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滇西弥渡——巍山地区富碱岩浆岩LA-ICP-MS锆石U-Pb年龄及构造环境
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作者 张娟 张福神 +1 位作者 张世涛 冯明刚 《华东地质》 2017年第4期264-270,共7页
弥渡吉祥庄火山岩和巍山大莲花山岩体是金沙江富碱岩带的重要组成部分,两者总体呈近NW向展布,受哀牢山—金沙江断裂带控制。岩石学和LA-ICP-MS锆石U-Pb同位素年代学研究表明,弥渡吉祥庄火山岩为粗面岩,巍山大莲花山岩体为石英闪长斑岩;... 弥渡吉祥庄火山岩和巍山大莲花山岩体是金沙江富碱岩带的重要组成部分,两者总体呈近NW向展布,受哀牢山—金沙江断裂带控制。岩石学和LA-ICP-MS锆石U-Pb同位素年代学研究表明,弥渡吉祥庄火山岩为粗面岩,巍山大莲花山岩体为石英闪长斑岩;吉祥庄火山岩LA-ICP-MS锆石U-Pb年龄为36.27±0.50 Ma,巍山大莲花山岩体LA-ICP-MS锆石U-Pb年龄为37.02±0.46Ma。弥渡吉祥庄火山岩和巍山大莲花山岩体形成时代为喜马拉雅早期,两者形成于后碰撞构造背景。 展开更多
关键词 la-icp-ms锆石u-pb年龄 富碱岩浆岩 构造环境 滇西 弥渡—巍山
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北祁连西段玉石沟辉长岩岩石特征、LA-ICP-MS锆石U-Pb年龄及地质意义 被引量:2
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作者 吴少锋 何存发 +3 位作者 张海青 袁桂林 陈礼标 钱玉山 《中国锰业》 2018年第5期137-140,150,共5页
为了探讨北祁连玉石沟地区蛇绿混杂岩带的形成时代及环境,对玉石沟蛇绿混杂岩带中的堆晶辉长岩岩石地球化学和U-Pb年龄样测年进行了分析。结果表明:玉石沟堆晶辉长岩Al_2O_3(7. 36~15. 69%)、MgO(6. 24%~13. 27%)、FeO(5. 13%~8. 20%... 为了探讨北祁连玉石沟地区蛇绿混杂岩带的形成时代及环境,对玉石沟蛇绿混杂岩带中的堆晶辉长岩岩石地球化学和U-Pb年龄样测年进行了分析。结果表明:玉石沟堆晶辉长岩Al_2O_3(7. 36~15. 69%)、MgO(6. 24%~13. 27%)、FeO(5. 13%~8. 20%)较为富集,SiO_2含量为45. 61%~52. 63%,属于大洋中脊玄武岩(MORB);岩石中(La/Yb)N介于6. 04~9. 77之间,(La/Sm)N介于3. 84~4. 35之间,LREE/HREE=5. 67~8. 79之间,表明轻稀土富集,重稀土亏损,其有明显的富集型洋脊玄武岩(E-MORB)特征;利用LA-ICP-MS锆石U-Pb定年方法测年,获得502. 0 Ma±4. 3 Ma,表明在晚寒武世北祁连玉石沟地区有一次伸展事件发生。结合本区已有的研究成果,表明北祁连确实存在古生代洋盆事件,至少在晚寒武世北祁连洋盆已极具规模。 展开更多
关键词 辉长岩 LA—ICP—MS锆石 U—Pb年龄 地球化学 e—MORB
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Geochronology and Petrogeochemistry of Metallogenic Intrusions in the Shanmen Large-scale Silver Deposit in the Siping Area of Jilin Province, NE China 被引量:1
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作者 REN Yunsheng SUN Xinhao +2 位作者 CAO Peng HAO Yujie GAO Yu 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2022年第5期1631-1646,共16页
The Shanmen deposit, located in the Siping area of Jilin Province, is one of large-scale silver deposits in Northeast(NE) China. Due to its high Ag grade, associated gold resources and special tectonic location, this ... The Shanmen deposit, located in the Siping area of Jilin Province, is one of large-scale silver deposits in Northeast(NE) China. Due to its high Ag grade, associated gold resources and special tectonic location, this deposit has important theoretical and ore-prospecting significance. To present new data on the ore genesis, mineralization time and tectonic settings, the relationship between silver mineralization and intrusions in this deposit has been studied and some analyses have been carried out, including LA-ICP-MS zircon U-Pb dating, whole-rock major and trace element analysis and Sr-Nd-Pb isotope analysis of the granitoids associated with silver mineralization. Studies on deposit geology indicate that the ore-hosting granodiorite and monzogranite have intimate genetic relationships with silver mineralization. LA-ICP-MS zircon U-Pb dating results of the both intrusions are 167.6 ± 1.9 Ma and 167.0 ± 1.5 Ma, respectively, implying that the two intrusions and associated silver mineralization in the Shanmen deposit formed during the Middle Jurassic. Major element analytical data suggest that the two intrusions are high-K calc–alkaline series I-type granites and belong to metaluminous and peraluminous rocks. Both intrusions have similar REE characteristics with regard to the relative enrichment of LREEs, depletion of HREEs, obvious fractionation of LREEs and HREEs(ΣLREE/ΣHREE = 8.68–14.09,(La/Yb)_N = 12.51–21.96), moderately negative Eu anomalies as well as weakly negative Ce anomalies(δEu = 0.56–0.71, δCe = 0.93–1.09). Moreover, the samples are generally enriched in LILEs and depleted in HFSEs. The rock assemblages and geochemical characteristics of granitoids in the Shanmen deposit suggest that they formed in an active continental margin associated with the Paleo-Pacific plate subduction. The Sr-Nd-Pb isotope compositions show that both the granodiorite and monzogranite have low Sr initial ratios and high Sm/Nd initial ratios. The ε_(Nd)(t) values and young Nd-model ages are-3.2 to-1.7 and 990 Ma to 1110 Ma, respectively. Considering the Sr-Nd isotope compositions, in conjunction with the relatively high ~(206)Pb, ~(207)Pb and ~(208)Pb, alongside the relatively low ~(204)Pb, it can be concluded that the Middle Jurassic intermediate-acidic magma represented by the studied monzogranite and granodiorite in the Shanmen deposit, was derived from the partial melting of juvenile lower crust enriched in mantle-derived materials and affected by the mixing of ancient crustal materials during the ascension and intrusion processes. 展开更多
关键词 la-icp-ms zircon u-pb dating petrogeochemistry Sr-Nd-Pb isotopes mesothermal lode deposit active continental margin Shanmen ag deposit
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