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1.
<正>众所周知,基性—超基性岩石携带有大量的地幔信息,其地球化学特征不仅可以探讨壳幔作用机制,还可以直接反映造山带构造环境的演化过程(陈立辉等,2006;朱永峰等,2006;熊富浩等,2011)。东昆仑造山带石炭纪—晚三叠世的俯冲—碰撞造山作用与古特提斯洋的俯冲、闭合关系密切(莫宣学等,2007)。青海祁漫塔格地区位于东昆仑造山带西段,区内发育有大量与石炭纪—晚三叠世俯冲—碰撞造山作用有关的火成岩及矽卡岩型多金属矿床。然而,目  相似文献   

2.
东昆仑造山带祁漫塔格地区是青海重要的矽卡岩多金属成矿带,牛苦头矽卡岩型矿床位于该地区中西段,为祁漫塔格地区探明的中–大型矽卡岩型铅锌多金属矿床之一。鉴于矿区成岩成矿时代以及金属成矿物质来源存在争议,笔者通过LA–ICP–MS及热表面电离质谱Re–Os同位素测试技术对锆石及黄铁矿年代学进行了研究。结果表明,牛苦头矿区M1矿段10线钻孔底部成矿花岗岩体年龄分别为(362.2±2.7)Ma、(361.8±3.4)Ma,与主成矿阶段闪锌矿密切共生的黄铁矿Re–Os等时线年龄为(359.2±6.3)Ma。牛苦头矿区矽卡岩铅锌多金属矿床成岩与成矿时代耦合于(362.2±2.7)~(359.2±6.3)Ma,表明该矽卡型铅锌多金属矿床形成于华力西期晚泥盆世。黄铁矿初始187OS/188Os值为0.13±0.24,表明牛苦头铅锌矿床金属成矿物质为壳幔混合来源,形成于晚泥盆世早古生代—晚古生代早期构造–岩浆旋回中碰撞–后碰撞的拉伸背景之下。  相似文献   

3.
牛苦头矿床和卡而却卡矿床是青海祁漫塔格地区重要的多金属矿床。利用LA-ICP-MS锆石U-Pb法测得牛苦头矿床花岗闪长岩成岩年龄为394.0±1.3Ma,卡而却卡矿床B区黑云母二长花岗岩的成岩年龄为406.4±4.2Ma。这些年龄与区内野马泉、乌兰乌珠尔及夏日哈木矿床成矿岩体的形成时代范围基本一致,说明青海祁漫塔格地区早、中泥盆世可能发生了大规模的岩浆作用和与之有关的成矿作用。结合区域地质特征和已发表的地质年代学及岩石地球化学数据可知,青海祁漫塔格地区早、中泥盆世处于后碰撞伸展的构造背景,暗示早、中泥盆世可能是青海祁漫塔格地区又一个重要的多金属成矿期。  相似文献   

4.
基于笔者近几年对东昆仑祁漫塔格地区的野外调查和室内岩矿测试分析研究,综合论述了祁漫塔格成矿带的成矿地质背景、多金属矿床的主要类型、基本特征、时空分布和成矿作用特点。该区金属成矿元素组合复杂,矿床类型多样,矿种以F e、Cu、Pb、Zn、M o、W、Sn、A u为主,矿床类型主要有矽卡岩型、斑岩型、沉积-改造型和高温热液型等。探讨了祁漫塔格地区多金属矿床的成岩成矿时代、成矿物质和成矿流体来源,以及成矿地球动力学背景。提出中—晚三叠世和早古生代晚期是本区重要的成矿时期;形成于中—晚三叠世的斑岩型和矽卡岩型矿床金属成矿物质主要来源于岩浆和含碳酸盐岩地层,成矿流体主要来源于岩浆水,两者系同一构造岩浆活动在不同阶段、不同深度和不同部位发生成矿作用的产物。  相似文献   

5.
<正>近年来,祁漫塔格成矿带成为国内多金属找矿热点,相继发现大批多金属矿床(点),笔者就茫崖河东地区地质及矿体特征,综合研究分析该区找矿前景。1地质背景茫崖河东大地构造位于祁漫塔格山东段,昆北断裂北侧,属大陆边缘活动区(于文杰等,1986),出露地层主要为奥陶-志留系滩间山群,区内构造发育,岩浆活动强烈,主要为印支期石英闪长岩、二  相似文献   

6.
青海祁漫塔格地区航磁异常特征及找矿前景   总被引:1,自引:0,他引:1  
利用青海祁漫塔格地区1:5万高精度航磁资料,结合成矿地质背景、构造特征分析了该区航磁异常特征,并依据知矿(床)点的分布及成矿规律对祁漫塔格地区成矿带进行了划分,筛选了一批重点找矿异常,建立了以航磁异常信息为主的综合找矿标志,进而圈定了多个多金属找矿远景区段。对该区下一步矿产勘查部署提供重要依据,并为地面找矿工作提供重要的找矿线索。  相似文献   

7.
东昆仑祁漫塔格地区是青海省重要的矽卡岩型铁多金属成矿带,小圆山矽卡岩型铁多金属矿位于青海祁漫塔格东段,其成矿作用与斜长花岗斑岩关系密切,矿体产于斜长花岗斑岩的外接触带。利用LA-MC-ICP-MS锆石U-Pb定年技术,获得斜长花岗斑岩加权平均年龄为(216.9±1.9)Ma(n=16,MSWD=2.9),厘定其形成时代为晚三叠世。岩石地球化学研究表明,斜长花岗斑岩为过铝质高钾钙碱性系列岩石。岩石明显富集大离子亲石元素(Rb、K)、LREE和活泼的不相容元素(如U、Th),相对亏损高场强元素(如Nb、Ta、P、Ti),显示了轻稀土元素强烈富集的右倾式稀土配分型式,呈明显负Eu异常。综合青海祁漫塔格地区已有年代学资料和区域地质构造演化特征,认为小圆山斜长花岗斑岩可能形成于后碰撞构造阶段,为区域东昆仑造山带晚古生代—早中生代构造旋回的产物。  相似文献   

8.
程静 《吉林地质》2019,38(3):5-9
祁漫塔格是青海省内一个重要的多金属成矿区。近年来,新发现了多处与花岗岩有关的钨、锡、铜、多金属矿床。本文报道了祁漫塔格西段苏鲁格萨依花岗岩LA-ICP-MS锆石U-Pb定年数据,15颗岩浆锆石给出的206Pb/238U年龄加权平均值为(450±5.5)Ma,代表了花岗岩的结晶年龄。结合区域地质背景,认为该岩体形成于祁漫塔格洋由俯冲向碰撞转换的构造背景下。  相似文献   

9.
柴达木周缘金属矿床成因类型、成矿规律与成矿系列   总被引:4,自引:0,他引:4  
位处青藏高原东北部、古亚洲构造域与特提斯构造域结合部位的柴达木盆地周缘地区,是一个具有复杂构造演化历史的多旋回复合造山区.同时,该区也是我国重要的、极富潜力的金属成矿带.在综合分析以往多年工作成果基础之上,较系统总结研究了区域成矿地质构造背景、区域构造演化、主要矿床类型、区域成矿规律与成矿系列.结果表明:该区地质构造演化主要经历了前寒武纪古陆形成、早古生代造山、晚古生代—早中生代造山和中新生代叠复造山等4个构造旋回.其中,早古生代和晚古生代—早中生代构造旋回与区内金属成矿关系密切;总结出6个主要矿床成因类型,分属于拉伸裂解构造背景的喷气-沉积矿床组合(包括VMS型、SEDEX型)和与造山过程有关的造山矿床组合(包括斑岩型、矽卡岩型、热液脉型、造山带型金矿等);该区成矿作用具有多期、多矿种和多类型的特点,初步总结划分出5个金属矿床成矿系列,即与新元古代—寒武纪裂解有关的铜多金属矿床成矿系列、与奥陶—志留纪裂解有关的铜钴铅锌多金属矿床成矿系列、与晚加里东陆-陆碰撞有关的金多金属矿床成矿系列、与晚古生代裂解有关的铜多金属矿床成矿系列、与晚华力西—印支期造山有关的铁铜铅锌金多金属矿床成矿系列.  相似文献   

10.
东昆仑祁漫塔格地区是青海省重要的矽卡岩型铁多金属成矿带,小圆山矽卡岩型铁多金属矿位于青海祁漫塔格东段。利用LA-MC-ICP-MS锆石U-Pb定年技术,获得小圆山铁多金属矿区与成矿关系密切的英云闪长岩加权平均年龄为(217.7±1.1)Ma(n=36,MSWD=2.5),厘定其形成时代为晚三叠世,属印支晚期。岩石地球化学研究表明,英云闪长岩为准铝质高钾钙碱性系列岩石。岩石明显富集大离子亲石元素(Rb、K)、LREE和活泼的不相容元素(如U、Th),相对亏损高场强元素(如Nb、Ta、P、Zr、Ti),显示了轻稀土元素强烈富集的右倾式稀土元素配分型式,具有弱的负Eu异常。青海祁漫塔格地区已有的年代学资料和区域地质构造演化特征综合表明,小圆山英云闪长岩可能形成于后碰撞构造阶段,为区域东昆仑造山带晚古生代-早中生代构造旋回的产物。  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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