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1.
粤北大宝山钼钨多金属矿床年代学研究及其意义   总被引:1,自引:0,他引:1  
本文对大宝山钼钨多金属矿床中不同类型矿石中黄铁矿及石英矿物用Rb-Sr等时线法进行了精细测定,分别获得层纹状矿石中黄铁矿的年龄为168±5Ma(95%可信度),辉钼矿石英脉中石英矿物年龄为164±3Ma(95%可信度)和黄铁矿石英脉中石英矿物年龄为162±4Ma(95%可信度),测定结果表明,大宝山钼钨多金属矿床铜铅锌和钼钨成矿阶段形成的时间在168~162 Ma之间。本研究所获得的结果也与前人所获得的层状铜铅锌矿石和脉状矿石中辉钼矿的Re-Os模式年龄为165±1Ma一致。鉴于铜铅锌和钼钨矿床在形成时间和空间上与次英安斑岩和花岗闪长斑岩具有明显的耦合关系,据此表明,其成矿作用主要与区内燕山早期岩浆活动有关。  相似文献   

2.
黄沙坪铅锌多金属矿床赋存在下石炭统石磴子组灰岩与花岗斑岩接触带及附近的层滑断裂系统中,成因上与黄沙坪花岗质岩石关系密切。其成矿时代以往都是用矿体附近的花岗质岩石(花岗斑岩、石英斑岩等)或蚀变矿物年龄来间接推断的。文章采用高精度的辉钼矿Re-Os等时线定年法,直接测得矽卡岩型矿体的矿化年龄为(153.8±4.8)Ma,与前人获得的含矿矽卡岩中金云母的K-Ar年龄(153~157Ma)一致。结合黄沙坪岩体及含矿矽卡岩型矿体的稀土及微量元素地球化学特征,得出以下认识:该矿床的成矿年龄在154Ma左右;成矿作用与花岗斑岩关系密切,它们都是华南燕山早期大规模成岩成矿作用高峰期的产物。  相似文献   

3.
通过对西藏冈底斯成矿带东段的帮浦矿床中的辉钼矿进行Re_Os精确测年 ,首次获得北矿带的铜多金属矿化时间。其Re_Os模式年龄为 (14 .30± 0 .2 5 )Ma~ (14 .75± 0 .2 8)Ma ,5件样品得到的187Re_187Os等时线年龄为 (15 .32± 0 .79)Ma。年龄数据与冈底斯成矿带东段南侧斑岩铜矿化带的矿化时间 (14Ma左右 )具有一致性 ,表明北矿带的成矿作用与斑岩有关。斑岩成矿是冈底斯成矿带内的一次主导成矿事件 ,冈底斯南矿带以斑岩型铜钼矿床为主 ,其北矿带以斑岩型铜铅锌多金属矿床为主。冈底斯南、北矿带的成矿作用具有统一的成矿动力学背景 ,发生在碰撞造山带侧向伸展时期 ,均为陆_陆碰撞造山带演化过程中同构造岩浆活动期的产物  相似文献   

4.
黄沙坪铅锌多金属矿床赋存在下石炭统石磴子组灰岩与花岗斑岩接触带及附近的层滑断裂系统中,成因上与黄沙坪花岗质岩石关系密切。其成矿时代以往都是用矿体附近的花岗质岩石(花岗斑岩、石英斑岩等)或蚀变矿物年龄来间接推断的。文章采用高精度的辉钼矿Re-Os等时线定年法,直接测得矽卡岩型矿体的矿化年龄为(153.8±4.8)Ma,与前人获得的含矿矽卡岩中金云母的K-Ar年龄(153~157 Ma)一致。结合黄沙坪岩体及含矿矽卡岩型矿体的稀土及微量元素地球化学特征,得出以下认识:该矿床的成矿年龄在154 Ma左右;成矿作用与花岗斑岩关系密切,它们都是华南燕山早期大规模成岩成矿作用高峰期的产物。  相似文献   

5.
钦杭成矿带是华南地区一条著名的中生代斑岩-矽卡岩铜铅锌多金属成矿带,其南段阳春盆地内以集中发育白垩纪钨锡多金属矿床为特征,侏罗纪成矿仅有个别铜铁钼矿床报道。因此,区内有关侏罗纪成矿特征、矿化元素组合、成岩成矿物质等问题尚不明晰。本文对阳春盆地内黑石岗矽卡岩型铅锌矿床和留洞石英脉型钨钼矿床进行了成岩成矿年代学研究。结果显示,黑石岗花岗闪长岩的锆石U-Pb等时线年龄为164.9±0.7Ma,留洞钨钼矿的辉钼矿Re-Os同位素等时线年龄为164.6±4.0Ma,加权平均值161.2±2.4Ma,表明区内铅锌钨钼成矿作用均发生于中侏罗世晚期。该结果不仅扩充了区内侏罗纪成矿作用规模,同时丰富了区内侏罗纪矿化元素组合,包括铜铁-铜铅锌-钨钼等多金属矿床。留洞矿床辉钼矿具有极低的Re含量(514.6×10-9~2365×10-9),黑石岗花岗闪长岩的εHf(t)值变化于-5.2~-2.9之间,平均为-4.3。通过对成矿带内侏罗纪铜多金属矿床的相关数据综合及对比分析,本文认为阳春盆地此时期成岩成矿物质均以壳源为主,可能混有少量幔源物质。黑石岗和留洞矿床成岩成矿年龄的确定为下一步在阳春盆地开展侏罗纪矿床找矿勘探提供了重要信息,也为进一步深入研究钦杭成矿带侏罗纪成岩成矿作用动力学背景提供了参考。  相似文献   

6.
李文昌 《地质与勘探》2010,46(2):267-271
普朗-红山铜多金属成矿亚带北部帕纳牛场辉锑矿床与石英二长斑岩(热液)及断裂有关。斑岩黑云母40Ar-39Ar坪年龄和等时线年龄分别为199.1±1.3Ma和199.2±2.4Ma,代表了与辉锑矿化对应的斑岩的侵位时间,是该成矿亚带上目前获得石英二长斑岩中40Ar-39Ar最年轻的新年龄值,代表了义敦岛弧普朗-红山铜多金属成矿亚带存在燕山早期的构造-岩浆活动。在印支晚期主要形成斑岩型-夕卡岩型铜多金属矿床之外,燕山早期还具有斑岩及至少与斑岩有关的热液脉状成矿作用-锑矿化,预示了本区斑岩的一种新的成矿作用和找矿方向与前景。  相似文献   

7.
西藏冈底斯矿带发育大量斑岩铜钼矿床及铜铅锌多金属矿床,形成斑岩铜矿带及多金属矿带。过去的工作表明,冈底斯带南部矿床同位素年龄多小于30Ma,形成于碰撞期后伸展环境。本文测定了冈底斯矿带南缘克鲁-冲木达矽卡岩型铜(金、钼)矿集区桑布加拉矽卡岩型铜(金)矿化岩体锆石LA-ICP-MSU-Pb年龄及锆石Ce4+/Ce3+比值。矿化岩体锆石U-Pb年龄:92.1±0.6Ma,MSWD=1.0,锆石Ce4+/Ce3+比值在90~562之间,平均值为287。锆石Ce4+/Ce3+比值和玉龙矿带含矿岩体锆石的比值基本一致,显示矽卡岩矿化岩体岩浆氧逸度较高。印度板块与欧亚板块碰撞时间在65~45Ma之间,桑布加拉矽卡岩型铜矿化岩体锆石U-Pb年龄表明冈底斯带不但发育碰撞期后大规模成矿作用,也发育与洋壳俯冲构造岩浆事件有关的成矿作用。这为冈底斯矿带洋壳俯冲有关矿床的寻找提供了依据。  相似文献   

8.
新疆萨尔朔克金铜多金属矿床产于中泥盆统阿舍勒组上亚组的中酸性火山岩-次火山岩中,地表以金(铜)矿化为主,矿体形态及空间分布严格受NNW向断裂破碎带控制,矿体呈脉状、透镜状。金(铜)矿石以蚀变岩型为主,其次为石英脉型,赋矿围岩为黄铁绢英岩化流纹斑岩。金主要赋存在微细粒黄铁矿等硫化物和脉石英中,黄铜矿常呈不规则细脉状出现。在地表100m以下,出现铅锌矿化,且向深部铅锌品位较高,一般3%~5%,最高达12%以上。流纹斑岩与金铜多金属矿关系密切。通过锆石U-Pb同位素测年和Hf同位素测试分析,获得流纹斑岩的成岩年龄为386.2±1.5Ma,εHf(t)在7~13之间,主要集中在8.5~12.5之间。上述结果表明,流纹斑岩可能形成于早泥盆世晚期活动大陆边缘环境,是俯冲增生的产物。铅锌矿化是386Ma流纹斑岩期后岩浆作用的产物,而金铜矿化则是在含矿流纹斑岩的基础上,经其后火山热液叠加作用发生的。  相似文献   

9.
广西苍梧县宝山矿床位于大瑶山隆起区的东南部,是一个与石英斑岩有关的铜多金属矿床。本文对该矿区内花岗闪长岩、细粒花岗岩和石英斑岩进行了单颗粒锆石LA-ICP-MS U-Pb测年,获得了3件花岗闪长岩的~(206)Pb/~(238)U加权平均年龄分别为433.7±1.2 Ma、435.0±1.2 Ma和449.7±2.3 Ma;1件细粒花岗岩的~(206)Pb/~(238)U加权平均年龄为100.4±0.5 Ma,2件石英斑岩样品的~(206)Pb/~(238)U加权平均年龄分别为95.4±0.7 Ma和92.5±0.5 Ma。本文认为,宝山矿区存在晚奥陶世、早志留世、早白垩世晚期和晚白垩世早期等多期岩浆活动,与成矿有关的石英斑岩锆石U-Pb年龄揭示宝山铜铅锌多金属矿床形成于晚白垩世早期。这些高精度花岗岩锆石U-Pb测年数据为进一步深入研究大瑶山地区的岩浆活动及其成矿作用提供了重要的年代学依据。  相似文献   

10.
秦祁昆结合部广泛发育中三叠世岛弧钙碱性岩浆作用,已发现大量与其相关的斑岩型—夕卡岩型铜金、铜钼和银铅锌多金属矿床。瓦勒根金矿床是近年来在该区新发现的一个斑岩型金矿床,矿区内出露有众多的石英斑岩和花岗斑岩,且均发育有金矿化,其中石英斑岩与金矿化关系更为密切。LA-ICP-MS锆石U-Pb年龄表明,花岗斑岩形成于中三叠世(237Ma),其中包含有丰富的晚古生代及元古宙继承性锆石。这一特征与区域上的斑岩型铜金矿床含矿岩体具有相似性。进一步说明,古特提斯洋在秦祁昆结合部发生向北消减所形成的岩浆捕获了早于三叠纪的壳源和幔源物质,从而形成了岛弧钙碱性岩浆及相关的斑岩型—夕卡岩型矿床组合。  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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