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1.
西石门铁矿床是华北地区最为典型的矽卡岩型铁矿床之一,最新获得金云母40 Ar-39 Ar成矿年龄为(133.1±1.3)Ma、(137.1±1.5)Ma,略老于其成矿母岩(武安杂岩体)形成的年龄(126~136 Ma),这是矛盾的。笔者对角闪正长岩和矽卡岩脉中的锆石进行了LA-ICP-MS U-Pb同位素年代学分析。结果表明,角闪正长岩中锆石呈浅黄色-无色、透明、棱角状、不规则状,振荡环带结构不发育,部分锆石中含棱角状继承锆石内核,206 Pb-238 U年龄加权平均值为(135.6±1.5)Ma,代表了武安杂岩体的结晶年龄。矽卡岩脉中锆石呈棕色,含有少量细小的包裹体,呈透明-半透明,相对于岩浆锆石具有低的Th、U、REE含量及Th/U值(Th=(222.37~1541.11)×10-6,U=(218.44~989.17)×10-6,Th/U=0.90~1.56),并具有强烈的Ce正异常(δCe=4.46~196.22)和Eu负异常(δEu=0.59~0.80),206Pb-238 U年龄介于124.9~133.0Ma,加权平均值为(129.4±2.6)Ma,代表了热液锆石的形成年龄,说明129 Ma是该西石门地区主要成矿期。  相似文献   

2.
为了查明冈底斯成矿带隆格尔富铁矿床的成矿时代、形成环境及其对区域铁成矿作用的指示,对该矿床开展了岩石地球化学、锆石U?Pb年代学和Lu?Hf同位素及金云母Ar?Ar定年分析,结果表明:(1)矿区存在早白垩世花岗闪长岩(116.3 Ma)和晚白垩世闪长岩(94.3~93.8 Ma)两个阶段的岩浆活动,主矿体金云母40Ar...  相似文献   

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Columbite-tantalite LA-ICP-MS U-Pb dating is a fast and useful method to determine the age of rare-metal deposits and fingerprint the provenance of columbite-tantalite ore concentrates. Accurate LA-ICP-MS U-Pb dating requires matrix-matched reference materials. We analysed three columbite-tantalite samples (SN3, HND and RL2) from China using ID-TIMS and LA-ICP-MS to assess their potential as reference materials for in situ U-Pb dating. Coltan 139 and these three columbite-tantalite samples with variable compositions yielded internally consistent LA-ICP-MS U-Pb ages when using each other for calibration and the weighted mean 206Pb/238U ages are comparable to respective ID-TIMS ages. Composition-dependent U-Pb fractionation seems to be insignificant under the LA-ICP-MS conditions used. Sample SN3 has a low percentage of heterogeneity for 206Pb/238U ages (4%) with low common Pb contributions (f206 < 1%) and shows a good potential in calibrating unknown samples as primary reference material for LA-ICP-MS analysis. Samples RL2 and HND have altered sections characterised by high LREE contents, flat LREE patterns and old 206Pb/238U apparent ages, and are not suited as reference materials. The low 207Pb/206Pb intercepts for samples RL2 and HND lack geological meaning but provide strong evidence that the disturbed U-Pb systematics with anomalous apparent 206Pb/238U ages is a secondary feature.  相似文献   

4.
正Objective The Hengjian uranium deposit is a typical hydrothermal deposit in the Xiangshan uranium ore field.The uranium mineralization ages of the Xiangshan deposits are poorly constrained,and only a few mineralization ages using the pitchblende U-Pb method have been published.These ages are commonly discordant and dispersed for abundant inclusions and an open U-Pb system.Zircon grains after strong hydrothermal alteration are usually characterized by high common Pb contents,and their U-Pb isochron ages recorded the hydrothermal alteration event without interference of common Pb components.The Hengjian gray/grayish-green granite porphyry experienced strong  相似文献   

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The Chengchao iron deposit,the largest high-grade skarn iron deposit in southeastern Hubei Province,contains considerable amounts of magnetite and by-product anhydrite.To obtain better understanding of the ore-formation process,this study carried out He-Ar-S-Pb multi-isotopic analyses on the pyrites formed during two stages of mineralization.The results indicate that the δ~(34)S values(ranging from 14.0‰ to 17.6‰) of pyrites formed from the two stages have no obvious differences,suggesting that they were not derived from a single magmatic sulfur source.The δ~(34)S values of anhydrite mostly range from 21.9‰ to 28.4‰,similar to that of the Middle Triassic sedimentary anhydrite in the Middle-Lower Yangtze River metallogenic belt(MLYRB).The Pb isotopic compositions of the pyrites of both stages are homogeneous,with values of ~(208)Pb/~(204)Pb,~(207)Pb/~(204)Pb,and~(206)Pb/~(204)Pb being 38.006-38.257,15.523-15.556,and 17.806-18.052,respectively,indicating a mixed crust-mantle source.The He-Ar results exhibit different compositions of the two stages:the ~3He/~4He(R/Ra) and ~(40)Ar/~(36)Ar values for the early-stage pyrite are 0.46-0.63 and 311-322,respectively,whereas the values for late-stage pyrite are 0.23-0.34 and 305-361,respectively.Both stages of pyrites indicate the multiple sources of the ore-forming fluids,with decreasing amount of magmatic water and increasing amount of modified meteoric water(MASW) during fluid evolution.The Triassic evaporites played an important role in the mineralization process.  相似文献   

6.
海南抱伦金矿矿区尖峰岭岩体中的锆石可分为岩浆锆石和热液锆石.岩浆锆石无色、透明, 长柱状、无明显包裹体, U、Th含量多小于1000μg/g, 206Pb-238U年龄加权平均值为240±2.1Ma, 代表了尖峰岭岩体的结晶年龄.热液锆石呈褐色、浑浊、半透明的自形短柱状, 相对于岩浆锆石具有异常高的U、Th及微量元素含量, 其U含量最高可达30000μg/g, Th含量最高可达20000μg/g, 微量及稀土元素含量比岩浆锆石普遍高一个数量级, 且具有较高的普通Pb.LA-ICP-MS锆石U-Pb定年结果表明, 这些热液锆石的形成年龄为106~120Ma之间, 206Pb-238U年龄加权平均值为112.8±4.3Ma, 代表了热液作用的年龄, 显示该区在112~120Ma左右经历了一次强烈的热液作用, 可能与该区燕山期大规模的岩浆作用以及抱伦金矿的成矿有关.研究还表明, 对热液锆石直接进行微区原位U-Pb定年, 可用来准确测定热液作用的时间和限定热液成因金矿床的成矿时代.   相似文献   

7.
Gem quality andradite-rich garnet (IUC-1), obtained from the Miocene trachyte dome near Ankara city (Turkey), has been identified as a potential natural secondary reference material for U-Pb dating. In this study, U-Pb dating was performed in five different laboratories using isotope dilution TIMS and laser ablation ICP-MS to determine the homogeneity of euhedral garnet crystals. The U-Pb ID-TIMS data for IUC-1 yielded 207Pb/235U and 206Pb/238U ages of 20.9 ± 0.4 and 20.6 ± 0.8 Ma respectively, and these values are consistent with U-Pb LA-ICP-MS analyses, in which different garnet crystals yielded ages of 20.8 ± 0.1, 20.7 ± 0.1, 20.7 ± 0.2 and 20.2 ± 0.1 Ma. An andradite (IUC-2) from the Serçeören wollastonite skarn (Turkey) can be used as a secondary reference material provided detailed imaging of the crystals is undertaken. ID-TIMS data yielded 207Pb/235U and 206Pb/238U ages of 20.4 ± 0.4 and 20.9 ± 1.0 Ma respectively, and yielded U-Pb ages on different grains of 20.5 ± 0.1, 20.7 ± 1.0, 20.8 ± 1.7 and 20.9 ± 1.6 Ma. The assigned weighted mean age of IUC-1 (20.4 ± 0.5 Ma, 2s) is proposed as a 2023 reference value. IUC-1 garnet is expected to contribute significantly to rapidly developing garnet geochronology in the near future.  相似文献   

8.
向华  张利  钟增球  周汉文  曾雯 《地球科学进展》2007,23(12):1258-1267
榍石在各类岩石中普遍存在,其稳定性受全岩成分、氧逸度和水活度以及温度和压力等因素影响。它在岩浆岩中主要存在于高Ca/Al比值的岩石中,在变质岩中常见于绿片岩相、蓝片岩相和角闪岩相岩石,在钙质变质岩中其稳定范围可达榴辉岩相或高压麻粒岩相。一般榍石结构中U含量较高,且具有高达高角闪岩相上限的U Pb同位素体系封闭温度,是理想的U-Pb定年矿物。由于榍石的组成元素均为岩石中的主要元素,很容易与其它矿物、熔体及流体发生反应,所以榍石的U-Pb年龄记录的更可能是结晶年龄,而不是简单的扩散重置年龄;也因为它容易反应,变质榍石复杂的U Pb体系可能记录了岩石的整个变质历史信息。通过与榍石平衡共生的矿物组合或利用榍石Zr温压计可确定岩石的P T条件,结合相关的榍石年龄信息即可建立变质过程的P T t轨迹。利用SHRIMP、LA MC ICP MS以及LA ICP MS方法可对不均一榍石颗粒内部进行原位微区分析得到有意义的U Pb年龄;利用榍石中Zr含量对温度,尤其是对压力比较敏感,可建立榍石Zr含量温压计。  相似文献   

9.
山西义兴寨金矿床是五台山-恒山金矿集区内最为典型的金矿床,也是山西省最大的金矿床.矿区产出有4个角砾岩筒,与金矿的形成具有紧密的联系.然而,有关该矿床角砾岩筒的形成时间和机制的研究十分欠缺,角砾岩筒与金矿化的关系仍不清楚.通过对角砾岩筒内的矽卡岩角砾中的石榴石和切割角砾岩的石英斑岩中的锆石开展了LA-ICPMS原位U-Pb同位素分析,结果表明角砾岩和石英斑岩的形成时间分别为140±2 Ma和141±1 Ma,从而精确限制了角砾岩筒的形成时间.以上研究表明,义兴寨矿区4个角砾岩筒的形成时间与石英斑岩侵位时代和金矿形成时间完全一致,表明角砾岩筒是岩浆分异的气液流体导致围岩发生隐爆而形成,而金矿化也可能与岩浆释放的热液流体直接相关.   相似文献   

10.
朱诺斑岩铜钼金矿位于冈底斯成矿带南缘,是近年来在冈底斯斑岩铜矿带最西端新发现的另一大型斑岩型铜-钼-金矿床,但一直以来对该矿区花岗岩年代学及成因分析缺乏系统的研究。本文选择矿区内主要岩浆岩体开展LA-ICP-MS锆石U-Pb定年,Hf同位素研究。获得黑云母花岗闪长岩锆石U-Pb年龄为14.14±0.32Ma,76 Hf/177 Hf介于0.282484~0.282750,εHf(t)介于-9.87~-0.49,二阶段模式年龄TDMC介于1.13~1.73Ga、似斑状二长花岗岩锆石U-Pb年龄为14.05±0.31Ma,176 Hf/177 Hf介于0.282633~0.282769,εHf(t)介于-4.61~0.21,二阶段模式年龄TDMC介于1.08~1.39Ga之间;角闪闪长玢岩锆石U-Pb年龄为14.10±0.29Ma,除4.1号为继承锆石外,其余测点176 Hf/177 Hf介于0.282607~0.282761,εHf(t)介于-5.53~-0.07,二阶段模式年龄TDMC介于1.10~1.45Ga之间。年代学与Hf同位素结果表明,朱诺斑岩铜矿与斑岩铜矿带中段和东段成岩成矿时代一致,集中在15~13Ma之间,指示了冈底斯在中新世的构造岩浆活动事件。花岗岩Hf同位素组成明显与中-东段斑岩矿床不同,具有富集Hf同位素特征以及古老二阶段模式年龄(1.08~1.73Ga)等特点,反映出朱诺矿区中新世岩浆岩源区与中-东段中新世斑岩矿床明显不同,可能指示古老拉萨地体的印迹。  相似文献   

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石榴子石原位U-Pb定年是近年来新发展的低铀矿物同位素定年方法,目前在矿床中成功应用的实例较少,尤其是在非金属矿床中更为罕见.基于详细的岩相学观察,在鄂东南高椅山硅灰石(-铜)矿床中厘定出两期石榴子石,分别为第一期深棕色石榴子石Grt1和第二期浅棕色石榴子石Grt2.电子探针成分分析(EMPA)表明,两期石榴子石均属于钙铁榴石-钙铝榴石固溶体系列,其中Grt1相对富Fe(Adr62.4Gro36.5~Adr94.4Gro0),而Grt2相对富Al(Adr32.6Gro66.4~Adr40.2Gro58.6).对Grt1和Grt2石榴子石进行LA-ICP-MS U-Pb定年,获得T-W下交点206Pb/238U年龄分别为142.5±2.0 Ma(2σ,MSWD=1.30,n=38)和136.0±14.0 Ma(2σ,MSWD=0.42,n=17),与矿区内广泛出露的石英二长闪长岩锆石206Pb/238U加权平均年龄(139.8±1.5 Ma;2σ,MSWD=0.10,n=22)在误差范围内一致,证明二者之间存在密切的成因联系.高椅山Grt1石榴子石具有较高的U含量和较低的普通铅含量,此为U-Pb同位素测年成功的主要因素.   相似文献   

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在班戈县东偏北约100km的江错铁矿采集正长斑岩样品,进行系统的岩相学、地球化学及锆石LAMC-ICP-MS U-Pb定年。结果显示正长斑岩的SiO_2含量变化为59.55%~62.61%,平均值61.52%,Na_2O含量变化为9.31%~10.01%,平均值9.74%;K_2O含量变化为0.107%~0.12%,平均值0.113%,里特曼指数变化范围为5.16~5.36,属于钠质碱性岩系列,是班公湖-怒江缝合带中段班戈地区首次发现的碱性岩。锆石U-Pb年龄为170±2.4Ma,表明其为中侏罗世的产物。综合对比区域地质资料,认为这套正长斑岩应该是班公湖-怒江洋盆开始俯冲早期的不成熟岛弧阶段的产物。  相似文献   

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New analyses have been performed in order to enhance the data-set on the independent ages of four glasses that have been proposed as reference materials for fission-track dating. The results are as follows. Moldavite - repeated 40Ar/39Ar age determinations on samples from deposits from Bohemia and Moravia yielded an average of 14.34 ± 0.08 Ma. This datum agrees with other recent determinations and is significantly younger than the 40Ar/39Ar age of 15.21 ± 0.15 Ma determined in the early 1980s. Macusanite (Peru) -four K-Ar ages ranging from 5.44 ± 0.06 to 5.72 ± 0.12 Ma have been published previously. New 40Ar/39Ar ages gave an average of 5.12 ± 0.04 Ma. Plateau fission-track ages determined using the IRMM-540 certified glass and U and Th thin films for neutron fluence measurements agree better with these new 40Ar/39Ar ages than the previously published ages. Roccastrada glass (Italy) - a new 40Ar/39Ar age, 2.45 ± 0.04 Ma, is consistent with previous determinations. The Quiron obsidian (Argentina) is a recently discovered glass that has been proposed as an additional reference material for its high spontaneous track density (around 100 000 cm-2). Defects that might produce "spurious" tracks are virtually absent. An independent 40Ar/39Ar age of 8.77 ± 0.09 Ma was determined and is recommended for this glass. We believe that these materials, which will be distributed upon request to fission-track groups, will be very useful for testing system calibrations and experimental procedures.  相似文献   

17.
锡田钨锡多金属矿田位于南岭成矿带中段,发育多期次岩浆活动与钨锡成矿. 为了厘清花岗岩与钨锡成矿的时空关系,采用野外调查、显微鉴定、锆石U-Pb同位素定年与岩石地球化学的方法对矿田内多期次花岗岩岩体(脉)的空间分布、岩石类型、成岩时代、地球化学组成等进行了研究. 结果表明,锡田矿田发生了三期岩浆事件,分别为加里东期(435~441 Ma)、印支期(220~230 Ma)、燕山期(141~160 Ma);三期花岗岩普遍富集大离子亲石元素Rb、K、U、Th等,亏损Ti、P、Sr、Ba等微量元素,具明显的负Eu异常,其中加里东期花岗岩与印支期花岗岩为S型花岗岩,而燕山期花岗岩为A型花岗岩;不同时期花岗岩中的成矿元素从加里东期→印支期→燕山期逐渐升高,特别是W、Sn元素在燕山期白云母与二云母花岗岩中最为富集,这与华南地区燕山期钨锡大爆发的时间是一致的;印支期岩体接触带发育少量矽卡岩型Fe-Cu-W多金属矿床,燕山期岩体接触带也发育矽卡岩型W-Sn多金属矿床,并在附近陡倾的张裂隙中发育多个中大型石英脉型W-Sn矿床,而加里东期岩体附近尚未发现钨锡矿化. 因此,锡田矿田的多期次花岗岩与钨锡多金属成矿是时空耦合的,且成矿以燕山期矽卡岩型与石英脉型钨锡矿为主.   相似文献   

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东雷湾矽卡岩型铜钼金多金属矿床位于九瑞矿集区西北部。本文利用锆石 LA-MC-ICP MS U-Pb同位素定年方法,对东雷湾的主要岩体花岗闪长斑岩成岩时代进行研究,获得花岗闪长斑岩的锆石U-Pb年龄为(142.24±0.52) Ma;同时采用辉钼矿Re-Os同位素定年方法对矿床石英硫化物中的辉钼矿进行定年,首次获得东雷湾矿床的成矿年龄:6件辉钼矿的Re-Os同位素模式年龄范围为(144.8±3.1)~(147.1±2.4) Ma,加权平均年龄为(146.12±0.97) Ma,等时线年龄为(143.3±5.2) Ma。成岩年龄与成矿年龄在误差范围内一致,存在较短的成岩成矿时差,表明成岩成矿过程连续。辉钼矿的Re含量指示东雷湾矿床的成矿作用与岩浆壳幔混合作用有关。东雷湾矿区的成岩成矿时代与九瑞矿集区典型岩体和矿床的成岩成矿时代相似,同时也与长江中下游地区铜陵、安庆和鄂东南(部分地区)的典型铜多金属矿床的成岩成矿时代基本一致。结合区域地质资料,本文认为东雷湾矿床是中国东部东西向印支期构造域向北东向古太平洋构造域构造体制大转折晚期成矿作用的产物。  相似文献   

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松湖铁矿床是新疆西天山阿吾拉勒铁成矿带中的典型中型铁矿床,该矿床铁矿石资源量5506万吨,矿体品位22%~54%,平均品位42%。本文对松湖铁矿床进行了矿床地质和矿物地球化学特征研究,查明了蚀变和矿化特征,划分了矿石类型以及成矿期和成矿阶段,探讨了矿床的形成过程。对松湖铁矿区围岩蚀变分带特征进行了仔细的划分,根据矿物相互穿插关系以及矿物组合和结构构造特征,将成矿过程分为3个成矿期6个成矿阶段。矿浆期成矿温度500~650℃,而热液期成矿温度为接近400℃,蚀变矿物绿泥石的形成温度平均为312℃。两种成因类型磁铁矿稀土元素特征具有专属性,矿浆期磁铁矿ΣREE值明显高于火山热液期磁铁矿,表明热液演化过程中稀土元素分馏程度较高。耦合矿床地质和矿物地球化学特征,初步判断新疆松湖铁矿为矿浆-火山热液叠加型铁矿床。  相似文献   

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