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    孙立新, 张云, 李影, 张永, 任邦方, 张天福. 内蒙古赤峰地区晚泥盆世双峰式火山岩地球化学特征与板内伸展事件[J]. 中国地质, 2017, 44(2): 371-388. DOI: 10.12029/gc20170212
    引用本文: 孙立新, 张云, 李影, 张永, 任邦方, 张天福. 内蒙古赤峰地区晚泥盆世双峰式火山岩地球化学特征与板内伸展事件[J]. 中国地质, 2017, 44(2): 371-388. DOI: 10.12029/gc20170212
    SUN Lixin, ZHANG Yun, LI Ying, ZHANG Yong, REN Bangfang, ZHANG Tianfu. Geochemical characteristics and intraplate extension of Late Devonian bimodal volcanic rocks in Chifeng area of Inner Mongolia[J]. GEOLOGY IN CHINA, 2017, 44(2): 371-388. DOI: 10.12029/gc20170212
    Citation: SUN Lixin, ZHANG Yun, LI Ying, ZHANG Yong, REN Bangfang, ZHANG Tianfu. Geochemical characteristics and intraplate extension of Late Devonian bimodal volcanic rocks in Chifeng area of Inner Mongolia[J]. GEOLOGY IN CHINA, 2017, 44(2): 371-388. DOI: 10.12029/gc20170212

    内蒙古赤峰地区晚泥盆世双峰式火山岩地球化学特征与板内伸展事件

    Geochemical characteristics and intraplate extension of Late Devonian bimodal volcanic rocks in Chifeng area of Inner Mongolia

    • 摘要: 内蒙古赤峰敖汉旗一带的朝吐沟组火山岩由变玄武岩、变流纹岩组成,是一套典型的“双峰式”火山岩组合。采用LA-ICP-MS锆石U-Pb测年方法,获得了流纹岩的锆石206Pb/238U加权平均年龄分别为(359±1)Ma和(360±1)Ma,形成于晚泥盆世法门期。火山岩的SiO2含量分布在46.24%~56.6%和77.59%~85.75%,分别属于变玄武岩(玄武安山岩)和变流纹岩。变玄武岩(玄武安山岩)轻稀土元素弱富集而重稀土元素略亏损,(La/Yb)N=2.4~8.76,有弱Eu负异常,富集大离子亲石元素和高场强元素,Nb、Ta、Ti有明显负异常,87Sr/86Sr初始比值为0.705076~0.707770,具有高的正εNdt)值(+0.51~+4.90)和年轻的模式年龄TDM(964~1090 Ma),推断其源于遭受地壳物质混染的亏损地幔;变流纹岩富硅、钾和钠,贫镁,具有轻稀土元素富集而重稀土元素略亏损,(La/Yb)N=7.07~11.07,有强烈的Eu负异常(δEu=0.12~0.43),Ti、P、Sr、Ba相对强烈亏损,Nb、Ta亏损,Rb、Th、U、K相对富集;其87Sr/86Sr初始比值为0.713757~0.739647,εNdt)值为-1.75~+2.54),和年轻的模式年龄TDM(846~1156 Ma);多数锆石的εHft)为-2.3~+6.9,年轻的模式年龄TDM(707~1074 Ma),具有A型花岗岩的特征,推测其来源为新元古代时新生的年轻陆壳。综合前人区域研究成果、地球化学特征,朝吐沟组“双峰式”火山岩形成于晚泥盆世板内伸展构造背景。

       

      Abstract: The volcanic rocks of the Chaotugou Formation in Chifeng area of Inner Mongolia consist of meta-basalts and metarhyolites and exhibit typical "double peaks", with the SiO2 content being 46.24%-56.6% and 77.59%-85.75% respectively. Zircon LA-ICP-MS U-Pb dating of rhyolite yielded U-Pb ages of(359±1) Ma-(360±1) Ma, which represent the time of crystallization of the volcanic rocks. The volcanic rocks were formed in late Devonian Famennian age. Geochemically, meta-basalts (or basaltic andesites) are characterized by enriched LREE, depleted HREE, slightly negative Eu, Nb, Ta, Sr and Ti anomalies and high abundances of LILE and HFSE, with the (La/Yb)N ratios from 2.4 to 8.76, and the 87Sr/86Sr initial values from 0.705076 to 0.707770; in addition, they have relatively high positive εNd(t)values (+0.51 to +4.90) and relatively young TDM (964-1090 Ma) ages. The mafic rocks might have resulted from the mixture of depleted mantle with crustal source. Meta-rhyolites are generally characterized by rich silicon, alkali and poor magnesium. They are characterized by enriched LREE, depleted HREE, noticeable negative Eu (δEu 0.12-0.43), Nb, Ta, Sr, P and Ti anomalies, relatively high U, Th and rather low Ba, Sr, Ti and P; the (La/Yb)N ratios are from 7.07 to 11.07, 87Sr/86Sr initial values are high (0.713757-0.739647), negative εNd(t) values are low (-1.75 to +2.54), and TDM ages are relatively young (846-1156 Ma); besides, most zircons have the positive εHf(t) values (-2.3 to +6.9) and relatively young TDM ages (707-1074 Ma). The felsic rocks show an A-type affinity and might have come from a juvenile crustal source. According to their geochemistry and previous regional geological studies, the late Devonian volcanic rocks are basalts and rhyolites, suggesting a typical bimodal volcanic rock association and implying an extensional setting.

       

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