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1.
苏鲁榴辉岩型金红石矿床研究进展   总被引:1,自引:0,他引:1  
文章对苏鲁榴辉岩型金红石矿床的研究进展进行了简单综述。苏鲁超高压变质带金红石矿床的勘探可追溯到20世纪50年代末,近年来找矿工作取得重要进展,已查明金红石矿床总储量达数千万吨。矿床属典型的榴辉岩型金红石矿床,与超高压变质作用关系密切。金红石在榴辉岩中最主要也最具工业价值的赋存方式是呈粒间颗粒充填于主矿物绿辉石和石榴石之间,金红石中的微量元素与其寄主榴辉岩的类型和产状有明显的相关性,并且可反映其形成温度,因此在苏鲁超高压变质榴辉岩和金红石矿床的研究中具有重要价值。富钛基性原岩是榴辉岩型金红石矿床形成的物质基础,高压区域变质作用是这类矿床形成的必要条件。  相似文献   

2.
<正>柴北缘鱼卡金红石矿床是本团队在青海省发现的第一个具有超大型找矿远景的榴辉岩型金红石矿床。为了对该矿床的成矿条件、成矿物质来源、成矿环境、成矿模式及金红石的赋存状态进行深入分析,本文在详细野外地质填图、室内综合研究基础上,利用LA-ICP-MS对该矿床榴辉岩样品中的金红石进行原位微量元素分析。结果表明,矿床的形成还受原岩成分的影响,金红石成矿物质来源主要为  相似文献   

3.
江苏省新沂市小焦榴辉岩型金红石矿床的特征及成因初探   总被引:6,自引:0,他引:6  
江苏小焦榴辉岩型金红石矿床是苏鲁超高压变质带中发现的品位最富、连续宽度最大的大型矿床,它与超高压变质榴辉岩密切相关。矿体主要赋存在含金红石的块状榴辉岩中,呈似层状、长条状和透镜状产出。地球化学特征表明榴辉岩的原岩为来自上地幔或壳幔过渡区的基性至超基性岩。金红石在矿石中主要呈包裹体、粒间充填、蚀变残余、热液充填4种赋存形式,分别代表了4个不同的形成及演化阶段。电子探针分析结果显示,在高压、超高压变质作用期间,富含Na的深部流体对金红石的成矿可能起了重要的作用。研究表明该矿床属典型的榴辉岩型金红石矿床,在成因上与超高压变质作用有关,类似于挪威的Engebfjellet、俄罗斯的Shubino矿床和意大利的PianPaludo矿床,而不同于中国已知的主要金红石矿床。此外,通过本次研究以及对普查和勘探资料的总结,提出了该类矿床的主要找矿标志。  相似文献   

4.
张银波 《矿物岩石》1994,14(3):79-88
西峡金红石矿床位于秦岭造山带东段南缘,是一个大型角闪质片岩型金红石矿床。矿体赋存于古生界信阳群龟山组第三段,含矿岩石为含金红石角闪质片岩。本文阐述了矿区地质、矿体和矿石特征、钛的赋存状态及分布规律、热液蚀变等,认为该矿床属变质热液改热门造的火山─沉积变质型金红石矿床。  相似文献   

5.
鱼卡榴辉岩型金红石矿床位于柴北缘超高压变质带西侧,是青藏高原发现的第一个超大型金红石矿床。为研究该矿床的控矿因素和成矿机制,在详细的野外地质调查和岩相学研究的基础上,利用电子探针对该矿床榴辉岩中的各特征矿物进行分析。研究表明,粗粒块状高钛榴辉岩的石榴子石保存了较完整的成分环带,从核部到边部,石榴子石的化学成分、矿物包裹体的种类和粒度都具有明显的分带性;细粒片麻状低钛榴辉岩的矿物颗粒较小,石榴子石的成分环带较差。鱼卡榴辉岩的p-T演化特征反映,它们经历了深俯冲阶段的升温升压到早期折返阶段的升温降压,再到之后的降温降压的顺时针演化轨迹。榴辉岩中进变质矿物组合和生长环带的保存说明,榴辉岩的形成经历了相对快速俯冲和折返的动力学过程,钛成矿作用时金红石很少发生转变。超高压变质前后为金红石最主要的成矿期。  相似文献   

6.
河南西峡金红石矿床成矿特征   总被引:1,自引:0,他引:1  
西峡金红石矿床位于秦岭造山带东段南缘,古生代陆缘断陷带内,是一个大型角闪质片岩型金红石矿床.矿体赋存于古生界信阳群龟山组第三段,含矿层为合金红石角闪质片岩与大理岩互层.通过对该矿床的成矿地质条件、成矿母岩特征、钛的分布规律,变质成矿作用及后期热液改造等方面的研究,认为陆缘断陷深海槽及控制其形成的深断裂、富钛基性火山岩、区域变质及热液改造等综合因素叠加部位是寻找该类型金红石矿床的最佳方位。  相似文献   

7.
河南西峡金红石矿床地质特征及成矿机制   总被引:1,自引:0,他引:1  
西峡金红石矿床位于秦岭造山带东段南缘,是一个大型角闪质片岩型金红石矿床。矿体赋存于古生界信阳群龟山组第三段,含矿岩石为含金红石角闪质片岩。通过对矿区地质、矿体和矿石特征、钛的赋存状态及分布规律、热液蚀变及变质成矿作用等方面的研究,认为该矿床属变质热液改造的火山-沉积变质金红石矿床  相似文献   

8.
通过野外地质调查、岩石学、矿相学等研究手段,在柴达木盆地北缘鱼卡及铁石观一带均发现榴辉岩型金红石矿床,其单个矿体长可达千米以上,宽均达几米至几十米不等,金红石物相Ti平均品位可达2.58%,属于高钛榴辉岩的范畴,且其矿床地质特征与大别—苏鲁地区的金红石矿床特征极为相似。鱼卡和铁石观金红石矿床的发现,填补了柴北缘榴辉岩变质带没有金红石矿床的空缺,并暗示柴北缘地区有发现大型榴辉岩矿床的找矿远景。  相似文献   

9.
吕伟 《地质与勘探》2023,59(6):1260-1270
为研究黑河地区金红石微量元素特征及榴辉岩型金红石矿床的成矿地质条件,本文选取滇西澜沧黑河地区榴辉岩、石榴多硅白云母片岩中的金红石进行LA-ICP-MS微量元素分析。结果表明金红石微量元素呈现阶梯式三级分布特征,最富集Nb、Ta,其次是Zr、Hf,含量较少的元素有Ba、Rb、Sr、Th、REE;榴辉岩、榴闪岩类原岩属于变质基性岩类,含蓝晶石榴闪岩原岩属于玄武质凝灰岩类,石榴多硅白云母片岩类原岩属于泥质岩类;榴辉岩中金红石Nb/Ta比值均要高于其全岩Nb/Ta比值,金红石Nb、Ta含量与变质作用过程中元素在各矿物间的分配系数有关;采用金红石Zr含量温度计获得黑河地区榴辉岩的峰期变质阶段金红石形成温度为578~605℃,峰期变质作用后的退变质流体会造成金红石中Zr的再平衡。此外,黑河地区具备榴辉岩型金红石矿床形成的成矿物源、成矿作用的物理化学条件以及成矿的物质基础,有一定的找矿潜力。  相似文献   

10.
王汝成  邱检生  倪培  王硕  胡建  朱霞 《地质学报》2006,80(12):1827-1834
榴辉岩型钛矿床是重要的钛矿床类型之一。苏鲁超高压榴辉岩中的钛成矿作用以金红石型钛矿床为主,其中金红石以变质矿物中的包裹体、晶间颗粒或脉状形式出现。富钛石榴子石是金红石包裹体出溶的初始矿物。岩石地球化学研究表明,有利于金红石成矿的榴辉岩为高钛榴辉岩,其源岩为富钛基性岩。利用红外显微镜对金红石进行的流体包裹体研究表明,金红石中主要存在三类流体包裹体,即型H2O溶液包裹体、型CO2-H2O包裹体和型CH4包裹体,其中I型原生和假次生流体包裹体和型流体包裹体反映出的压力范围为0.6~1.3GPa,与榴辉岩角闪岩相退变质作用的压力相当,说明与这类金红石形成有关的变质流体源于榴辉岩退变质作用所释放的水。苏鲁地区超高压榴辉岩是华南—华北板块碰撞的结果,巨量陆壳物质俯冲—折返形成了多样式的高压—超高压岩石,与此同时也发生了以金红石为主要矿石矿物的钛成矿作用。综合矿物学、岩石学、地球化学等研究,我们提出大陆板块汇聚边界的钛成矿作用应该经历了原岩的初始富集、陆壳物质俯冲过程中钛的成矿作用、俯冲板块折返过程中钛的成矿作用和流体阶段的金红石成矿作用四个主要成矿阶段。  相似文献   

11.
为了开发利用南召—泌阳金红石矿带的金红石,综合分析了以往资料,并在实地踏勘、样品测试和重点地段综合研究基础上,查明了各矿段金红石矿基本地质特征、金红石赋存状态、嵌布特征、粒度变化特征、金红石富矿体的主要赋存位置。区内粗粒易选富矿体位于矿带中段的左老庄组一段上部(北部)。采用以微生物提纯金红石粗精矿为标志的新工艺,取得了良好的选矿试验效果。刘岗矿区的1号和2号富矿体可作为进一步研究和开发利用的重点。  相似文献   

12.
Rutile is an important carrier of high field strength elements (HFSE; Zr, Nb, Mo, Sn, Sb, Hf, Ta, W). Its Zr content is buffered in systems with quartz and zircon as coexisting phases. The effects of temperature (T) and pressure (P) on the Zr content in rutile have been empirically calibrated in this study by analysing rutile–quartz–zircon assemblages of 31 metamorphic rocks spanning a T range from 430 to 1,100°C. Electron microprobe measurements show that Zr concentrations in rutile vary from 30 to 8,400 ppm across this temperature interval, correlating closely with metamorphic grade. The following thermometer has been formulated based on the maximum Zr contents of rutile included in garnet and pyroxene:
No pressure dependence was observed. An uncertainty in absolute T of ±50°C is inherited from T estimates of the natural samples used. A close approach to equilibrium of Zr distribution between zircon and rutile is suggested based on the high degree of reproducability of Zr contents in rutiles from different rock types from the same locality. At a given locality, the calculated range in T is mostly ±10°C, indicating the geological and analytical precision of the rutile thermometer. Possible applications of this new geothermometer are discussed covering the fields of ultrahigh temperature (UHT) granulites, sedimentary provenance studies and metamorphic field gradients.  相似文献   

13.
Pb diffusion in rutile   总被引:16,自引:0,他引:16  
Diffusion of Pb was measured in natural and synthetic rutile under dry, 1 atmosphere conditions, using mixtures of Pb titanate or Pb sulfide and TiO2 as the sources of diffusant. Pb depth profiles were then measured with Rutherford Backscattering Spectrometry (RBS). Over the temperature range 700–1100 °C, the following Arrhenius relation was obtained for the synthetic rutile: D=3.9 × 10−10exp(−250 ± 12 kJ mol−1/RT) m2s−1. Results for diffusion in natural and synthetic rutile were quite similar, despite significant differences in trace element compositions. Mean closure temperatures calculated from the diffusion parameters are around 600 °C for rutile grains of ∼100 μm size. This is about 100 °C higher than rutile closure temperature determinations from past field-based studies, suggesting that rutile is more resistant to Pb loss through volume diffusion than previously thought. Received: 28 June 1999 / Accepted: 29 December 1999  相似文献   

14.
金红石矿床的类型、分布及其主要地质特征   总被引:10,自引:1,他引:9       下载免费PDF全文
赵一鸣 《矿床地质》2008,27(4):520-530
金红石及其同质多象(锐钛矿)是钛的氧化物中最具经济意义的矿产资源,也是中国当前短缺和重要的急需矿种之一。金红石矿床产出的大地构造背景主要是古老地盾区及其边缘或褶皱带中的变质地体。全球范围内,主要的金红石矿床可分为4个大类,即:变质的、与侵入岩有关的、沉积的和风化的,它们又可以分为12个类型,其中,第四纪海滨沉积砂矿是最重要的类型,榴辉岩型、碱性岩风化型和河流沉积砂矿型次之;碱性辉石岩中的钙钛矿、角闪岩型和斑岩铜(钼)矿伴生的金红石矿床经济潜力很大。大多数金红石富矿床来自榴辉岩型、与侵入岩有关的热液交代型和深度风化的碱性岩型,但在变质(粉)砂岩型和古沉积砂矿型中也有富矿床产出。  相似文献   

15.
山西代县碾子沟金红石矿床地球化学特征   总被引:5,自引:0,他引:5       下载免费PDF全文
文章对矿区内基性岩、基性变质岩、酸碱性变质岩及蚀变岩中常量和微量元素的含量、相关性、变异系数、REE分布模式等特征进行了研究。笔者认为:该矿床的成矿物质来源于上地幔;成矿作用有3次,前2次为变质成矿作用,第3次为蚀变成矿作用,以后者为主;蚀变过程中,Ti、Fe、REE、B等元素发生了迁移,Ti的进一步富集、Ti与Fe的分离是重要的成矿因素;矿床的形成与板块运动密切相关。有利于成矿的大地构造环境和部位为:板块的缝合部位,蚀变带与基性(变质)岩层交叉处,蚀变带中部,B含量高处。  相似文献   

16.
Application of rutile thermometry to eclogites   总被引:5,自引:0,他引:5  
Summary Metamorphic temperatures can be derived from the Zr content in rutiles coexisting with quartz and zircon. To evaluate how well this recently calibrated rutile thermometer can be applied to eclogites, we analysed 8 samples that cover the whole temperature range of naturally-occurring eclogites (400–900 °C). Due to low concentrations expected at only 400 °C, very high precision (better than 5 percent on a 10 ppm level) secondary ion mass spectrometry (SIMS) is used in this study. In general, temperatures calculated from rutiles agree favourably with literature data as well as with our own estimates, based on several geothermobarometers and phase assemblages. However, the most important result of this study is the observation that temperatures calculated from 4–8 rutiles within a single sample always agree to within better than 25 °C, hence enforcing the claim that rutile thermometry is a powerful tool for relative temperature determinations. An erratum to this article is available at .  相似文献   

17.
18.
金红石微量元素电子探针分析   总被引:7,自引:3,他引:4  
金红石电子探针微量元素分析一般以人工合成的氧化物来作为监测标样,尚较缺乏对金红石标样进行系统地测试分析。本文运用CAMECA SXFive电子探针对金红石标样R10进行微量元素分析,根据金红石中主要微量元素在地质学中的应用,本次共分析了Al、Si、Ti、Fe、Cr、Zr、V、Nb、Ta等9个元素,Ti、Si元素作为本次分析的监测元素。本文通过调整加速电压和电流、背景和峰值测试时长以及干扰谱峰处理等来提高微量元素分析精度和准确度。分析结果显示,其中,Zr(780±29×10~(-6))(1SD,n=25)、Nb(2799±66×10~(-6))、V(1276±33×10~(-6))、Fe(4309±34×10~(-6))、Cr(718±31×10~(-6))的分析结果与二次离子质谱(SIMS)和激光剥蚀电感耦合等离子体质谱(LA-ICP-MS)的推荐值在误差范围内一致。大部分元素数据波动范围在10%以内,V、Fe元素的数据波动范围仅在5%以内。V、Nb和Fe测试精度比前人电子探针分析结果有较大提高。金红石Zr测试误差传递给金红石Zr温度计给出的温度误差一般22℃。本文还对金红石Zr温度计应用、提高Ta元素分析精度和准确度、金红石Fe~(3+)分析等问题进行了探讨。  相似文献   

19.
Crystallization thermometers for zircon and rutile   总被引:93,自引:20,他引:73  
Zircon and rutile are common accessory minerals whose essential structural constituents, Zr, Ti, and Si can replace one another to a limited extent. Here we present the combined results of high pressure–temperature experiments and analyses of natural zircons and rutile crystals that reveal systematic changes with temperature in the uptake of Ti in zircon and Zr in rutile. Detailed calibrations of the temperature dependencies are presented as two geothermometers—Ti content of zircon and Zr content of rutile—that may find wide application in crustal petrology. Synthetic zircons were crystallized in the presence of rutile at 1–2 GPa and 1,025–1,450°C from both silicate melts and hydrothermal solutions, and the resulting crystals were analyzed for Ti by electron microprobe (EMP). To augment and extend the experimental results, zircons hosted by five natural rocks of well-constrained but diverse origin (0.7–3 GPa; 580–1,070°C) were analyzed for Ti, in most cases by ion microprobe (IMP). The combined experimental and natural results define a log-linear dependence of equilibrium Ti content (expressed in ppm by weight) upon reciprocal temperature:
In a strategy similar to that used for zircon, rutile crystals were grown in the presence of zircon and quartz (or hydrous silicic melt) at 1–1.4 GPa and 675–1,450°C and analyzed for Zr by EMP. The experimental results were complemented by EMP analyses of rutile grains from six natural rocks of diverse origin spanning 0.35–3 GPa and 470–1,070°C. The concentration of Zr (ppm by weight) in the synthetic and natural rutiles also varies in log-linear fashion with T −1:
The zircon and rutile calibrations are consistent with one another across both the synthetic and natural samples, and are relatively insensitive to changes in pressure, particularly in the case of Ti in zircon. Applied to natural zircons and rutiles of unknown provenance and/or growth conditions, the thermometers have the potential to return temperatures with an estimated uncertainty of ±10 ° or better in the case of zircon and ±20° or better in the case of rutile over most of the temperature range of interest (∼400–1,000°C). Estimates of relative temperature or changes in temperature (e.g., from zoning profiles in a single mineral grain) made with these thermometers are subject to analytical uncertainty only, which can be better than ±5° depending on Ti or Zr concentration (i.e., temperature), and also upon the analytical instrument (e.g., IMP or EMP) and operating conditions.  相似文献   

20.
羊蹄子山-磨石山钛矿床的钛矿物主要为锐钛矿、金红石和钛铁矿。锐钛矿化学成分的特点是FeO含量明显比金红石要低;主要X光粉晶谱线为3.518(100)、2.377(14)和1.667(11);晶胞参数a()=3.786,c()=9.513;拉曼光谱谱线(cm-1)为516、395、195和143。金红石的主要X光粉晶谱线为3.250(100)、1.688(40)和2.488(29);晶胞参数为a()=4.595,c()=2.962;拉曼光谱谱线(cm-1)为610和446。钛铁矿的成分特点是富锰贫镁,与攀西地区岩浆型钒钛磁铁矿矿床中的钛铁矿正好相反。所有上述钛(铁)氧化物矿物学特征,进一步说明该矿床是在中元古代在海底与基性火山活动有关的热水沉积后经区域变质和局部又遭受后期热液改造而成。  相似文献   

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