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1.
梁华英  王秀璋 《矿物学报》2001,21(2):246-250
大沟谷金矿床产于震旦系乐晶峡群钠长石岩带底部陡倾斜钠长石岩中。金矿床铅同位素组成变化大^206Pb/^204Pb17.356-19.306,^207Pb/^204Pb15.330-15.862,^208Pb/^204Pb37.532-39.957。u值在8.23-10.6之间,黄铁矿δ^34S值在5.1‰-13.4‰之间,铅同位素组成具线性相关关系,^206Pb/^204Pb与^207Pb/^204Pb线性方程y=0.24x 11.19,r=0.83,^206Pb/^204Pb与^208Pb/^204Pb方程为y=1.3x 14.8,r=0.93,黄铁矿铅硫同位素组成具负相关关系,钠长石岩Rb、Sr含量较低,^87Sr/^86Sr值为0.72263-0.73150,平均0.72595。综合铅、锶、硫同位素特征,可以认为大沟谷金矿床成矿物质主要来自高u值基底碎屑沉积岩及钠化基性火成岩。  相似文献   

2.
吉黑东部花岗岩类的稳定同位素组成   总被引:7,自引:2,他引:7       下载免费PDF全文
吉黑东部花岗岩类分布广泛,形成历史漫长,岩石类型齐全。按成因类型划分,以I型为主,A型次之,S型很少,M型极少。其稳定同位素组成独特,大多数岩体锶初始值低,氧同位素正常或低,铅同位素以低^204Pb和高^206Pb/^204Pb、^207Pb/^204Pb、^208Pb/^204Pb为主,钕初始值高,说明其基底岩石成熟度低,地幔物质混入量较多。这些特点明显区别于华北和华南的花岗岩。  相似文献   

3.
内蒙古十八倾壕金矿床铅同位素组成的构造学意义   总被引:3,自引:1,他引:3       下载免费PDF全文
梁一鸿 《中国地质》2004,31(1):91-95
十八倾壕金矿有两种类型矿体:糜棱岩型矿体和石英脉型矿体。糜棱岩型矿石Pb同位素组成以低放射性成因铅为特点:^206Pb/^204Pb为16.63~17.45,^207pb/^304Pb为1531~15.48,^208Pb/^204Pb为36.52~38.85;在铅的动力学演化曲线上非常接近幔源铅演化模式曲线;与区域上典型的韧性剪切带型金矿——后石花金矿的铅同位素组成一致,是早元古代晚期(2040Ma)韧性剪切变质变形作用的产物。石英脉型矿石Pb同位素组成以高放射性成因铅为特点:^206Pb/^204Pb为18.23~19.74,^207Pb/^204Pb为15.69~15.89,^208Pb/^204pb为38.64~40.13;在铅的动力学演化曲线上非常接近上地壳铅演化的模式曲线;与区域上典型的燕山期岩浆热液型金矿——东伙房金矿以及燕山期花岗岩的铅同位素组成一致,是燕山期岩浆热液型金矿化。十八倾壕金矿是两次小同性质成矿作用叠加的结果。这从Pb同位素组成上证明了笔者曾经提出的关于该矿床叠加构造控矿的观点。  相似文献   

4.
滇西地区上地幔铅同位素组成的确定及其应用   总被引:6,自引:0,他引:6  
滇西地区基性-超基性岩、碱性岩中的长石、石榴子石、橄榄石等单矿物及羊拉铜矿区二叠世海相玄武岩的铜铅同位素组成可以代表原始地幔的铅同位素组成,由此确定的该区上地幔铅同位素组成变化范围为^206Pb/^204Pb=17.877-18.506,平均18.108,^207Pb/^204Pb=15.470-15.587,平均15.479,^208Pb/^204Pb=37.797-38.567,平均38.177。研究发现,由于受地壳物质的混染和成岩后U、Th衰变产生的放射成因铅的影响,这些幔源岩石全岩铅同位素组成已不能代表原始上地幔的铅同位素组成;金顶铅锌矿床的铅并非上地幔来源,而是相当于下地壳来源的铅与兰坪盆地沉积岩铅二者的混合铅。  相似文献   

5.
阿拉善地区朱拉扎嘎金矿床硫、铅同位素研究   总被引:9,自引:0,他引:9       下载免费PDF全文
朱拉扎嘎金矿是近年来在华北地台北缘西段首次找到的以变质沉积岩为主岩的大型金矿床,金矿化主要呈似层状、脉状和透镜体状产在中元古界变质沉积岩地层内,11件硫化物和2件金矿石金岩的δ^34S值变化范围为1.1‰-7.1‰,根据硫化物的产状及形成期次判断,成矿热液中的硫同位素基本上达到了平衡,成矿热液的δ^34S值为2‰左右,暗示硫的来源主要以深源硫为主,与岩浆活动关系密切,6件金矿石中的硫化物、1件变质沉积岩、2件地层火山岩 5件侵入岩体(脉)的^206Pb/^204Pb/^204Pb值分别为17.034-17.725、16.971、17.602-17.513和17.492-17.776,^207Pb/^204Pb为15.297-15.552、15.031、15.436-15.445和15.299-15.564;^208Pb/^204Pb为36.599-37.489、36.347、37.493-37.623和37.606-37.895。在铅构造模式图中,尽管金矿石Pb同位素投影点分布范围较大,但多36.347、37.493-37.623和37.606-37.895。在铅构造模式图中,尽管金矿石Pb同位素投影点分布范围较大,但多数集中于地幔和造山带演化线附近,并与侵入岩铅同位素组成较为接近,反映了铅的来源主要与岩浆活动有关,矿石铅同位素组成可能是侵入岩铅与变质地层中铅混合的结果,S、Pb同位素数据表明,在朱拉扎嘎金矿床,原始地导台的火山岩可能促成了金在地层中的预富集,而海西期大规模的构造-岩浆活动不仅带来了大量的成矿物质,而且使地层中的金活化,并在有利的构造部位沉淀富集,从而形成金矿。  相似文献   

6.
铜陵地区老鸦岭层状钼矿床铅同位素组成研究   总被引:1,自引:0,他引:1  
安徽铜陵老鸦岭矿床中二叠系大隆组(P2d)顶部的含矿(钼矿化)黑色页岩以及附近(立新煤矿)同一层位不含矿黑色页岩的实测铅同位素组成分别为:^206Pb/^204Pb20.20~22.37,^207Pb/^204Pb15.67~15.82,^208Pb/^204Pb38.47~38.60和^206Pb/204Pb18.83~20.80,^207Pb/^204Pb15.65~15.76,^208Pb/^204Pb38.84~39.22。对137Ma的放射成因Pb进行校正后的铅同位素组成表明,含矿黑色页岩和不含矿黑色页岩均与燕山晚期火成岩无关,老鸦岭含矿黑色页岩可能具沉积成因。对沉积(约250Ma)以来的放射成因Pb进行校正后的铅同位素组成表明:不含矿黑色页岩的Pb源自上地壳,而含矿黑色页岩的Pb(因而推测其他成矿金属)可能源于上地壳物质(与不含矿黑色页岩的Pb源相似)与下地壳物质的混合。  相似文献   

7.
通过对比研究新生代玄武岩Pb,Sr,Nd同位素组成及前寒武纪基底Nd同位素组成,本文将扬子板块东段划归为四个构造-岩石-同位素地球化学省,即苏沪省、嘉山省,北扬子省和南扬子省。其中,喜山省位于庐江-灌云断裂和庐断裂之间,以高^87Sr/^86Sr比(0.70435-0.70490),低^143Ndxx (0.512395-0.512615)和低放射成因铅(^206Pb/^204Pb,^207Pb/^204Pb和^208Pb/^204Pb分别为16.594-17.266,15.317-15.437和37.352-37.782)为特点;苏沪省们于苏皖边界以东,以低^87Sr/^86Sr比(0.70341-0.70392),高^143Nd/^144Nd比(0.512838-0.513002)和较高放射成因铅(^206Pb/^204Pb,^207Pb/^204Pb^和208Pb/^204Pb分别为17.789-18.275,15.489-15.552和37.831-38.369)为特点;北扬子省位于庐江-灌云断裂以南,富含放射成因铅(^206Pb/^204Pb为18.021-18.150,^207Pb/^204Pb为15.546-15.574,^208Pb/^204Pb为38.154-38.469),而^87Sr/^86Sr比和^143Nd/^144Nd比(分别为0.70464-0.70468和0.512748-0.512774)介于嘉山省和苏沪省之间。  相似文献   

8.
MC-ICP-MS高精度测定Pb同位素比值   总被引:1,自引:1,他引:1  
多接收器等离子体质谱是近年发展起来的高精度同位素分析手段之一,通过用等离子体质谱测量Pb国际标准物质NBS981和NBS982,显示出多接收器等离子体质谱分析Pb同位素的优势。利用205Tl/203Tl进行作为内标,可以实现Pb同位素的质量分馏校正,极大地提高了Pb同位素分析的重现性。相比较热电离质谱,该方法精度更高,样品的用量更少,测试时间更短,多接收器等离子体质谱测定Pb同位素技术有良好的应用前景。  相似文献   

9.
报道的单颗粒锆石蒸发定年方法是利用新型固体质谱计的多离子接收器配置实现的。改进的锆石蒸发^207Pb/^206Pb定年流程通过静态测量方式,在锆石蒸发过程中直接测定铅同位素比值,获得^207Pb/^206Pb年龄。应用该方法测定了元古代永宁组沉积岩的碎屑锆石,获得6颗锆石的^207Pb/^206Pb年龄值为1965—2590Ma。与传统的蒸发法流程相比,静态测量方法省时简捷,同时可以直观地观测到锆石内部的铅同位素组成变化。这些变化反映锆石结晶历史、后期事件叠加以及锆石成因等地质信息。  相似文献   

10.
相山火山—侵入杂岩Nd—Sr—Pb同位素地球化学特征   总被引:8,自引:6,他引:8  
对相山火山-侵入杂岩Nd,Sr,Pb同位素组成及其底变质岩Pb同位素组成的研究表明,相山两旋回火山岩及火山期后的次火山岩具有较低的εNd(t)值(-7.46-9.40),较高的Isr值(0.70801-0.71201)和较古老的Nd模式年龄(1.54-1.70Ga),且相对富集放射成因铅(^206Pb/^204Pb,^207Pb/^204Pb,^208Pb/^204Pb分别为17.686-18.323,15.523-15.730,38.143-38.936)。相山火山-侵入杂岩与该区出露的基底变质沉积岩在Nd,Pb同位素组成上既有明显的相似性,又有一定差别,因此,相山火山-侵入杂岩的源区主要为地壳岩石,但并不排除有部分幔源组分介入。ε  相似文献   

11.
The authors measured Pb isotope compositions of seven USGS rock reference standards, i.e. AGV-1, AGV-2, BHVO-1, BHVO-2, BCR-2, BER-1/1 and W-2, together with NBS 981 using a micromass isoprobe multi-collector inductively-coupled plasma mass spectrometer (MC-ICP-MS) at the University of Queensland. 203Tl-205Tl isotopes were used as an internal standard to correct for mass-dependant isotopic fractionation. The results for both NBS 981 and USGS rock standards AGV-1 and BHVO-1 are comparable to or better than double- and triple-spike TIMS (thermal ionization mass spectrometry) data in precision. The data for BHVO-2 and, to a lesser extent, AGV-2 and BCR-2 are reproducibly higher for 206Pb/204Pb, 207Pb/204Pb and 208Pb/204Pb than double-spike TIMS data in the literature. The authors also obtained the Pb isotope data for BIR-1/1 and W-2, which may be used as reference values in future studies. It is found that linear correction for Pb isotopic fractionation is adequate with the results identical to those corre  相似文献   

12.
A new method has been developed for the simultaneous determination of Pb abundance and Pb isotopic composition with high precision and accuracy for small test portion masses by thermal ionisation mass spectrometry. In this method, a 205pb-204pb double spike is added to samples prior to the chemical separation of Pb, and the isotopic composition of the spike-sample mixture is determined rigorously by the double spike technique using a 207Pb-204Pb spike. The isotopic composition and concentration of Pb in the sample are then obtained by utilising the principle of isotope dilution. Using this technique, replicate determinations of Pb from NIST SRM 981 and GSJ JP-1 (peridotite; 0.07 μg g−1 Pb) were performed. The measured concentration and isotopic data were identical, within uncertainty, to published data or to data that were determined independently in this study. The application of this method to U-Pb dating and the determination of the "initial" Pb isotopic composition was also tested. Lead isotopic compositions and the concentrations of Pb, Th and U were determined for a single batch of samples, through the addition of 205pb-204pb, 230Th and 235U spikes to samples prior to chemical separation. Also in these experiments, we confirmed that this routine gives accurate data for Pb, Th and U concentrations and Pb isotopic compositions.  相似文献   

13.
白云鄂博群尖山组H4岩性段石英砂岩中的碎屑锆石年龄纪录了华北克拉通北缘两期重要的构造岩浆事件,一组年龄集中在新太古代—古元古代初期(2379~2596Ma),另一组年龄集中在古元古代晚期(1761~1946Ma),该结果与白云鄂博地区基底岩石的锆石年龄相吻合。白云鄂博群沉积碳酸盐岩的全岩207Pb-206Pb等时线年龄1649±45Ma,代表了白云鄂博群的沉积时代。白云鄂博地区沉积灰岩、白云岩与含矿白云岩的Pb同位素组成存在非常大的差异,在Pb同位素组成和构造图解中,含矿白云岩都集中在地幔演化线附近,靠近亏损地幔端元[(206Pb/204Pb)i=15.04~16.49,(207Pb/204Pb)i=15.17~15.28,(208Pb/204Pb)i=31.20~36.40],而白云鄂博群中的灰岩、白云岩则位于造山带演化线附近,靠近深海沉积物端元[(206Pb/204Pb)i=17.28~19.35,(207Pb/204Pb)i=15.47~15.69,(208Pb/204Pb)i=36.62~37.12]。  相似文献   

14.
Lead isotopes are a powerful and versatile tool to elucidate fundamental geological problems related to the formation and evolution of continental crust. K-feldspar is a popular target for Pb isotope measurement as it is prevalent in many rock types and tends to capture the initial Pb isotope composition of its parental magma. We present data for a new Pb isotope reference material: Albany K-feldspar; as well as updated data for Shap K-feldspar. Results of Pb double-spike TIMS for Albany K-feldspar are 206Pb/204Pb = 16.7872 ± 0.0062, 207Pb/204Pb = 15.5640 ± 0.0056, and 208Pb/204Pb = 36.6600 ± 0.0168 (2s). TIMS measurement results for Shap K-feldspar indicate two isotopically distinct Pb populations. LA-MC-ICP-MS, with a spatial resolution as high as 15 μm, indicates a homogeneous Pb isotopic composition in Albany K-feldspar. In accord with previous studies, our results show that scatter in the measured Pb isotope ratios, related to the low natural isotopic abundance of 204Pb, along with the effect of isobaric 204Hg-204Pb interference, increases at lower count rates. However, the mean Pb isotope ratios measured via LA-MC-ICP-MS using a range of spot sizes are in excellent agreement with TIMS results thus highlighting the feasibility of Pb isotope determination via LA-MC-ICP-MS to access geological information preserved in small crystals, including mineral inclusions.  相似文献   

15.
湖北鸡笼山矽卡岩型金铜矿床铅同位素地球化学研究   总被引:1,自引:0,他引:1  
湖北鸡笼山金铜矿床是长江中下游铁铜金多金属成矿带鄂东南成矿区中典型的矽卡岩矿床,对其成矿物质来源的专门研究相对贫乏。对鸡笼山矽卡岩带的11件黄铁矿、2件方铅矿和2件闪锌矿样品进行了铅同位素分析,结果显示206Pb/204Pb为17.358~18.589,207Pb/204Pb为15.414~15.745,20 8Pb/204Pb为37.956~39.094,矿石铅属异常铅,其单阶段模式年龄(136.3~707.3 Ma)不能代表成矿年龄,但其分布特征反映了铅的多源混合特征。同位素构造模式图上投点的线性分布特征显示了花岗闪长斑岩、矽卡岩、大理岩中的铅同位素演化具有很好的继承性和相应性,但各类铅同位素组成在20 8Pb/204Pb-206Pb/204Pb图上均落在下地壳和地幔之间,指示其具有来自壳幔边界附近的深源的特点。鸡笼山金铜矿床、丰山洞铜钼矿床、城门山铜金矿床、铜绿山铜铁矿床4个相似矿床的铅同位素组成进行对比,显示整体成矿物质来源在主体相似的背景下也具有局部的差异性。  相似文献   

16.
微区原位普通铅同位素分析技术及其地质应用进展   总被引:1,自引:0,他引:1  
应用激光剥蚀-多接收器电感耦合等离子体质谱(LA-MC-ICP-MS)和二次离子质谱(SIMS)等分析技术进行微区原位普通Pb同位素分析是微区地球化学研究的重要内容之一.综述了矿物、熔体包裹体和沉积结核的微区原位普通Pb同位素分析技术及其地质应用的新进展.这些研究资料表明该分析技术在岩浆岩成因、沉积物物源示踪、地幔地球化学、古海洋学以及矿床学等的研究中提供了常规的全岩Pb同位素分析方法难以获得的重要信息,充分展示了该分析技术在地球科学研究中的应用前景.  相似文献   

17.
滇西地区的九顶山铜钼矿、北衙金矿和姚安铜矿是与喜马拉雅期斑岩有关的矿床.九顶山、北衙和姚安矿区的硫、铅同位素组成特征十分相似:各矿床的δ(34S)组成分布范围比较窄,在-2.4×10^-3~4.5×10^-3之间,平均值为0.64×10^-3,具有明显的塔式分布,说明硫主要为深部岩浆来源;各矿床的Pb同位素组成(N(206 Pb) /N(204 Pb),N(207 Pb)/N(204 Pb),N(208 Pb)/N(204 Pb))相似,都比较稳定,依据构造模式判别及成因分类综合分析,铅具有深源性,主要来源于地幔和下地壳,显示造山带铅的特征.研究结果表明,滇西地区与喜马拉雅期斑岩有关的矿床具有相同的成矿物资来源,主要成矿物质都来自深部地幔.  相似文献   

18.
对采自Mothra热液场Faulty Towers硫化物烟囱体群(47°57.447,N,129°06.568W)的一个硫化物烟囱体进行了铅和硫同位素组成的研究工作.分析结果表明,铅同位素组成的分布范围为:206Pb/204Pb=18.665~18.828; 207Pb/204Pb=15.460~15.607; 208...  相似文献   

19.
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   

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