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1.
驱龙斑岩铜(钼)矿床位于西藏冈底斯成矿带东段,具有巨大找矿潜力。这里主要通过岩石地球化学分析,确定矿床含矿斑岩属于过铝质高钾钙碱性岩石,具有明显的埃达克岩岩浆亲合性,并可初步断定驱龙及冈底斯成矿带典型斑岩铜矿床的含矿斑岩具备C型埃达克岩特征,其构造背景应为碰撞造山期后的伸展条件,这将对该带成矿环境的深入研究和进一步找矿有所启示。  相似文献   

2.
东准噶尔蒙西斑岩型铜钼矿床地质地球化学特征   总被引:3,自引:1,他引:2  
王军  聂风军  刘勇 《中国地质》2010,37(4):1151-1161
蒙西斑岩型铜钼矿床位于古亚洲洋成矿域准噶尔—南蒙古成矿带北塔山—琼河坝铜、镍、金、铁成矿区,是东噶尔琼河坝矿集区有新突破的斑岩铜钼矿床之一。笔者从蒙西斑岩型铜钼矿床形成的地质背景、矿床地质特征和地球化学方面入手,分析认为含矿斑岩主要为一套中晚志留世的中酸性岩石,围岩为中-上奥陶统荒草坡群(O2-3hcq),是早古生代的斑岩铜矿,而不是前人认为的晚古生代斑岩铜矿床。成矿期次主要分为黄铁矿-石英、黄铜矿-黄铁矿-石英和碳酸岩-石英3个阶段。矿石含70%多黄铁矿,15%的黄铜矿,还有少量磁铁矿和辉钼矿。次生矿物有孔雀石、褐铁矿和蓝铜矿。矿石中矿物组合显示中-低温特征。元素地球化学特征表明,蒙西铜钼矿床的岩石属高铝高钠钙碱性花岗斑岩,大离子亲石元素Sr、K、Rb、Ba、Th等相对富集,高场强元素Nb、Ta、Hf相对亏损。(Yb+Nb)-Rb和Y-Nb判别图解表明岩石形成于火山弧。(R1-R2)构造图解表明为同碰撞期花岗岩,由此可以初步确认该地区主要侵入岩形成于同碰撞壳源参与的火山弧构造环境。所以蒙西斑岩型铜钼矿床的成矿构造属性为同碰撞期大陆岛弧,说明了东准噶尔为早古生代存在构造-成矿作用。  相似文献   

3.
跃进山铜金矿床是完达山活动带的典型矿床,位于密山—敦化深断裂北侧。本文对含矿花岗斑岩开展了锆石LA-ICP-MS U-Pb测年、主量和微量元素的研究,厘定岩体的形成时代,探讨了成矿构造背景。结果表明与成矿密切相关的花岗斑岩的年龄为(109.17±0.91)Ma。它们为过铝质钙碱性系列岩石,富集Rb、Ba、La、Nd、Hf等元素,亏损Nb、Sr、P、Ti等元素,具俯冲带岩浆岩的基本特征,这些暗示它们形成于岛弧或活动大陆边缘环境。结合岩体的地球化学特征和完达山成矿带的构造岩浆演化,认为该矿床形成于岛弧构造背景,其形成与中生代太平洋的俯冲及早白垩世晚期东亚东部岩浆活动陆缘迁移、构造单元转化有关。  相似文献   

4.
中蒙边境及邻区典型斑岩型铜矿地球化学特征概述   总被引:1,自引:0,他引:1  
依据前人对中蒙边境各典型斑岩型铜矿床的研究成果,对中蒙边境古亚洲洋成矿域内典型斑岩型铜矿床的含矿岩体进行了地球化学探讨,结果表明:1)区内岩石属于钙碱性-高钾钙碱性系列、低铝质岩石;2)岩石均呈现出轻稀土富集的右倾型模式,重稀土分布平坦,岩石矿化蚀变后出现明显的负Eu异常,同位素结果表明均来自地幔的部分熔融;3)区内矿床均形成于岛弧环境,矿床的形成具有多期、多源、多构造变化特征,是特定时期地壳演化阶段构造-岩浆-热液活动的产物.通过对中蒙边境典型斑岩铜矿床地球化学的探讨,以期为区内斑岩型铜矿床的找寻和评价提供参考.  相似文献   

5.
色那铜金矿是多龙矿集区内新近发现的又一个具有巨大找矿潜力的斑岩型矿床。在详细野外地质调查的基础上对区内与成矿具有密切关系的石英闪长玢岩体进行了岩石地球化学特征研究。结果表明区内斑岩为准铝质—过铝质岩类,高钾钙碱性—钙碱性系列,属于I型花岗岩类。稀土元素配分曲线显示为以富集轻稀土为特征的右倾型,且轻稀土分馏明显,而重稀土分馏不显著;δEu=0.89~1.05,显示无明显Eu异常,表明斜长石的结晶分异作用不明显;δCe介于0.84~1.51之间,平均值为1.08,无明显Ce异常。微量元素总体富集大离子亲石元素Rb、K、La、Sr、Sm,相对亏损高场强元素Nb、Ta、Zr、Hf、Ti等,显示出岛弧岩浆特征,微量元素构造环境判别显示其形成于岛弧环境。结合区域构造背景演化,表明色那铜金矿床可能形成于班公湖-怒江特提斯洋北向俯冲阶段。  相似文献   

6.
新疆希勒库都克铜钼矿床地质特征和成因探讨   总被引:4,自引:0,他引:4  
希勒库都克为近年来发现的一个以钼为主的铜钼矿床.在对矿床地质背景、矿区地质特征、矿体和矿石特征、矿化阶段和分带、围岩蚀变及矿床地球化学研究基础上,认为希勒库都克矿床以铜-钼组合、细脉浸染状矿化为特征,成矿与中酸性(次火山)斑岩脉有关,围岩蚀变具斑岩矿床的分带特征.成矿物质来自含矿斑岩,成矿流体来自岩浆水和天水混合.成矿温度和盐度较高,属斑岩铜钼矿床成因.辉钼矿Re-Os等时线年龄为(327.1±2.9)Ma.进一步研究表明,该矿床含矿斑岩锆石U-Pb年龄为(329.2±8.2)Ma,SiO2在70.37%~73.46%,K2O在3.65%~3.96%,铝饱和指数(A/CNK)为0.99~1.03,σ为1.48~1.87,属弱过铝质高钾钙碱性系列岩石.矿床产于后碰撞构造环境,在新疆北部这类斑岩铜钼矿床具良好的找矿潜力.  相似文献   

7.
青海"三江"北段斑岩型钼铜成矿带地处青海南部地区,区内呈NW-SE向展布一系列新生代具钼铜矿化的岩体。通过对具有代表性的纳日贡玛、陆日格、打古贡卡含矿斑岩地球化学、Sr-Nd-Pb同位素特征的研究,表明"三江"北段含矿斑岩主要为过铝质的高钾钙碱性-钾玄岩系列;微量元素配分曲线总体呈右倾型,大离子亲石元素(LILE)富集,高场强元素(HFSE)亏损,具有较弱的Eu负异常,Sr-Nd-Pb同位素处于亏损地幔(MORB)与富集地幔的演化曲线上,被俯冲板片流体所交代的富集地幔可能为岩浆的源区。同时,"三江"北段斑岩源区同位素更向亏损地幔端员靠拢,而软流圈物质注入量的多少则导致了"三江"北段成矿带、玉龙成矿带岩石地球化学特征的差异。以纳日贡玛大型钼铜斑岩矿床为中心的青海南部"三江"北段斑岩型钼铜矿带的确立,暗示在青海南部仍然具有寻找大型斑岩型及岩浆期后热液型矿床的潜力。  相似文献   

8.
通过分析四川容须卡伟晶岩型锂多金属矿床中酸性侵入岩和伟晶岩的地球化学特征,探讨其成矿地层、构造及岩浆岩等成矿地质条件。该矿床中酸性侵入岩为钙碱性准铝质岩石,属于Ⅰ型花岗岩系列,伟晶岩属钙碱性强过铝质岩石,二者的稀土和微量元素地球化学特征差异明显。中酸性侵入岩形成于后碰撞构造环境,与松潘—甘孜造山带碰撞造山作用有关,其物质来源可能为地壳物质的部分熔融,同时有少量幔源物质加入,伟晶岩与中酸性侵入岩可能为同源岩浆分异演化的产物。区域性推覆造山运动形成的褶皱、断层及穹隆,为含矿热液的充填和成矿元素的富集提供了有利空间。富含挥发分及稀有金属的熔体侵位于围岩,渗透率较小的泥质岩限制了热量的扩散及成矿有利物质的流失,熔体缓慢固结,形成含矿伟晶岩。  相似文献   

9.
打古贡卡斑岩型铜钼矿位于青海省南部三江北段,属青海省重要的斑岩型铜钼矿成矿带中。本文对打古贡卡含矿花岗斑岩体进行了LA-ICP-MS U-Pb测年,获得(240.1±0.89)Ma的年龄值,属中三叠世。含矿斑岩的SiO_2含量为65.18%~70.43%,K_2O为3.05%~6.76%,Na_2O为1.99%~3.47%,富SiO_2、K2O、Na_2O为特点,相对贫Fe、Mg、Ca,里特曼指数为1.09~4.29,铝饱和指数ASI=1.01~1.23,总体表现为弱过铝质到强过铝质高钾钙碱性系列岩石的特征;微量元素配分曲线总体呈右倾型,大离子亲石元素(LILE)富集,高场强元素(HFSE)亏损,具有较弱的Eu负异常。通过岩体地质特征、岩石学及岩石地球化学特征结合区域构造演化特点初步确定打古贡卡中三叠世花岗斑岩形成于俯冲阶段。该岩体的发现具有较为重要的科学意义,为重新认识"三江"北段斑岩型矿床的成矿时代和形成背景提供了新的线索和依据。  相似文献   

10.
跃进山小型矽卡岩型铜金矿床位于完达山地体西南部,矿体主要赋存于矽卡岩、花岗斑岩及其构造裂隙中,呈扁豆状或脉状。本文对矿区花岗闪长岩和花岗斑岩进行锆石U-Pb年代学和岩石地球化学研究,以了解矿床形成时代、成岩(矿)构造背景及矿床成因。测年结果表明,花岗斑岩和花岗闪长岩成岩年龄分别为(115.8±1.0)Ma和(126.9±1.7)Ma,铜金矿化时代与花岗斑岩成岩时代基本一致,为早白垩世晚期。岩石地球化学研究表明,花岗闪长岩属过铝质钙碱性系列岩石,稀土配分模式图为轻稀土富集,重稀土亏损,具较强的铕负异常,无铈异常,岩浆主要来源于壳源物质;花岗斑岩属过铝质钙碱性系列岩石,轻稀土富集,重稀土亏损,具弱铕负异常,无铈异常,相对富集大离子亲石元素(Rb、Ba、K、Sr)和不相容元素(U、Th),亏损高场强元素(Ta、Nb、P、Ti)和HREE,岩浆来源于壳幔物质混合源区,形成于碰撞后构造环境,成岩成矿作用与太平洋板块强烈俯冲作用后的伸展体制密切相关。  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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