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1.
西藏甲玛铜多金属矿床地质地球化学特征及成因浅析   总被引:6,自引:0,他引:6  
郑文宝 《地质与勘探》2010,46(6):985-994
甲玛铜多金属矿床是冈底斯成矿带内产出的超大型矿床,其铜、钼、铅+锌、伴生金、伴生银资源量均达到大型及以上规模,该矿床也是成矿系列理论指导实践取得找矿突破的典型矿床。矿区的矽卡岩型主矿体呈层状、厚板状产于下白垩统林布宗组砂板岩、角岩(矿体顶板)与上侏罗统多底沟组灰岩、大理岩(矿体底板)的层间因推覆-滑覆构造引起的扩容空间内,矿体走向延长超过3000m,倾向延伸超过2200m,最大真厚度达250m。除了矽卡岩型铜多金属矿体是主要矿体类型外,矿区角岩型钼铜矿体与斑岩型钼铜矿体已经初具规模。角岩型矿体主要呈筒状分布于0~40线矽卡岩型矿体上部的角岩中,平面面积约0.8km2,矿体垂向最大延伸超过800m;斑岩型矿体已初见端倪,基本位于矽卡岩型矿体下部,但也有部分穿切矽卡岩型矿体。矿床中矿石的主要构造特征为浸染-细脉状,结构特征以热液交代作用形成的结构为主。矿石中主要的矿石矿物包括黄铜矿、斑铜矿、辉钼矿、黝铜矿和辉铜矿等,脉石矿石以矽卡岩矿物和石英为主。通过不同类型矿石中辉钼矿的Re-Os同位素测年,甲玛铜多金属矿床的形成时代介于18~10Ma之间,与青藏高原后碰撞伸展阶段成矿作用有关。稀土元素地球化学特征表明甲玛矿区矽卡岩是由斑岩结晶分异过程中分泌出的岩浆热液交代大理岩而形成。文章通过对甲玛铜多金属矿床地质、地球化学特征的详细分析和讨论,提出该矿床成因是与斑岩成矿作用有关的斑岩-矽卡岩-角岩型矿床。  相似文献   

2.
西藏甲玛铜多金属矿床深部斑岩矿体找矿突破及其意义   总被引:7,自引:0,他引:7  
甲玛铜多金属矿是西藏冈底斯成矿带中东段勘查程度最高、成矿元素与矿体类型复杂的超大型斑岩-矽卡岩型矿床。通过4年多、近350 个钻孔的验证,不仅实现了矽卡岩矿体的找矿突破,同时在0-40线深部发现了产于二长花岗斑岩与石英闪长玢岩中的斑岩钼(铜)矿体,建立了“四位一体”的找矿勘查模式。斑岩矿体赋存标高一般处于4 600 m以下,矿体走向NW-SE,倾向NE,近直立,矿体垂向延伸大于350 m;斑岩矿石以发育细脉-浸染状、网脉状构造为特征;矿石中的矿石矿物主要为黄铜矿与辉钼矿,少见斑铜矿;脉石矿物主要为石英。初步查明:与铜矿化有关的含矿岩体主要为偏中性的石英闪长玢岩,蚀变以典型的细粒热液黑云母交代角闪石斑晶和基质而成的黑云母化蚀变为主;与钼矿化有关的含矿岩体主要为二长花岗斑岩,蚀变以硅化为主,次为绿帘石化、泥化和钾化。斑岩体与碳酸盐岩接触带常产出厚度超过200 m的巨厚矽卡岩矿体,且在岩体一侧有内矽卡岩产出。甲玛深部斑岩矿体的发现不仅证实了“斑岩-矽卡岩型”的矿床成因观点,而且完善了甲玛矿床成矿模式与勘查模型。  相似文献   

3.
鞍山黑石砬子铁矿地质特征   总被引:1,自引:1,他引:0  
鞍山黑石砬子铁矿床位于东鞍山铁矿与大孤山铁矿之间,是近年来鞍本地区发现的大型铁矿床.Ⅱ-1号矿体是主要的工业矿体,延长2000余米,水平厚度百余米,控制延深1000余米.有用矿物主要为磁铁矿和赤铁矿,矿体品位在走向和垂向上基本稳定,但FeO有随深度增加而增加的趋势.矿石化学成分和矿物组成简单,有害物质含量低,矿体中夹石率较低,属于沉积变质型的鞍山式铁矿床.  相似文献   

4.
辽宁省灯塔市大达连沟铁矿床位于灯塔市铧子镇,为一隐伏的大型铁矿床,埋深为1 360~1 430m,已控制矿体走向延长1 600m,倾斜延深580m,平均厚度为127m。矿体呈陡立厚板状体,夹石很少,为单一矿体。矿石自然类型为透闪-阳起磁铁石英岩,工业类型为弱磁性铁矿石。矿石品位在走向和垂向上基本稳定,mFe随着深度增加而减少,有害组分含量低。矿床为典型的鞍山式铁矿床,成因类型属沉积-变质型铁矿床。  相似文献   

5.
蒙山地区位于江西西部,是我国南方较大的硅灰石矿产资源基地,已探明的硅灰石资源储量约占全国的1/5。区内硅灰石矿体赋存于燕山早期侵入形成的蒙山花岗岩体的外接触带300m范围的下二叠统茅口组含燧石结核、燧石条带灰岩中;矿体多呈似层状、透镜状产出,走向长100~400m,厚度2~20m;矿石中主要矿物为硅灰石、石英、方解石,硅灰石含量一般为55%~70%,矿石化学成分主要为SiO2和CaO。区内燧石灰岩提供了硅灰石形成的硅钙质组合、中深成岩浆岩为钙硅化学合成硅灰石提供了反应热液是两个主要的控矿因素,矿床属层控热变质交代型矿床。  相似文献   

6.
喀拉沙特金矿产于构造破碎蚀变带中。通过普查工作共圈定2个金矿体和1个金矿化体,I号金矿体产状25。<84。,长80m,水平厚度0.12~2.40m,倾向延深111.40m。品位1.63×10“~2.98×10-^6,平均品位1.62×10一^6。Ⅱ号金矿体产状168。么82。,长80m,水平厚度0.80~1.02m,平均厚度0.91m,倾向延深115.27m,品位1.72X10一^6~4.44×10一^6,平均品位2.83X10一^6。通过对矿床地质特征的研究,认为该矿床属沉积一变质型金矿床。  相似文献   

7.
西藏甲玛铜多金属矿床斑铜矿特征及其成因意义   总被引:6,自引:2,他引:4  
甲玛矿床是中国国内少见的以斑铜矿为主要含铜矿物的产于斑岩成矿系统内的铜多金属矿床.斑铜矿是该矿床内普遍存在的重要铜矿物之一,广泛分布于矽卡岩型矿石、(矽卡岩化)大理岩型矿石中,有少量产于角岩型矿石中.在硅灰石矽卡岩型矿石内,斑铜矿分布最广,含量也最高,部分矿段中斑铜矿的含量高达7596以上,并与硅灰石呈共生或伴生关系....  相似文献   

8.
甘肃省肃北县金庙沟南硅灰石矿床产于敦煌岩群C岩组三岩段的石英硅灰大理岩与花岗岩的接触带及其附近,矿体呈透镜状、似层状产出。矿区共圈出硅灰石矿体16个,矿体长96~818 m,矿体厚度在1.20~12.33 m之间,矿石品位为φ(硅灰石)=35.53%~51.62%,含矿岩石为石英硅灰石大理岩。矿石的类型可分为团块状硅灰石-方解石-石英型矿石、薄层状硅灰石-方解石-石英型矿石。在矿床地质特征研究的基础上,对矿床成因类型进行了分析,提出了找矿标志,对甘肃北山寻找同类矿床具有借鉴意义。  相似文献   

9.
湖南东坡矿田内矿产资源丰富,但已探明的铅锌资源严重危机。在综合研究该区成矿地质条件、矿床特征、成矿规律的基础上,圈出3个找矿靶区,即妹子垅、牛角垅及塘渣水预测区。根据本区矽卡岩型钨锡多金属矿、脉状铅锌矿的产状及矿石矿物组合特征,确定的勘查思路为:以已知矿床深边部为主,兼顾外围;以铅锌矿为主,兼顾钨锡多金属矿;以地质方法为主,物探方法相结合。根据本区的实际情况,选用了地面高精度磁测、激电测深、坑探、钻探等工作手段。通过物探工作,在区内圈出22个磁异常,在妹子垅发现低阻高极化体--矽卡岩型钨锡矿化体。通过工程揭露,在妹子垅预测区见到厚度10.86~32.00 m的矽卡岩型钨锡多金属矿体,矿床规模可达大型。塘渣水预测区,Ⅱ4矿体新增333+334类Pb+Zn资源量8.23×104t;500中段发现水平厚度103 m的矽卡型钨锡多金属矿体,矿床远景规模可达大型。牛角垅预测区,见到厚度大(3.58~9.37 m)、品位富(平均品位Pb 14.94%,Zn 2.22%,Ag 1 444.44×10-6)的铅锌矿,规模达中型。通过综合研究,笔者认为东坡矿田深部及外围找矿前景好,在横山岭、蛇形坪及玉皇庙的深部,具有寻找矽卡岩型、云英岩型锡多金属矿的潜力;在沙坪里、金狮岭、古塘一带,中浅部是寻找铅锌银矿,深部是寻找矽卡岩型或蚀变岩型多金属矿的有利地段。  相似文献   

10.
瓦子屋埸金锑钨矿床,由当地群众采锑时发现,经武警黄金16支队勘查,确定为金锑钨矿床,并提交了相应的地质报告。该矿床地处白马山岩体北东部,赋存于震旦系江口组、南陀组内,为含矿石英脉型矿床。已发现并评价了三条矿带:Ⅱ号矿带长400m余,宽1.5~5m,走向近东西,倾向北,倾角80°,见金、钨矿化显示;Ⅱ号矿带长600m余,最宽7m,呈北西走向;Ⅰ号矿带与Ⅱ号矿带近于平行,倾向南西,与Ⅲ号矿带相反。经勘查,在Ⅰ、Ⅲ号矿带各圈出1个主矿体,长138~217m,厚0.24~4.54m,金品位达13.21~16.73g/t,锑品位7.33~15.63%,WO_3品位0.184  相似文献   

11.
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414.  相似文献   

12.
Well investigated platforms have been selected in each continent, and the history of Cretaceous transgressions and regressions there is concisely reviewed from the available evidence. The factual records have been summarized into a diagram and the timing of the events correlated between distant as well as adjoining areas.On a global scale, major transgressions were stepwise enlarged in space and time from the Neocomian, via Aptian-Albian, to the Late Cretaceous, and the post-Cretaceous regression was very remarkable. Minor cycles of transgression-regression were not always synchronous between different areas. Some of them were, however, nearly synchronous between the areas facing the same ocean.Tectono-eustasy may have been the main cause of the phenomena of transgression-regression, but certain kinds of other tectonic movements which affected even the so-called stable platforms were also responsible for the phenomena. The combined effects of various causes may have been unusual in the Cretaceous, since it was a period of global tectonic activity. The slowing down of this activity followed by readjustments may have been the cause of the global regression at the end of the Cretaceous.  相似文献   

13.
The Afyon stratovolcano exhibits lamprophyric rocks, emplaced as hydrovolcanic products, aphanitic lava flows and dyke intrusions, during the final stages of volcanic activity. Most of the Afyon volcanics belong to the silica-saturated alkaline suite, as potassic trachyandesites and trachytes, while the products of the latest activity are lamproitic lamprophyres (jumillite, orendite, verite, fitztroyite) and alkaline lamprophyres (campto-sannaite, sannaite, hyalo-monchiquite, analcime–monchiquite). Afyon lamprophyres exhibit LILE and Zr enrichments, related to mantle metasomatism.  相似文献   

14.
正20140751 Guo Xincheng(Geological Party,BGMRED of Xinjiang,Changji 831100,China);Zheng Yuzhuang Determination and Geological Significance of the Mesoarchean Craton in Western Kunlun Mountains,Xinjiang,China(Geological Review,ISSN0371-5736,CN11-1952/P,59(3),2013,p.401-412,8  相似文献   

15.
正20141058 Chen Ling(Key Laboratory of Mathematical Geology of Sichuan Province,Chengdu University of Technology,Chengdu610059,China);Guo Ke Study of Geochemical Ore-Forming Anomaly Identification Based on the Theory of Blind Source Separation(Geosci-  相似文献   

16.
SEISMIC GEOLOGY     
正20141334 Chen Kun(Institute of Geophysics,China Earthquake Administration,Beijing100081,China);Yu Yanxiang Shakemap of Peak Ground Acceleration with Bias Correction for the Lushan,Sichuan Earthquake on April20,2013(Seismology and Geology,ISSN0253-4967,CN11-2192/P,35(3),2013,p.627-633,2 illus.,1 table,9 refs.)Key words:great earthquakes,Sichuan Province  相似文献   

17.
正20141624 Cai Xiongfei(Key Laboratory of Geobiology and Environmental Geology,Ministry of Education,China University of Geosciences,Wuhan 430074,China);Yang Jie A Restudy of the Upper Sinian Zhengmuguan and Tuerkeng Formations in the Helan Mountains(Journal of Stratigraphy,ISSN0253-4959CN32-1187/P,37(3),2013,p.377-386,5 illus.,2 tables,10 refs.)  相似文献   

18.
PALEONTOLOGY     
正20142263Lü Shaojun(Geological Survey of Jiangxi Province,Nanchang 330030,China)Early-Middle Permian Biostratigraphical Characteristics in Qiangduo Area,Tibet(Resources SurveyEnvironment,ISSN1671-4814,CN32-1640/N,34(4),2013,p.221-227,2illus.,2tables,22refs.)Key words:biostratigraphy,Lower Permian,Middle Permian,Tibet  相似文献   

19.
正20142560Hu Hongxia(Regional Geological and Mineral Resources Survey of Jilin Province,Changchun 130022,China);Dai Lixia Application of GIS Map Projection Transformation in Geological Work(Jilin Geology,ISSN1001-2427,CN22-1099/P,32(4),2013,p.160-163,4illus.,2refs.)  相似文献   

20.
GEOCHEMISTRY     
正20140692 Duo Tianhui(No.402 Geological Team,Exploration of Geology and Mineral Resources of Sichuan Authority,Chengdu611730,China);Wang Yongli Computer Simulation of Neptunium Existing Forms in the Groundwater(Computing Techniques for Geophysical and Geochemical Exploration,ISSN1001-1749,CN51-1242/P,35(3),  相似文献   

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