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排序方式: 共有508条查询结果,搜索用时 109 毫秒
41.
东天山尖山铜矿床地质特征及成矿规律 总被引:1,自引:0,他引:1
尖山铜矿位于塔里木板块觉罗塔格晚古生代沟弧带南缘,赋矿地层为下石炭统白鱼山组,含矿岩性为安山质凝灰岩.矿体受康古尔塔格深大断裂之分支断裂苦水大断裂形成的低序次层间断裂破碎带控制,矿体形态为细长脉状.近矿围岩蚀变主要为绿帘石化、绿泥石化、阳起石化、黄铁矿化及绢云母化等,成因类型为中-低温热液石英脉型. 相似文献
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A polymetallic zone dominated by U-W mineralization was found in Northeast Guangxi. Distributed along the east contact zone
of a complex granite mass, it extends for about 100 km in length, with more than fifty deposits and prospects embraced. The
deposits show a wide range of genetic types, related to the granite, from magmatic (including pegmatite and skarn deposits)
through hydrothermal mineralizations (hypo-, meso- and epithermal) all the way to tin placers, constituting a very intact
metallogenetic series of granites. The epithermal U-W deposits are considered as a new type for their unique geological and
geochemical characters, such as the paragenesis of U and W and the large time gap (> 40 Ma) between ore and granite.
This project was financially supported by the Open Lab. of Ore Deposit Geochemistry, Chinese Academy of Sciences. 相似文献
44.
Mesozoic Granitoid Types and Metallogeny of the East China Circum-Pacific Continental Margin 总被引:3,自引:0,他引:3
Jinchu ZHU 《Resource Geology》1998,48(4):265-273
Abstract: This paper synthesizes the geotectonic background, genetic types and metallogenetic relations of the Mesozoic granitoids in the East China continental margin. By the Mesozoic, the Siberia Plate, North China Plate and South China Plate amalgamated together, resulting in formation of a unified Eurasia super–continent. Since the late Triassic to early Jurassic period, the territory of East China gradually became a Cordilleran style active continental margin. During the Jurassic to early Cretaceous (early to middle episodes of Yanshanian orogeny), the Paleo-Pacific plate strongly collided with and subducted under the Eurasia continent, reactivated the consolidated East China continental margin. The granitoids of both transformation series and syntexis series were generated. Many granitoid-related large and giant metal deposits were formed. Furthermore, the W, Sn, Be, Nb, Ta and U mineralizations are mostly associated with the transformation series; while the Fe, Cu, Mo and Au mineralizations are mostly associated with the syntexis series. The late Yanshanian orogeny (late Cretaceous) began a transition to the western Pacific style continental margin. A tensional environment resulted in development of alkaline granitoids and formation of continental red basins. The Cenozoic orogeny was characterized by a backarc spreading and rifting regime in this region. 相似文献
45.
LIN Bin TANG Juxing TANG Pan SUN Yan QI Jing M. SANTOSH XIE Jinling DENG Shilin LI Faqiao XIE Fuwei ZHOU Aorigele 《《地质学报》英文版》2024,98(1):83-103
Rubidium (Rb) deposits mostly occur in the South China and Central Asia orogenic belts and are often closely associated with highly differentiated granites. This study investigates a newly-discovered giant Rb deposit at Gariatong in the Central Lhasa terrane in Tibet. Detailed field studies and logging data revealed that the Rb mineralization mainly occurs in monzogranite and is related to greisenization. LA-ICP-MS U-Pb dating of zircon yielded ages of 19.1 ± 0.2 Ma and
19.0 ± 0.2 Ma for greisenized monzogranite and fresh monzogranite, respectively. The monzogranites are characterized as strongly peraluminous, with high contents of SiO2, Al2O3, K2O and Na2O as well as a high differentiation index. They are enriched in light rare earth and large ion lithophile elements with signi?cant negative Eu anomalies and depleted high field-strength elements. Petrological and geochemical features of these ore-related monzogranites suggest that they are highly fractionated S-type granites, derived from remelting of crustal materials in a post-collisional setting. The geochemistry of zircon and apatite points to a low oxygen fugacity of the ore-related monzogranite during the magma’s evolution. The discovery of the Gariatong Rb deposit suggests that the Central Lhasa terrane may be an important region for rare metal mineralization. 相似文献
46.
Guan J.Wei F.Sun G.Huang J.Wang L. 《大地构造与成矿学》2015,(2):344-354
The Ningzhen metallogenic district is an important part of the Middle-Lower Yangtze River Valley metallogenic belt. LA-ICP-MS zircon U-Pb dating of the three intermediate-acid intrusions, i.e., Anjishan, Xinqiao, and Shima, in the central part of the Ningzhen district, indicates that those intrusions were emplaced in the Late Early Cretaceous, with ages of 107.0±1.1 Ma-108.0±1.6 Ma, 108.0±1.3 Ma, and 102.5±1.1 Ma, respectively. Combined with the molybdenite Re-Os isotope age (106-108 Ma) of porphyry copper deposit in this regions, the Ningzhen district exists an intensively magmatic-metallogenic-thermal event at 102.5-108.0 Ma. The age of this event is similar with the age of the third period of large scale mineralization in South China, however obviously later than the magmatic activity of other ore field (124-148 Ma) in the Middle-Lower Yangtze River Valley metallogenic belt. It is suggested that the tectonic-magmatic-thermal events in the Ningzhen area is formed under regional lithospheric extension environment, which is also consistent with the tectonic background of the third period of large scale mineralization in South China. The zircon U-Pb ages of the intrusions and the Re-Os ages of molybdenites from the porphyry deposits in the study area demonstrate that the Ningzhen district underwent intensive magmatism and hydrothermal mineralization during the period from 102.5 to 108.0 Ma, which is consistent with the third pulse of large scale mineralization in the South China. ©, 2015, Science Press. All right reserved. 相似文献
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哈西亚图石英闪长岩是东昆仑地区中生代具幔源组分贡献的花岗岩类典型代表,岩体出露于东昆仑中构造带,广泛发育暗色微粒包体。包体为闪长质岩石,并含有一系列岩浆混合成因的证据,如水滴状、长条状塑性流变外形,淬冷边、反向脉等高—中温混合迹象,以及低Mg/(Fe+Mg)、Na/(Ca+Na)值等混合成因特征。包体A/CNK值介于0.77~0.87,属准铝质,富Al2O3、Fe2O3、MgO,贫K2O、Na2O,富集大离子亲石元素(Rb、Ba、K等),同时又具有Ta、Nb、Ti的"TNT"负异常,具有俯冲带幔源岩石的成分特点。依据岩石学、地球化学特征并结合同时期大地构造背景,东昆仑晚古生代—早中生代含暗色微粒包体花岗质岩石是幔源岩浆经历多次熔融、同化、存储和均一(MASH)过程后与壳源岩浆混合的产物。在混合岩浆中,富镁铁质端元是由辉长质岩浆进化而来的闪长质岩浆。 相似文献
48.
铜与锡具有不同的地球化学性质,然而铜锡共生或复合成矿现象在世界主要铜、锡成矿带中比较常见,如中国的右江、南岭(湘南)、大兴安岭南段(内蒙东部)、葡萄牙伊比利亚、秘鲁安第斯、英格兰德文郡、德国厄尔士山、日本西南、俄罗斯远东、加拿大新不伦瑞克等成矿带均为铜锡复合矿床的集中产区。铜锡复合矿床主要为岩浆热液矿床,以矽卡岩型、脉状矿床为主,兼有火山热液沉积型、斑岩型及云英岩型等。铜矿体的主要矿石矿物为黄铜矿,兼有斑铜矿、黝铜矿、辉铜矿等;锡矿体的主要矿石矿物为锡石,兼有黝锡矿。铜锡复合矿床的成矿物质来源(尤其是铜、锡成矿元素的来源是否具有一致性)尚有不少争议,锡普遍被认为是岩浆来源,而铜的来源具有多样性。成矿流体演化过程中的氧化还原环境的改变及流体的混合是导致铜锡复合成矿的主要原因。目前对于铜锡复合成矿的研究,主要是从矿床的年代学、单矿物(黄铜矿、锡石)微量元素及传统同位素地球化学、流体包裹体等方面入手,但对厘定铜锡复合成矿过程的作用有限。铜锡复合矿床的成因及勘查模型的建立具有重要的理论价值及现实意义。本文提出未来研究可以从多种非传统稳定同位素(例如Cu、Sn、W、Zn同位素)的联合示踪探索、成... 相似文献
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哀牢山成矿带壳幔相互作用与金成矿关系探讨——以元阳大坪金矿床为例 总被引:4,自引:0,他引:4
哀牢山成矿带位于云南省中南部,带内相续发现了墨江金厂、镇沅老王寨和元阳大坪等一批大型-超大型金多金属矿床。滇西南地区的莫霍面等深度特征、大陆地温梯度和大地热流高异常特征以及地球深层次结构特征,一致表明哀牢山地区在新生代处于强烈的壳幔相互作用时期。以大坪超大型金矿床同位素组成为例开展了示踪学研究,结果表明,成矿物质及成矿流体均以上地幔或下地壳来源为主,成矿过程中有少量地壳浅部的大气饱和水、岩浆水或它们的混合流体的加入。区域地球物理场特征及同位素示踪学研究一致表明,在哀牢山成矿带内矿床形成过程中,伴随有强烈的深部岩浆活动,壳幔相互作用对该地区矿床的形成有重要贡献。 相似文献