁矿床位于华北陆块南缘南泥湖矿田西北侧。为确定该矿床的形成时代,文章选取了8件硫化物矿物样品,采用Rb_Sr等时线定年方法测定成矿年龄。结果获得,闪锌矿+磁黄铁矿+方铅矿等时线年龄为(137.3±2.6)Ma,闪锌矿+方铅矿等时线年龄为(138.2±5.8)Ma,闪锌矿+磁黄铁矿等时线年龄为(137±3)Ma,磁黄铁矿+方铅矿等时线年龄为(137.1±2.7)Ma,方铅矿等时线年龄为(138.4±7.6)Ma,磁黄铁矿等时线年龄为(137.2±3.7)Ma。上述定年结果表明,骆驼山多金属硫铁矿床的成矿时代为137 Ma左右,属早白垩世。硫化物Sr同位素初始比值(~(87)Sr/~(86)Sr)i介于0.713 23~0.713 32,平均值为0.713 25,小于陆源硅酸盐Sr的初始值0.7190,而高于地幔Sr的初始值0.7040,表明成矿物质来源于壳幔混合。骆驼山多金属硫铁矿床与矿田内的南泥湖_三道庄斑岩_矽卡岩钼(钨)矿床、冷水北沟铅锌矿成矿时代基本一致,是同一构造_岩浆_流体成矿活动的产物。结合前人对华北陆块南缘中生代期间地球动力学背景研究成果,笔者认为骆驼山矿床是中国东部中生代构造体制大转折过程晚期的产物。  相似文献   

2.
水头山铅锌矿床位于保山地块南端芦子园矿集区,区内以发育矽卡岩型和热液脉型两类铅锌矿化为特点.为查明铅锌多金属成矿作用过程,本文对水头山热液脉型铅锌矿床主成矿阶段的闪锌矿开展了Rb-Sr同位素组成测定,获得闪锌矿的Rb-Sr等时线年龄为135.8±4.2Ma(MSWD=1.70,n=6),结合区内其他矿床的成矿年龄,认为...  相似文献   

3.
金属矿床精确定年仍是国内外科学研究的难题,妨碍了对成矿规律的认识和资源勘探目标的优选评价。针对密西西比河谷型(MVT)铅锌矿床,前期有人分别利用Re-Os法、U-Pb法、40Ar-39Ar法、Rb-Sr法、Sm-Nd法、古地磁测年法和裂变径迹法等不同手段对其成矿时代进行了探索性尝试。其中,Re-Os同位素测年技术虽然仍是疑难金属矿床直接定年的有效手段,但现有Re-Os同位素定年技术还达不到锆石U-Pb法的精度水平。本文以三江特提斯兰坪盆地金顶铅锌镉铊矿床为研究对象,在精细解剖矿床的基础上,开展单阶段硫化物精确识别和高纯提取,建立不同阶段硫化物矿物学标志。前期研究侧重于金顶矿床脉石矿物和黄铁矿等非直接成矿矿物的定年,且年龄变化范围较大(114~23Ma),难以对该矿床的形成时代给出精确的制约;为此,本文对该矿床的成矿矿物开展了高精度定年。5件闪锌矿矿物的Re-Os等时线年龄为129±10Ma(MSWD=126,n=5),对应成矿时代早于古新统云龙组和白垩系景星组赋矿围岩,尚不能代表真实的铅锌成矿时代。闪锌矿测年结果可能受富含Re和Os的有机质的...  相似文献   

4.
安徽金寨县沙坪沟钼铅锌矿田两期成岩成矿作用   总被引:4,自引:0,他引:4  
安徽金寨县沙坪沟钼矿床是近年来秦岭-大别成矿带发现的超大型斑岩钼矿床,已探明钼资源储量234×104t。在沙坪沟钼矿床外围发育多处铅锌矿床(点)。本文通过对外围3个铅锌矿床闪锌矿Rb-Sr同位素定年,获得120±2Ma的成矿年龄,而钼矿床成矿年龄则在115~111Ma,显示出矿田内铅锌矿床的成矿时代早于钼矿床。结合区域构造背景、控矿构造、赋矿围岩及围岩蚀变等地质特征分析,认为斑岩钼矿床和铅锌矿床为两个独立的成矿系统,热液型铅锌矿成矿系统形成早于斑岩型钼矿成矿系统。据地质勘查和同位素年代学资料,矿田岩浆岩分为两期,第一期为早白垩世早期花岗闪长岩、二长花岗岩,是热液型铅锌矿成矿系统主要赋矿围岩,第二期为早白垩世晚期石英正长岩和花岗斑岩,是斑岩型钼矿成矿系统的主要赋矿围岩。矿床C、H、O、S等稳定同位素相关研究表明热液型铅锌矿成矿系统和斑岩型钼矿成矿系统均是两期岩浆热液演化的结果。因此矿田存在两期成岩成矿作用。两个成矿系统矿石铅同位素组成不同,斑岩型钼矿成矿系统矿石铅同位素比值相对较高,变化范围大。铅锌矿床为早于斑岩钼矿床的独立成矿系统的认识合理解释了沙坪沟钼矿床为单一钼矿体,不含铅锌铜等不同于东秦岭斑岩钼矿床地质现象。区内两期成岩成矿作用均发生于晚侏罗─早白垩世构造体制转换阶段及以后伸展期。  相似文献   

5.
川滇黔交界地区是我国重要的铅锌矿产地,云南省鲁甸县乐红铅锌矿床是区内近年来探获的又一大型MVT型铅锌矿床。本文通过乐红铅锌矿床闪锌矿Rb-Sr测年获得等时线年龄为200.9±8.3 Ma,显示成矿作用发生于印支晚期。闪锌矿初始锶同位素比值特征指示了成矿金属物质为壳源,主要来自于基底地层和沉积盖层。矿床金属硫化物硫同位素特征表明乐红铅锌矿床硫源为海水硫酸盐,还原硫可能是海水硫酸盐经过热化学还原作用(TSR)而来。结合矿床地质特征与区内铅锌矿成矿地质背景,认为乐红铅锌矿床可能是在印支晚期华南板块与印支板块拼合造山作用下,引起成矿流体运移,进而在容矿构造内沉淀成矿的结果。  相似文献   

6.
<正>滇东北铅锌矿集区是川滇黔铅锌成矿域的重要组成部分,区内有诸多铅锌矿床(点),其矿床规模从中小型到超大型矿床皆有分布,个别如会泽铅锌矿为世界上罕见的特富型铅锌矿床。毛平铅锌矿也是该区一个典型的矿床之一,对其深部与外围主要控矿构造特征的深入研究和剖析,将对同类型铅锌矿床边深部矿产勘查、预测和评价具有重要指导意义。滇东北铅锌成矿带位于扬子地块西南缘,滇川黔铅  相似文献   

7.
广东天堂铜铅锌多金属矿床Rb-Sr等时线年龄及其地质意义   总被引:19,自引:7,他引:12  
文章选取8件闪锌矿、3件方铅矿和1件黄铁矿样品,采用Rb-Sr等时线定年方法测定天堂铜铅锌多金属矿床的成矿时代.获得闪锌矿等时线年龄为(98.1±1.6) Ma,闪锌矿+方铅矿等时线年龄为(99±2)Ma,闪锌矿+方铅矿+黄铁矿等时线年龄为(98.2±1.3) Ma,闪锌矿+黄铁矿等时线年龄为(97.87±0.96) Ma,方铅矿+黄铁矿等时线年龄为(98.6±4.2) Ma.Rb-Sr定年结果表明,天堂铜铅锌多金属矿床的成矿时代为98 Ma左右,矿床形成于晚白垩世早期,可能与135Ma之后太平洋板块的运动方向发生转向,使得中国大陆包括华南板块在内均处于持续伸展阶段有关.硫化物矿石Rb-Sr所得的Sr同位素初始比(87Sr/86Sr)i平均值为0.7117,小于陆源硅酸盐的值(0.720),高于地幔Sr的初始值0.707,结合笔者对该矿床所做的S、Pb等同位素组成特征研究,显示成矿物质来源于壳幔混合.研究表明,利用特定矿床的主要矿石矿物,采用Rb-Sr等时线定年方法通过共生矿物组合和单矿物相互约束,可以有效地确定成矿时代,这对了解矿床的成矿背景等具有一定的指示意义.  相似文献   

8.
因铅锌矿床的定年一直比较困难,关于黔东铅锌矿带的时代和成因认识较为混乱。本文对位于该成矿带赋存于下寒武统清虚洞组藻灰岩中的贵州铜仁卜口场铅锌矿床开展了闪锌矿Rb-Sr与方解石Sm-Nd同位素定年。矿石光薄片显示方解石和不透明矿物沿网状裂隙充填交代。用于定年的方解石,部分与方铅矿沿着同一闪锌矿细脉充填,部分沿方铅矿细脉充填,表明方解石晚于闪锌矿形成,可能属于成矿期后期产物。获得闪锌矿矿物Rb-Sr等时线年龄466±13 Ma(MSWD=2.0)和闪锌矿矿物+弱酸提取相+硫化物相Rb-Sr等时线年龄483±9 Ma(MSWD=8.0),二者在误差范围内一致,应代表了该铅锌矿床的主成矿期。获得方解石Sm-Nd等时线年龄422±48 Ma(MSWD=0.71),可能代表了同一成矿作用的后期阶段。即卜口场铅锌矿床后期改造成矿作用可能存在早奥陶世(483~466 Ma)和早志留世(~422 Ma)两个阶段。闪锌矿和闪锌矿分相Rb-Sr等时线对应的初始87Sr/86Sr比值分别为0.70920和0.70908,方解石Sm-Nd等时线对应的初始143Nd/144Nd比值为0.511520(εNd(t)为–11.2),指示其流体来源具有Sr、Nd富集特征,为成矿流体主要是地层封存水与区域热液流体提供了佐证。  相似文献   

9.
皖南东至兆吉口铅锌矿床是近年来在江南过渡带西段新发现的一个规模达中型的中-低温热液型矿床。目前揭露的铅锌矿体均赋存于东至断裂带及其西侧次级张(扭)性断裂及裂隙中。文章选取了该矿床主要矿石矿物闪锌矿以及与主成矿阶段金属硫化物紧密共生的石英,分别采用流体包裹体Rb-Sr法和40Ar-39Ar法进行同位素地质年龄测定。4件闪锌矿样品获得流体包裹体Rb-Sr等时线年龄为(128±1)Ma;2件石英样品获得流体包裹体40Ar-39Ar坪年龄分别为(128.74±3.02)Ma和(128.19±1.98)Ma,等时线年龄分别为(128.81±5.25)Ma和(128.30±3.47)Ma,反等时线年龄分别为(128.82±5.24)Ma和(128.31±3.47)Ma。同位素地质年龄测试结果基本一致,表明兆吉口铅锌矿床形成于128 Ma左右,成矿时代为早白垩世。该成矿年龄与赋矿闪长玢岩的形成时间((129.0±2.3)Ma~(128.4±2.7)Ma)一致,也与东至断裂燕山晚期的活动年龄((126.3±2.2)Ma)相近,表明该矿床成矿与燕山晚期的构造-岩浆活动密切相关,此时区域构造背景为强烈挤压后的伸展环境。这一矿化事件在成矿时代上明显晚于长江中下游成矿带中的断隆区(如铜陵、安庆-贵池等矿集区)的铜金多金属矿床和皖南成矿带中的钨钼多金属矿床(136 Ma),而与长江中下游成矿带断坳区的玢岩铁矿床的成矿时间(135~127 Ma)相近,指示长江中下游成矿带与皖南成矿带之间的江南过渡带中发育有燕山晚期较晚阶段(128 Ma左右)的铅锌矿化事件,为今后在该区开展铅锌多金属矿床找矿勘探提供了重要依据。  相似文献   

10.
花垣矿集区位于我国湘西-黔东成矿带,作为世界级的超大型铅锌矿床之一,预测储量超过千万吨,位于花垣矿集区中部渔塘矿田的柔先山铅锌矿床是区内典型的铅锌矿床.采用闪锌矿Rb-Sr分相法获得了柔先山铅锌矿床的Rb-Sr等时线年龄为412±6 Ma(MSWD=1.5,初始86Sr/87Sr=0.709 32),地质时代为早泥盆世,这一年龄限定了花垣地区铅锌矿床的时代.柔先山矿床的铅锌矿矿石流体包裹体、Sr-S-Pb同位素示踪研究显示,成矿流体可能是地层封存水与后期迁移流体的混合,成矿元素中的铅主要来源于围岩,硫由赋矿层位之上的含膏岩层经历热化学还原过程供给,铅和锶同位素特征都指示上地壳来源.   相似文献   

11.
The Erlihe Pb–Zn deposit is an important mine of the Pb–Zn metallogenic zone in the South Qinling Orogen. It has been considered a sedimentary exhalative deposit in previous investigations because the ore body occurs concordantly at the transitional location of an upright fold. Re and Os isotopic analyses for paragenetic pyrites with sphalerite and galena from the ore body have been used to determine the timing of mineralization and to trace the source of metallogenic materials. The Re–Os isotopic data of four pyrite samples construct an isochron, yielding a weighted average age of 226±17 Ma (mean square weighted deviation=1.7), which is considered the main mineralization age. A dioritic porphyrite vein sample, showing weaker mineralization, was also dated using the SHRIMP zircon U–Pb isotopic method to constrain the youngest metallogenic age of the ore deposit, because it distributes along a group of tensional joints cutting not only the upright fold in the deposit field, but also the main ore bodies. The dioritic porphyrite sample yields a weighted mean 206Pb/238U age of 221±3 Ma, which is slightly younger than the Re–Os isotopic isochron age of the pyrites, considered as the upper age limit of the mineralization, namely the ending age of the mineralization. The Os isotopic compositions of sulfide minerals distribute within a range between Os isotopic compositions of the crust and the mantle, indicating that the ore deposit can be derived from magma-related fluid, and the metallogenic materials are most likely derived from the mixing source of the crust and the mantle. The Erlihe Pb–Zn deposit and associated dioritic porphyrite vein, important records of Qinling tectonic–magmatism–mineralization activities, were formed during the Triassic collisional orogeny processes.  相似文献   

12.
滇东南八布地区发育一套晚古生代超镁铁质-镁铁质杂岩,是认识古特提斯分支洋构造演化的重要窗口,而其中以火山岩为赋矿围岩的杨万铜矿床,被视作区域找矿的突破点。目前,对这套超镁铁质-镁铁质杂岩的构造属性及赋存铜矿床的成矿时代及成因联系还存在争议。通过对杨万铜矿床中黄铜矿和黄铁矿进行Re-Os同位素定年,获得Re-Os等时线年龄为269±3 Ma,表明该矿床形成于早中二叠世,与火山岩(~270 Ma)大致同时;而初始187Os/188Os值为0.31±0.17,暗示成矿时存在热液流体与古海水的相互作用。区内玄武岩围岩和其它超镁铁质-镁铁质岩石的地球化学特征对比分析显示,八布超镁铁质-镁铁质杂岩为一套N-MORB型蛇绿岩组合,代表了古特提斯分支洋盆的洋壳残片。杨万铜矿床应划归为与古特提斯分支洋裂解有关的火山成因块状硫化物(VMS)矿床,其周边地区具有较好的找矿潜力。  相似文献   

13.
Seven 187Re-187Os ages were determined for molybdenite and pyrite samples from two well-dated Precambrian intrusions in Fennoscandia to examine the sustainability of the Re-Os chronometer in a metamorphic and metasomatic setting. Using a new 187Re decay constant (1.666 × 10−11y−1) with a much improved uncertainty (±0.31%), we determined replicate Re-Os ages for molybdenite and pyrite from the Kuittila and Kivisuo prospects in easternmost Finland and for molybdenite from the Kabeliai prospect in southernmost Lithuania. These two localities contain some of the oldest and youngest plutonic activity in Fennoscandia and are associated with newly discovered economic Au mineralization (Ilomantsi, Finland) and a Cu-Mo prospect (Kabeliai, Lithuania). Two Re-Os ages for vein-hosted Kabeliai molybdenite average 1486 ± 5 Ma, in excellent agreement with a 1505 ± 11 Ma U-Pb zircon age for the hosting Kabeliai granite pluton. The slightly younger age suggests the introduction of Cu-Mo mineralization by a later phase of the Kabeliai magmatic system. Mean Re-Os ages of 2778 ± 8 Ma and 2781 ± 8 Ma for Kuittila and Kivisuo molybdenites, respectively, are in reasonable agreement with a 2753 ± 5 Ma weighted mean U-Pb zircon age for hosting Kuittila tonalite. These Re-Os ages agree well with less precise ages of 2789 ± 290 Ma for a Rb-Sr whole-rock isochron and 2771 ± 75 Ma for the average of six Sm-Nd TDM model ages for Kuittila tonalite. Three Re-Os analyses of a single pyrite mineral separate, from the same sample of Kuittila pluton that yielded a molybdenite separate, provide individual model ages of 2710 ± 27, 2777 ± 28, and 2830 ± 28 Ma (Re = 17.4, 12.1, and 8.4 ppb, respectively), with a mean value of 2770 ± 120 Ma in agreement with the Kuittila molybdenite age. The Re and 187Os abundances in these three pyrite splits are highly correlated (r = 0.9994), and provide a 187Re-187Os isochron age of 2607 ± 47 Ma with an intercept of 21 ppt 187Os (MSWD = 1.1). It appears that the Re-Os isotopic system in pyrite has been reset on the millimeter scale and that the 21 ppt 187Os intercept reflects the in situ decay of 187Re during the ∼160 to 170 m.y. interval from ∼2778 Ma (time of molybdenite ± pyrite deposition) to ∼2607 Ma (time of pyrite resetting). When the Re-Os data for molybdenites from the nearby Kivisuo prospect are plotted together with the Kuittila molybdenite and pyrite data, a well-constrained five-point isochron with an age of 2780 ± 8 Ma and a 187Os intercept (−2.4 ± 3.8 ppt) of essentially zero results (MSWD = 1.5). We suggest that the pyrite isochron age records a regional metamorphic and/or hydrothermal event, possibly the time of Au mineralization. A proposed Re-Os age of ∼2607 Ma for Au mineralization is in good agreement with radiometric ages by other methods that address the timing of Archean Au mineralization in deposits worldwide (so-called “late Au model”). Molybdenite, in contrast, provides a robust Re-Os chronometer, retaining its original formation age of ∼2780 Ma, despite subsequent metamorphic disturbances in Archean and Proterozoic time. Received: 25 September 1996 / Accepted: 27 August 1997  相似文献   

14.
西昆仑阿巴列克铜铅矿床黄铜矿Re-Os定年及地质意义   总被引:3,自引:1,他引:2  
除了传统的测试Rb-Sr、Sm-Nd、U-Th-Pb、K-Ar或Ar-Ar等方法来讨论碳酸盐岩层控型铅锌矿的成矿年龄外,利用硫化物矿物Re-Os分析成矿过程,在矿床成矿系统上也是十分重要而有效的工具.从新疆西昆仑阿巴列克铜铅矿床的主矿体中,选取7个黄铜矿和1件黄铁矿样品,对其进行了Re-Os定年,结果表明它们分别含有626×10-9~14533×10-9 Re和0.026×10-9 ~0.36×10-9Os,给出海西期的331.3±5.2Ma等时线年龄.样品的高Re/Os比值、低含量普通Os和高放射成因Os的组成特性支持这组黄铜矿样品为表壳构造成因.构造演化历史表明,塔里木地块西南缘在晚古生代属于被动大陆边缘,赋矿地层霍什拉甫组属于台地相碳酸盐岩-碎屑岩建造,地层时代与上述等时年龄几乎相近.本次工作提供了一个新的证据,支持阿巴列克矿床在海西期经历了同生成矿作用,矿床类型主要为沉积层控型,成矿物质主要来源于地层,矿化发生在上泥盆统与下石炭统的结合部位,岩性以砂岩与碳酸盐岩组合为主,具有特定的层位控制特点.从中可以看出,碳酸盐岩层控型铅锌铜矿床成因具有一定的复杂性,具有深入研究的广阔空间.  相似文献   

15.
The Xiaodonggou porphyry Mo deposit is located in the Mesozoic calc-alkaline Xiaodonggou granitoid within a Palaeozoic fold zone of northern China. The mineralization mainly occurred in an area of 0.54 km2 at the south-eastern part of the Xiaodonggou granitoid. The mineralization includes disseminated molybdenite, pyrite, chalcopyrite, magnetite and pyrrhotite and stockwork quartz-sulfide veins. A molybdenite-rich inner core is surrounded by a concentric zone of the sulfide mineral assemblage of pyrite, galena and sphalerite. Intense potassic alteration is overprinted by sericitization and silicification in the mineralized zone. SHRIMP U-Pb data of zircon indicate that the granitoid crystallized at 142 ± 2 Ma (2σ). Re–Os age dating for six molybdenite samples from underground galleries of the deposit constrains the age of porphyry-style Mo mineralization to be 138.1 ± 2.8 Ma (2σ). These data suggest that porphyry-style mineralization was associated with the Xiaodonggou granitoid intrusion and support an Early Cretaceous porphyry-type metallogenic epoch along the northern margin of North China Craton.  相似文献   

16.
油房西Pb-Zn-Ag多金属矿床为近年来在兴蒙造山带内发现的中型脉状矿床,伴生Cu和Mo。该矿床主要产出于潜火山机构外侧的断裂系统内,与潜火山活动有明显的空间关系。成矿作用可以划分为3个阶段,即:早期钼矿化阶段;主成矿期铅、锌和银矿化阶段,伴生铜;晚期碳酸盐化阶段。早期钼矿化阶段,细脉浸染状钼矿化主要产出于潜火山相的花岗斑岩内,矿化较弱,伴随轻微的钾化和强烈的硅化和黄铁矿化,后期叠加了强烈的泥化;主成矿阶段,主要形成脉状闪锌矿、方铅矿、黄铁矿以及次要的黄铜矿化,以脉状充填产出于围岩裂隙内,围岩蚀变主要为硅化,局部有强烈的萤石化;晚期碳酸盐化阶段,主要发生绿泥石化和碳酸盐化。为进一步查明油房西矿化区成矿作用发生的时间,文章对矿床早期钼矿化阶段形成的辉钼矿开展了Re-Os同位素分析,4件样品分析结果获得的模式年龄加权平均值为(138.4±1.2)Ma,MSWD值为0.63,等时线年龄为(136.4±4.9)Ma。结果表明油房西地区Pb-Zn-Ag多金属矿床形成时间为早白垩世,属燕山期构造-岩浆活动的产物。  相似文献   

17.
Re-Os isotopes were used to constrain the source of the ore-forming elements of the Tharsis and Rio Tinto mines of the Iberian Pyrite Belt, and the timing of mineralization. The pyrite from both mines has simila]r Os and Re concentrations, ranging between 0.05–0.7 and 0.6–66 ppb, respectively. 187Re/188Os ratios range from about 14 to 5161. Pyrite-rich ore samples from the massive ore of Tharsis and two samples of stockwork ore from Rio Tinto yield an isochron with an age of 346 ± 26 Ma, and an initial 187Os/188Os ratio of about 0.69. Five samples from Tharsis yield an age of 353 ± 44 Ma with an initial 187Os/188Os ratio of about 0.37. A sample of massive sulfide ore from Tharsis and one from Rio Tinto lie well above both isochrons and could represent Re mobilization after mineralization. The pyrite Re-Os ages agree with the paleontological age of 350 Ma of the black shales in which the ores are disseminated. Our data do not permit us to determine whether the Re-Os isochron yields the original age of ore deposition or the age of the Hercynian metamorphism that affected the ores. However, the reasonable Re-Os age reported here indicates that the complex history of the ores that occurred after the severe metamorphic event that affected the Iberian Pyrite Belt massive sulfide deposits did not fundamentally disturb the Re-Os geochronologic system. The highly radiogenic initial Os isotopic ratio agrees with previous Pb isotopic studies. If the initial ratio is recording the initial and not the metamorphic conditions, then the data indicate that the source of the metals was largely crustal. The continental margin sediments that underlie the deposits (phyllite-quartzite group) or the volcanic rocks (volcanogenic-sedimentary complex) in which the ores occur are plausible sources for the ore-forming metals and should constrain the models for the genesis of these deposits. Received: 15 March 1999 / Accepted: 26 July 1999  相似文献   

18.
甲乌拉铅锌银矿床位于内蒙古自治区满洲里市南西150km。矿床产于中蒙古-额尔古纳兴凯造山带南东缘之得尔布干断裂北西侧。本文在甲乌拉矿床选取7件闪锌矿和6件黄铁矿样品开展了Rb-Sr定年。获得闪锌矿的Rb-Sr等时线年龄为143.0±2.0Ma(MSWD=3.2),锶同位素初始值I Sr=0.71265;黄铁矿的Rb-Sr等时线年龄为142.0±3.0Ma(MSWD=5.7),锶同位素初始值ISr=0.71267;闪锌矿与黄铁矿的Rb-Sr等时线年龄为142.7±1.3Ma(MSWD=3.8),锶同位素初始值ISr=0.71266。上述定年结果表明,甲乌拉矿床形成于早白垩世初期。甲乌拉矿床硫化物的Rb和Sr含量分别介于0.1034×10-6~7.367×10-6和1.301×10-6~7.148×10-6之间,Sr同位素初始比值(87Sr/86Sr)i介于0.71238~0.71277之间,平均值为0.71264,暗示甲乌拉矿床的成矿物质主要来源于地壳。甲乌拉矿床形成于蒙古-鄂霍茨克造山过程的后碰撞阶段。  相似文献   

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