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阿尔泰山南缘构造地球化学与矿产预测 被引量:1
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作者 胡剑辉 《新疆地质》 CAS CSCD 1996年第1期69-77,共9页
通过对阿尔泰山南缘区域化探资料的综合分析,结合大地构造、地层地球化学剖面以及地球物理特征,对该区进行了构造地球化学单元的划分,并探讨了不同构造单元的元素组合、控矿因素、成矿类型及矿产预测。
关键词 构造地球化学 构造地球化学省 构造地球化学 构造地球化学 矿产预测
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中国东部岩石圈铅同位素化学结构与动力学研究 被引量:5
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作者 张理刚 《矿物岩石地球化学通报》 CAS CSCD 1992年第3期133-137,共5页
通过对中国东部不同地质构造单元内300余个中生代花岗岩类侵入体和14个中、新生代玄武岩和蛇绿岩岩石分析研究,获得了1455个长石铅、68个全岩铅和9个玄武岩铅同位素新资料。所获得的最终主要成果和新认识、新概念归纳如下: 1.定量地将... 通过对中国东部不同地质构造单元内300余个中生代花岗岩类侵入体和14个中、新生代玄武岩和蛇绿岩岩石分析研究,获得了1455个长石铅、68个全岩铅和9个玄武岩铅同位素新资料。所获得的最终主要成果和新认识、新概念归纳如下: 1.定量地将中国东部岩石圈地壳和地幔分成三大块体,即华北、华南、东北。它们之间的界线在东经116°、北纬30°和42°附近(图1)。 2.综合Pb、Sr、O、Nd多元同位素示踪组合模式,将华北岩石圈陆壳板块划分出五个构造同位素地球化学省,亦即是五个构造花岗岩省和五个构造成矿省:冀北—辽北省(A1-1)、阴山—五台—燕山省(A1-2)、晋中—冀南—鲁西—辽南省(A2)、大别—胶南省(A3-1)和秦岭—北淮阳—肢东省(A3-2);华南岩石圈陆壳板块划分出八个构造同位素地球化学(构造花岗岩或构造成矿)省:洪泽湖—太湖省(B1),西南扬子省(B2-1)、北扬子省(B2-1)、南扬子省(B2-3)、南岭省(B3-1)、三江省(B3-2)、武夷省(B4-1)和闽台省(B4-2); 展开更多
关键词 岩石圈 铅同位素化学结构 构造地球化学省
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Geochemistry,petrogenesis and tectonic significance of the late Triassic A-type granite in Fujian,South China 被引量:1
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作者 Dawei Cai Jingyu Zhao +3 位作者 Yong Tang Hui Zhang Yunlong Liu Zhenghang Lv 《Acta Geochimica》 EI CAS CSCD 2017年第2期166-180,共15页
The late Permian–Triassic granites in southeastern China have important tectonic significance for the evolution of South China. Here, we present the detailed geochronological, geochemical and petrological analyses fo... The late Permian–Triassic granites in southeastern China have important tectonic significance for the evolution of South China. Here, we present the detailed geochronological, geochemical and petrological analyses for the Jinlongyan(JLY) granite in northwest Fujian Province, southeast China. LA–ICP–MS zircon U–Pb dating yielded a weighted average ^(206)Pb/^(238)U age of 224.1 ±3.3 Ma. The granite is mainly comprised of K-feldspar,plagioclase, quartz, biotite and minor amphibole. It is characterized by enrichments in Rb, Th, REEs(total REE = 295.1–694.3 ppm), and HFSEs(e.g., Zr = 289–520 ppm, Hf = 9.3–15.0 ppm, Y = 36.2–68.2 ppm) but depletions in Ba, Sr, Eu and Ti. The granite is metaluminous to weakly peraluminous and show a clear A-type granite geochemical signature with high SiO_2(70.89 wt%–75.76 wt%), total alkalis(Na_2O + K_2O = 7.51 wt%–8.72 wt%), Ga/Al ratios(10000 Ga/Al = 2.72–3.43). Insitu zircon Hf isotope analysis shows their eHf(t) values ranging from-7.2 to-3.2, with Mesoproterozoic T2DM ages(1308–1525 Ma). Whole-rock Nd isotope data show their eNd(t) values in the range of-9.5 to-9.1 and yield paleoproterozoic TDMages(1606–1985 Ma). These characteristics indicate that the JLY A-type granite magma was formed by the partial melting of Meso-Paleoproterozoic crust rocks in the Cathaysia Block. Our study of the JLY A-type granite, together with other Triassic A-type granitesin South China, defines an extensional environment in the late Triassic which probably was caused by the collision of the South China Block with Indochina Block. 展开更多
关键词 A-type granite U-Pb dating Sr-Nd-Hfisotope Late Triassic Fujian Province
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