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1.
Chromite ores formation is still a debated topic and, in this study, detailed analyses of major, minor elements by EMPA and Rare Earth Elements (REE) by SIMS, were performed on silicate inclusions detected in chromite grains of chromitite pods, enveloping dunites and on clinopyroxene of lherzolitic host rock of well known Trodoos chromite ores. Results show the complexity of relationships among lithologies that reflects the subtlety of genetic events and of chromite ore occurrence.Analyses of textural and chemical features have led to a better understanding of the chromite ore genetic process, that is related to a supra-subduction geodynamic setting where partial melting processes were overlapped by metasomatic events.Metasomatism, that marks the general genetic context, is characterized by the presence of a hydrated boninitic melt that favors the precipitation of chromite ores. Chromite ores, typical of ophiolite complexes and usually enveloped by dunite are, in this case, characterized by the presence of two different types of dunites whose geochemical differences are reflected by olivine mineral chemistry and by different REE patterns of analyzed clinopyroxenes. Such geochemical marks, related to different magmatic and metasomatic events, could be a main key for location of fertile or barren dunites in terms of chromite ore occurrence in the field.  相似文献   

2.
罗照华 《中国地质》2019,46(1):21-31
蛇绿岩侵位机制是板块构造理论中一直没有得到合理阐释的科学问题,制约了许多次级问题的解决。本文综述了已发表的关键资料和地质观察,提出了一个新的分析模型。蛇绿岩带的长距离延伸表明其形成过程与板块汇聚过程紧密相关;冈底斯岩浆弧的两期弧岩浆活动暗示汇聚板块边缘的构造性质曾经发生过转换;前人报道的玻安岩缺乏充分的地质学、岩石学和矿物学约束;强还原晶体群的普遍性暗示蛇绿岩侵位过程与大规模流体活动有关。据此,本文提出了一个由流体协助的蛇绿岩侵位模型,认为俯冲板块回卷、断离、流体-岩石圈相互作用、大洋岩石圈穹隆等过程是蛇绿岩侵位的基本控制因素。  相似文献   

3.
Podiform chromite ore deposits in ultramafic parts of ophiolite rock complexes can be detected using remote sensing data. This study focuses on the discrimination of chromite bearing mineralized zones using Landsat TM and Advance Spaceborne Thermal Emission and Reflection Radiometer (ASTER) satellite data in Abdasht ophiolite complex, south of Iran. Several image processing methods, including Log residual, Decorellation Stretch, Band ratio and Mixture-Tuned Matched-Filtering (MTMF) have been evaluated for lithological mapping using Landsat ETM and ASTER data. The outcome showed that TIR band ratios of ASTER can discriminate quartzite, carbonate and mafic–ultramafic rocks in the ophiolite complex. Log residual, Decorollation Stretch and MTMF methods were more capable than previous published ASTER methods specifically for lithological mapping at a regional scale. New geological map of Abdasht region was produced based on the interpretation of ASTER image processing results and field verification. Consequently, the proposed methods demonstrated the ability of ASTER and Landsat ETM data to provide information for detecting chromite host rock (serpentinized dunites) that is valuable for chromite prospecting in study area. Additionally, the techniques used in this study are subtle for exploration geologist and mine engineering to identify high-potential chromite-bearing zones in the ophiolite complex, minimizing costly and time-consuming field works.  相似文献   

4.
雅鲁藏布江缝合带位于青藏高原南部,是印度板块向欧亚板块俯冲的产物,代表着新特提斯洋岩石圈的残片。文章对西藏乃东地区雅鲁藏布江缝合带中蛇绿混杂岩的变质作用及岩石学特征进行了研究。该带总体呈近东西向延伸,受变地质体主要为晚侏罗—早白垩世泽当蛇绿岩。通过野外地质调查、岩相学及岩石地球化学分析,结合岩石成因研究及构造环境判别,认为泽当蛇绿岩由地幔橄榄岩、辉长质杂岩、镁铁质杂岩、海相沉积物及伴生铬铁矿和斜长花岗岩等组成,属低绿片岩相—高绿片岩相区域变质岩。  相似文献   

5.
美国内华达卡林成矿带的金矿地质特征   总被引:2,自引:0,他引:2  
卡林成矿带是北美规模最大的金矿富集带。本文旨在通过对此成矿带地质背景、岩石特征、构造特征与成矿特征的详尽研究 ,分析成矿作用机理 ,确定有利成矿控制因素 ,为在地质环境类似地区寻找金矿床提供理论依据。  相似文献   

6.
The chromitite-bearing peridotites of the Zambales mafic-ultramafic complex form the lowermost level of the Zambales ophiolite, which exposes a complete ophiolitic sequence. The chromitites occur close to the peridotite/gabbro transition zone.The chromite orebodies are structurally classified into three major types: (1) concordant tabular deposits, (2) strings of pods and (3) pocketlike deposits.Concordant tabular deposits show a gradational transition from chromitite to host rock (modal grading) and are characterized by the parallelism of ore and host-rock structures. Primary magmatic features like inch-scale layering, size grading, glomeroporphyric chromite aggregates, skeletal chromite growth and adcumulus growth (cumulus textures) are common.The concordant chromite bodies are often tectonically disrupted and boudined forming strings of pods or fault-controlled pocketlike deposits. With increasing tectonization chromite shows pull-apart textures and lineations (plastic deformation), shearing, prismatic jointing, brecciation and mylonitization (brittle deformation). Recrystallization of cataclastic chromite occurs on a microscopic scale.Plastic deformation is caused by mantle flow and/or the volume increase of the peridotites during serpentinization. The influence of mantle flow is indicated by the orientation of the pod strings and lineations in chromitite perpendicular to the ridge axis. Brittle deformation of chromite (cataclasis) and disruption by faults is related to the emplacement of the ophiolite.  相似文献   

7.
TheMuztagophioliteisdistributeddiscontinu ouslyalongthewest easttrendingMuztag Jingyuhu faultzoneintheEasternKunlunMountainofXin jiangUygurAutonomousRegion(Fig.1).The mountainiscomposedoftwoprincipalunitsofmeta morphicperidotitesandcumulates(Molnaretal.,1…  相似文献   

8.
Compilation of some new data on ophiolites for Greece and Yugoslavia, and published data from previous studies, indicate that platinum-group element (PGE) and gold concentrations in chromite ores are generally low, ranging from less than 100 ppb to a few hundred ppb. However, samples from several ophiolite complexes exhibit an enrichment (of a few ppm) (a) only in Os, Ir and Ru,(b) only in Pt and/or Pd or (c) in all PGE. This enrichment (up to 10s ppm) is mainly related with chromitites hosted in supra-Moho dunites and dunites of the uppermost stratigraphic levels of the mantle sequence and it seems to be local, independent of the chromitite major element composition and the chromite potential of the ophiolite complexes. The contents of PGE combined with less chalcophile elements (Ni, Co, Cu), the ratios of incompatible/compatible elements, and PGE-patterns provide evidence for discrimination between chromitites derived from primitive magmas and those derived from partially fractionated magmas, although they have a similar major element composition. Thus, they can be used for a stratigraphic orientation in the mantle sequence, and therefore for exploration targets. Moreover, PGE data offer valuable information for the evaluation of the chromite potential in ophiolite complexes. The most promising ophiolites seem to be those which apart from the petrological and geochemical characteristics indicating extensive degree of partial melting in the mantle source contain only one chromite ore type (the other type being only in small proportion) of limited compositional variation, in both major elements and PGE, low ratios of , while PGE-enriched chromitites in the mantle sequence are only occasionally present. In contrast, ophiolites which contain both high-Cr and -Al chromitites, and where their chalcophile element data implies relatively extensive fractionation trend are not good exploration targets for chromite ores, although they are related with a SSZ environment.  相似文献   

9.
王方国  杨君雅  陈莉 《地质通报》2009,28(12):1762-1768
综述了近年来青藏高原蛇绿岩、铬铁矿的调查研究进展及其成果。归纳了青藏高原蛇绿岩的展布特征,简述了蛇绿岩的时代、地球化学特征及其形成环境。在统计青藏高原铬铁矿床(点)的基础上回顾了一些典型矿床的勘查成果。最后讨论了青藏高原铬铁矿找矿的乐观前景。  相似文献   

10.
About 15 chromite bodies have been recognized in the Maqsad area of the Oman ophiolite. The occurrence in this area of three chromite bodies within the cumulate sequence must be integrated into the classification of Cassard et al. (1981) which presently explains only those pods lying in the uppermost mantle sequence (plastically deformed harzburgites and dunites). The occurrence of chromite bodies within the cumulates and the abundance of chromite in the Maqsad area are related to the exceptional magmatic activity and the unusual plastic-flow pattern particular to this area. It was probably a feeding zone along the oceanic spreading center sitting on top of a mantle diapir.  相似文献   

11.
Chromite deposits in Iran are located in the ophiolite complexes, which have mostly podiform types and irregular in their settings. Exploration for podiform chromite deposits associated with ophiolite complexes has been a challenge for the prospectors due to tectonic disturbance and their distribution patterns. Most of Iranian ophiolitic zones are located in mountainous and inaccessible regions. Remote sensing approach could be applicable tool for choromite prospecting in Iranian ophiolitic zones with intensely rugged topography, where systematic sampling and conventional geological mapping are limited. In this study, Landsat Thematic Mapper (TM) and Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) satellite data were used for chromite prospecting and lithological mapping in the Neyriz ophiolitic zone in the south of Iran. Image transformation techniques, namely decorrelation stretch, band ratio and principal component analysis (PCA) were applied to Landsat TM and ASTER data sets for lithological mapping at regional scale. The RGB decorrelated image of Landsat TM spectral bands 7, 5, and 4, and the principal components PC1, PC2 and PC3 image of ASTER SWIR spectral bands efficiently showed the occurrence of major lithological units in the study area at regional scale. The band ratios of 5/3, 5/1, 7/5 applied on ASTER VNIR‐SWIR bands were very useful for discriminating most of rock units in the study area and delineation of the transition zone and mantle harzburgite in the Neyriz ophiolitic complex. Spectral Angle Mapper (SAM) technique was implemented to ASTER VNIR‐SWIR spectral bands for detecting minerals of rock units and especially delineation of the transition zone and mantle harzburgite as potential zones with high chromite mineralization in the Neyriz ophiolitic complex. The integration of information extracted from the image processing algorithms used in this study mapped most of lithological units of the Neyriz ophiolitic complex and identified potential areas of high chromite mineralization (transition zone and mantle harzburgite) for chromite prospecting targets in the future. Furthermore, image processing results were verified by comprehensive fieldwork and laboratory analysis in the study area. Accordingly, result of this investigation indicate that the integration of information extracted from the image processing algorithms using Landsat TM and ASTER data sets could be broadly applicable tool for chromite prospecting and lithological mapping in mountainous and inaccessible regions such Iranian ophiolitic zones.  相似文献   

12.
Conventional methods for the estimation of mineral resources potential are broadly subdivided into two groups: subjective models based upon ore genetic theories and objective models based upon multiple geological observations. This paper examines some objective means that brings the two types of model together and jointly utilizes the information from both ore genesis and geological observations in delineation of promising areas for mineral exploration. These promising areas are here referred to as intrinsic geological units. They are so-called because they are not identified directly with respect to mineral deposits, but delineated in terms of some critical genetic factor, a necessary condition for formation of the mineral deposits. Four major steps are involved in this analysis. First, establish the structure of critical genetic factor-recognition criteria-multiple geodata for the deposit type of interest. Next, estimate probabilities of occurrence of each of the recognition criteria based upon geological observations. Third, a synthesized probability measure for occurrence of critical genetic factor is determined as an optimum linear combination of the probabilities estimated in the second stage. Finally, intrinsic geological units are delineated by optimally discretizing the probability measure for the critical genetic factor. This estimation procedure is formulated into a three-stage optimization model: logistic regression-quadratic programming-optimum discretization, which is demonstrated with a case study on epithermal Au-Ag mineral deposits in the Walker Lake quadrangle of California and Nevada. In this case study, heat source is selected as the critical genetic factor and it is identified by three selected recognition criteria: Au-Ag mineral occurrence, Tertiary intrusive, and hydrothermal alteration. The intrinsic geological units for epithermal Au-Ag deposits are delineated on the basis of six different preprocessed and integrated geological, geochemical, and geophysical fields.  相似文献   

13.
前人报道在西藏中生代和俄罗斯极地乌拉尔早古生代蛇绿岩地幔橄榄岩铬铁矿中发现了金刚石等深部地幔矿物,认为需重新考虑铬铁矿浅部成因的传统认识。为了查明不同造山带蛇绿岩的铬铁矿中金刚石等深部矿物的分布规律和豆荚状铬铁矿的成因,笔者开展了内蒙古贺根山晚古生代蛇绿岩中的铬铁矿床的人工重砂矿物学研究,本研究获得约2000 kg的内蒙古贺根山蛇绿岩铬铁矿石样品,对所采样品开展人工重砂选矿,表明该铬铁矿矿石样品中至少有金刚石、碳硅石及其他自然元素类、金属互化物类、氧化物类、硫化物类、硅酸盐类等30余种矿物。内蒙—大兴安岭造山带晚古生代的内蒙古贺根山蛇绿岩带铬铁矿石中,发现金刚石等深部地幔矿物表明,贺根山铬铁矿可能为深部成因。  相似文献   

14.
Mara.  AA 《地学前缘》1999,6(1):0-0
文章专门讨论与特定成岩作用伴生的铬、铂和硫化物矿床形成的内生因素。该类成岩作用对矿石富集有显著影响。矿床的巨大规模起因于与广泛强烈的成岩过程有关的特殊的成矿作用。这些作用导致产在超基性杂岩中的特殊纯橄榄岩(铬矿石)、基性超基性层状侵入体中的低硫层和铁镁橄榄石纯橄榄岩(铂族金属矿床)的形成,以及富铁火成分异岩的透岩浆硫化作用(Cu Ni硫化物和Cu Zn Pb硫化物矿石)。还根据巨型矿床的成因模型提出了矿物学岩石学的找矿标志  相似文献   

15.
铬铁矿是关键金属铬唯一可经济利用的自然资源,主要有层状铬铁矿和蛇绿岩中的豆荚状铬铁矿两种类型,其中豆荚状铬铁矿矿体规模小、发育不规律,是一个长期存在的勘探难题。由于铬铁矿特殊的经济战略地位,美国、欧洲、苏联和中国都非常重视铬铁矿地球物理勘探。铬铁矿地球物理探测技术发展始于20世纪30年代,至20世纪80年代,发展了以重力、磁法为主导的铬铁矿地球物理勘探技术,地震、电法也被应用。这一阶段在苏联乌拉尔肯皮尔赛等超大型蛇绿岩型隐伏铬铁矿勘探取得重大突破,在其他矿区取得一定的进展。自21世纪以来,高精度的便携式仪器和新兴地球物理技术逐渐运用到铬铁矿地球物理勘探,综合地球物理成为铬铁矿勘探的主流方法,在我国罗布莎等多个岩体隐伏铬铁矿勘探中取得突破,在印度、阿尔巴尼亚等国家也取得进展。本文回顾了铬铁矿地球物理勘探的发展历程,综述了铬铁矿岩石物理特征与测量方法、重磁勘探主要应用及存在问题、电磁法勘探的主要方法,并重点介绍了音频大地电磁测深在罗布莎铬铁矿的探测效果和电磁法勘探模式,展望了张量CSAMT技术、磁异常模量反演、高光谱遥感、高密度激电、无人机物探等有望在铬铁矿地球物理勘探中发挥重要作用的前沿...  相似文献   

16.
新疆东昆仑阿其克库勒湖西缘地区蛇绿岩的确证   总被引:6,自引:0,他引:6  
新疆东昆仑阿其克库勒湖西缘出露了一套超基性—基性岩。该蛇绿岩的野外地质、岩石学以及岩石化学特征表明它们是由变质橄榄岩和堆晶岩两大单元组成的蛇绿岩 ,是否存在蛇绿岩的其它单元值得进一步研究。同时 ,这些特征表明其与青海东昆仑清水泉蛇绿岩相似 ,指示它们可能为同一洋壳的残余。  相似文献   

17.
古特提斯多岛洋洋-陆俯冲:木孜塔格蛇绿岩的矿物学证据   总被引:2,自引:1,他引:1  
前期研究认识到新疆东昆仑木孜塔格蛇绿岩形成在俯冲带环境.为了进一步研究该俯冲带的类型,对新疆东昆仑木孜塔格蛇绿岩变质橄榄岩的岩石学和矿物学特征进行了分析.薄片观察发现变质橄榄岩的橄榄石以变质残余、变质重结晶和斜方辉石熔融结晶3种结构存在,但探针分析发现它们具有稳定且低Fo值(87.8~89.5);斜方辉石发育变质残余和熔融残余结构,En较低(88~90),Al2O3含量变化大(2.90%~5.13%);尖晶石为他形-半自形结构,其Cr#(=Cr/(Cr Al))集中分布在0.508~0.723和0.100~0.118两个范围内.根据这些来自岩石学和矿物学的证据,并结合该蛇绿岩的构造背景与时代,认识到该蛇绿岩形成在大洋向具有厚陆壳的大陆弧俯冲的俯冲带环境,为新疆东昆仑地区古特提斯多岛洋洋-陆俯冲的结果.  相似文献   

18.
前期研究认识到新疆东昆仑木孜塔格蛇绿岩形成在俯冲带环境.为了进一步研究该俯冲带的类型,对新疆东昆仑木孜塔格蛇绿岩变质橄榄岩的岩石学和矿物学特征进行了分析.薄片观察发现变质橄榄岩的橄榄石以变质残余、变质重结晶和斜方辉石熔融结晶3种结构存在,但探针分析发现它们具有稳定且低Fo值(87.8~89.5);斜方辉石发育变质残余和熔融残余结构,En较低(88~90),Al2O3含量变化大(2.90%~5.13%);尖晶石为他形一半自形结构,其Cr^#(=Cr/(Cr+Al))集中分布在0.508~0.723和0.100~0.118两个范围内.根据这些来自岩石学和矿物学的证据,并结合该蛇绿岩的构造背景与时代,认识到该蛇绿岩形成在大洋向具有厚陆壳的大陆弧俯冲的俯冲带环境,为新疆东昆仑地区古特提斯多岛洋洋一陆俯冲的结果.  相似文献   

19.
中国蛇绿岩研究的现状及今后的研究方向   总被引:12,自引:0,他引:12  
经过20多年的努力,中国蛇绿岩研究已取得了不少成绩。今后的研究工作中,应强调对中国典型蛇绿岩的研究,即结合我国的地质背景,以构造、岩石、地球化学互相配合,进行多学科、多手段的“立典式”研究;重视对蛇绿岩岩浆成因的研究,进而探索地球深部地幔过程与板块扩张机制;深入挖掘蛇绿岩各岩石单元中
所赋含的信息,为板块运动学和动力学提供更合理的解释;而对前寒武纪蛇绿岩的研究,尚处于探索阶段,宜十分谨慎。  相似文献   

20.
The Zedang and Luobusa ophiolites are located in the eastern section of the Yalung Zangbo ophiolite belt,and they share similar geological tectonic setting and age.Thus,an understanding of their origins is very important for discussion of the evolution of the Eastern Tethys Ocean.There is no complete ophiolite assemblage in the Zedang ophiolite.The Zedang ophiolite is mainly composed of mantle peridotite and a suite of volcanic rocks as well as siliceous rocks,with some blocks of olivinepyroxenite.The mantle peridotite mainly consists of Cpx-harzburgite,harzburgite,some lherzolite,and some dunite.A suite of volcanic rocks is mainly composed of caic-aikaline pyroclastic rocks and secondly of tholeiitic pillow lavas,basaltic andesites,and some boninitic rocks with a lower TiO2 content (TiO2 < 0.6%).The pyroclastic rocks have a LREE-enriched REE pattern and a LILE-enriched (compared to HFSE) spider diagram,demonstrating an island-arc origin.The tholeiitic volcanic rock has a LREE-depleted REE pattern and a LILE-depleted (compared to HFSE) spider diagram,indicative of an origin from MORB.The boninitic rock was generated from fore-arc extension.The Luobusa ophiolite consists of mantle peridotite and mafic-ultramaflc cumulate units,without dike swarms and volcanic rocks.The mantle peridotite mainly consists of dunite,harzburgite with low-Opx (Opx < 25%),and harzburgite (Opx > 25%),which can be divided into two facies belts.The upper is a dunite-harzburgite (Opx < 25%) belt,containing many dunite lenses and a large-scale chromite deposit with high Cr203; the lower is a harzburgite (Opx >25%) belt with small amounts of dunite and lherzolite.The Luobusa mantle peridotite exhibits a distinctive vertical zonation of partial melting with high melting in the upper unit and low melting in the lower.Many mantle peridotites are highly depleted,with a characteristic U-shaped REE pattern peculiar to fore-arc peridotite.The Luobusa cumulates are composed of wehrlite and olivine-pyroxenite,of the P-P-G ophiolite series.This study indicates that the Luobusa ophiolite was formed in a fore-arc basin environment on the basis of the occurrence of highly depleted mantle peridotite,a high-Cr2O3 chromite deposit,and cumulates of the P-P-G ophiolite series.We conclude that the evolution of the Eastern Tethys Ocean involved three stages:the initial ocean stage (formation of MORB volcanic rock and dikes),the forearc extension stage (formation of high-Cr203 chromite deposits and P-P-G cumulates),and the islandarc stage (formation of caic-alkaline pyroclastic rocks).  相似文献   

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