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Petrogenesis of Middle Triassic andesite in Sayaburi area, Laos: Constraints from whole-rock geochemistry, zircon U-Pb geochronology, and Sr-Nd isotopes 被引量:1
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作者 OUYANG Yuan LIU Hong +6 位作者 NIE Fei CONG Feng ZHANG Jian-long ZHANG Jing-hua HUANG Han-xiao LIU Shu-sheng LEI Chuan-yang 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第12期3502-3515,共14页
Despite the presence of a large area of andesite in the Sayaburi Province of Laos, it has received very little attention. Based on a combination of detailed field investigations, geochronology and geochemical analysis... Despite the presence of a large area of andesite in the Sayaburi Province of Laos, it has received very little attention. Based on a combination of detailed field investigations, geochronology and geochemical analysis, this study aims to explore the geochemical, Sr-Nd isotopic, and source rock characteristics, as well as the genesis and tectonic setting of the andesite in this region. In the Sayaburi Province, the andesite zircon U-Pb age is(241.2±1.2) Ma. The andesite rock is classified in the metaluminous-weak peraluminous calc-alkaline series. The light rare-earth elements(LREEs) are enriched and characterized by clear fractionation, whereas heavy rare-earth elements(HREEs) are relatively depleted and have no signs of fractionation. The average δEu is 0.96 with weak-or-no Eu anomalies. It is enriched in large ion lithophile elements such as Rb and K, while depleted in high field-strength elements such as Nb, Ta, P and Ti. For andesites in the Sayaburi Province, the(87Rb/86Sr)t value ranges in 0.702849-0.704687, the εNd(t) value is between 3.53 and 4.77, the tDM(t) value ranges in 633-835 Ma, and the tDM2(t) ranges in 625–724 Ma. The results based on the synthesis of petrology, geochemistry, and regional tectonic background studies show that 1) the andesitic magma source in the study area is an enriched mantle, which is modified by subduction zone fluids;2) the geotectonic background environment of the andesite in Sayaburi area is the continental island arc environment and related to the tectonic evolution of Jinghong–Nan–Uttaradit back-arc basin, which reflects that the magmatic source is enriched with a mantle wedge component modified by a subduction zone fluid(or melt). 展开更多
关键词 Laos Sayaburi area zircon u pb geochronology GEOCHEMISTRY
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造山带洋陆转换过程与岩浆作用:以东昆仑都兰地区古生代花岗岩为例 被引量:10
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作者 熊万宇康 赵梦琪 +3 位作者 于淼 刘潇扬 龚磊 曾庆鸿 《西北地质》 CAS CSCD 北大核心 2023年第6期113-139,共27页
洋陆转换过程中俯冲−碰撞(增生)−后碰撞各阶段具有不同岩浆作用,其中板片俯冲和岩石圈拆沉−减薄机制尤其受到关注。东昆仑造山带位于青藏高原北部,是秦祁昆中央造山带的重要组成部分,在早古生代经历了原特提斯洋陆转化过程。笔者通过对... 洋陆转换过程中俯冲−碰撞(增生)−后碰撞各阶段具有不同岩浆作用,其中板片俯冲和岩石圈拆沉−减薄机制尤其受到关注。东昆仑造山带位于青藏高原北部,是秦祁昆中央造山带的重要组成部分,在早古生代经历了原特提斯洋陆转化过程。笔者通过对东昆仑东段都兰地区古生代花岗岩进行年代学、全岩地球化学和Sr−Nd−Hf同位素研究,认为浪木日中志留世(429±4 Ma)花岗岩形成于洋壳俯冲阶段,具有埃达克质岛弧岩浆属性,与热俯冲机制下的洋壳部分熔融有关;希望沟与哈日扎早泥盆世(416~403 Ma)花岗岩形成于后碰撞阶段,分别显示I型和A型花岗岩特征,与新生下地壳的部分熔融和岩石圈减薄作用有关。综合区域古生代花岗岩地球化学资料表明,东昆仑东西段岩浆岩差异可能是洋脊俯冲所致。 展开更多
关键词 地球化学 洋脊俯冲 埃达克岩 锆石u−pb年代学 Sr−Nd−Hf同位素 东昆仑
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