柴北缘达达肯乌拉山地区闪长岩锆石LA-ICP-MSU-Pb年龄、岩石地球化学特征及其构造意义
Received:January 09, 2018  Revised:July 04, 2018  点此下载全文
引用本文:LIU YongLe,LIU ZhiGang,ZHANG AiKui,HE ShuYue,ZHANG DaMing,MAO ShengYuan,LI XingLiang,KUI MingJuan.2018.LA-ICP-MS zircon U-Pb age and petrogeochemical characteristics of diorite from Dadakenwulashan area on the northern margin of Qaidam basin and their tectonic implications[J].Mineral Deposits,37(5):1079~1090
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Author NameAffiliation
LIU YongLe College of Earth Sciences, Jilin University, Changchun 130012, Jilin, China
Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
LIU ZhiGang Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
ZHANG AiKui Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
HE ShuYue Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
ZHANG DaMing Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
MAO ShengYuan Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
LI XingLiang Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
KUI MingJuan Qinghai No.3 Survey Research Institute, Xining 810012, Qinghai, China 
基金项目:本文得到中国地质调查局柴达木周缘及邻区成矿带地质矿产调查评价项目“青海省都兰县阿木尼克山地区J47E017001、J47E018001、J47E018002、J47E019003四幅1∶5区域地质矿产调查”(编号:1212011221146)和青海省科技厅重大科技专项柴达木盆地南北缘成矿系统与勘查开发示范(编号:2016-SF-A3)项目共同资助
中文摘要:达达肯乌拉山位于柴达木盆地北缘中东部,区内发育闪长岩体,以小岩株形式产出。通过对达达肯乌拉山闪长岩岩石LA-ICP-MS锆石U-Pb定年和地球化学特征的研究,获得闪长岩体的年龄为(240.5±1.7) Ma,属早印支期。闪长岩体的w(K2O)较高,为2.03%~2.30%,w(Na2O)含量较低,为3.2%~3.44%,为一套准铝质及弱过铝质高K、低Na的高钾钙碱性型I型花岗岩。岩石稀土元素总量为158.35×10-6~200.41×10-6,球粒陨石标准化曲线向右倾斜,重稀土元素曲线呈水平状,轻稀土元素富集,但负铕异常不明显,岩浆分异程度不高。岩石的La/Ta(54.32~68.51)、Sm/Nd(0.18~0.19)及Rb/Sr(0.11~0.19)比值特征反映该岩体岩浆具有壳幔混合的特点。通过构造判别,反映达达肯乌拉山岩体可能形成于俯冲陆壳断离、幔源岩浆底侵的地球动力学背景,在中央造山带早中生代统一的板块碰撞与挤压构造体制下,以滩间山蛇绿岩带为基础,发生陆壳俯冲和断离作用,并诱发幔源岩浆的底侵和下地壳物质的部分熔融,沿火山机构侵位形成达达肯乌拉山岩体。
中文关键词:地球化学  闪长岩  锆石U-Pb年龄  构造意义  达达肯乌拉山
 
LA-ICP-MS zircon U-Pb age and petrogeochemical characteristics of diorite from Dadakenwulashan area on the northern margin of Qaidam basin and their tectonic implications
Abstract:Dadakenwulashan in the eastern part of the northern margin of the Qaidam Basin had frequent magmatic activity in late Devonian epoch, and intrusive rocks exist in the form of small stocks or dikes. Through the study of the LA-ICP-MS zircon U-Pb dating and petrogeochemical characteristics of diorite rock from Dadakenwulashan, the authors obtained the age of diorite rock mass of(240.5 ±1.7) Ma, suggesting a product of Early Indosinian period. Diorite rock has high w(K2O)content of 2.03%~2.30% and low w(Na2O)content of 3.2%~3.2%, being I type granite composed of a set of prospective aluminum and weakly peraluminous and high K and low Na type high potassium calc-alkaline rock masses. The total amount of rare earth elements of rocks is 158.35×10-6~200.41×10-6, the chondrite standardized curve is tilted to the right, the heavy rare earth elements are in horizontal curve shape, the light rare earth elements are concentrated, the negative Eu anomaly is not obvious, and the magmatic differentiation degree is not high. The La/Ta (54.32~68.51), Sm/Nd (0.18~0.19) and Rb/Sr(0.11~0.19) ratio characteristics of the rock imply that the formation of the magmatic rock had the characteristics of crust-mantle contamination. Structural discrimination shows that diorite rock was probably formed in a geodynamic background of continental crust breakup and mantle-derived magma underplating invasion. Under the tectonic regime of unified plate collision and extrusion in Early Mesozoic in the central orogenic belt and on the basis of Tanjianshanophiolite belt,continental crust subduction and breakup took place, which induced mantle-derived magma underplating invasion and partial melting of the lower crust material and formed Dadakenwulashan rock mass along the volcanism emplacement.
keywords:geochemistry  diorite  zircon U-Pb age  tectonic implications  Dadakenwulashan
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