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    新疆北山南部白山地区晚石炭世火山机构的发现及其地质意义

    Discovery and geological significance of the Late Carboniferous volcanic edifices in Baishan of Southern Beishan area, Xinjiang

    • 摘要: 对北山地区晚古生代裂谷带何时开始裂解的相关研究一直较薄弱。文章通过1∶5万区域地质调查,在新疆北山造山带南部新鉴别出保存完好的晚石炭世火山机构,岩石组合类型包括安山岩、英安岩、玄武岩、流纹岩及火山碎屑岩,锆石U-Pb年龄为313~300 Ma。火山岩具有相对较高的Na2O含量和Mg#值,相对较低的CaO和TiO2含量,属于钙碱性系列岩石。稀土元素配分模式呈明显的右倾式,具有弱的负铕异常(δ Eu=0.72~1.00),富集大离子亲石元素Rb、Th、K和LREE,亏损Nb、Ta、P和Ti。根据岩石的地球化学特征和(Th/Nb)N、(Nb/La)N等关键指数,发现岩浆在上侵喷发过程中可能受到强烈的地壳混染作用。碎屑岩的沉积序列显示其应形成于陆内环境,结合Zr/Nb-Nb/Th图解及Zr/Y-Nb/Y图解,认为基性火山岩源区可能形成于与地幔柱有关的构造地质背景。根据Zr/Y-Zr图解和Th/Hf-Ta/Hf图解,结合区域地质资料,认为该套火山岩系应形成于大陆裂谷初始裂解的环境,这是目前报道的该裂谷带最早的年龄信息,指示晚石炭世北山南部地区已开始处于陆内初始裂谷的环境。

       

      Abstract: There are lesser research on when the Late Paleozoic rift belt of the Beishan area began to rift. A complete volcanic edifice is identified in the southern Beishan rift belt through 1∶50 000 regional geological survey. The rock association is composed of andesite, dacite, basalt, rhyolite and pyroclastic rocks with the zircon U-Pb age ranging between 313~300 Ma.The volcanic rocks are characterized with high NaO2 and Mg#, low CaO and TiO2, belonging to calc-alkaline series. The REE pattern is distributed in obvious right-tendency with little depletion of Eu (δEu=0.72~1.00), enriched in large ion lithophile elements Rb, Th, K and LREE, and depleted in Nb, Ta, P and Ti. Based on the geochemical characteristics of rocks and key indices such as (Th/Nb)N and (Nb/La)N, it indicates that the volcanic rocks were intensely mixed with crust materials during the magma eruption. The sedimentary sequence in clastic rocks infers that it should be formed in an intra-continental environment. Diagrams of Zr/Nb-Nb/Th and Zr/Y-Nb/Y show that the basic volcanic rocks may derived from the tectonic environment associated with mantle plumes. Based on the diagram of Zr/Y-Zr and Th/Hf-Ta/Hf, in combination with the regional geological characteristics, the authors consider that the volcanic rocks might occur in the initial cracking environment of continental rift. This is the earliest age-information of the rift zone reported so far, which indicates that the southern Beishan area has initially entered in the intracontinental initial rift environment in the Late Carboniferous.

       

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