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首页> 外文期刊>Doklady Earth Sciences >U-Pb (SIMS SHRIMP-II) Age of Volcanic Rocks from the Tulukuev Caldera (Streltsov Uranium-Ore Cluster, Eastern Transbaikalia)
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U-Pb (SIMS SHRIMP-II) Age of Volcanic Rocks from the Tulukuev Caldera (Streltsov Uranium-Ore Cluster, Eastern Transbaikalia)

机译:U-Pb(SIMS SHRIMP-II)Tulukuev火山口(Streltsov铀矿团,东贝贝卡利亚)的火山岩时代

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摘要

The precision dating (U-Pb local by zircons, SHRIMP-II) of volcanic rocks in the unique uranium-bearing structure of Transbaikalia is performed for the first time. The basic conclusions are as follows. The volcanic activity in the Tulukuev caldera covers the period of not less than 30-35 mln years, within the period from (not later than) 162 to 128 mln years. Two stages of caldera evolution are established: the early (trachydacite-basalt) stage up to 154 mln years and the late (trachybasalt-rhyolite) stage from 142 to 128 mln years, with a 10 mln year break, which caused the deep erosion of the lower layer. Three phases of rhyolite magmatism are substantiated. The first one, 142 mln years, is the ejection of ignimbrites (microfelsitic rhyolites); the second one, 137-135 mln years, is the outflow of lavas of sanidine-morion rhyolites and subvol-canic and ring dyke intrusions. The third phase, 128 mln years, is connected with the occurrence of cesium-bearing perlites in the southwestern part of the caldera. The age of the granite-porphyries of the Krasnoka-mensk stock almost coincides with the precision data of the age of the uranium ores [4]. It is found that zircons from the granite-porphyries within the ore field of the Argunsk deposit have an anomalously high content of uranium. This fact can additionally testify to the time-and-spatial closeness of magmatism and processes of ore formation.
机译:首次对Transbaikalia独特的含铀结构中的火山岩进行精确测年(锆石U-Pb,SHRIMP-II)。基本结论如下。图卢库耶夫火山口的火山活动期不小于30-35百万年,在162年至128百万年(不晚)内。火山灰的演化分为两个阶段:早期(曲长石-玄武岩)阶段高达1.54亿年,晚期(曲长石-流纹岩)阶段从142年到1.28亿年,断裂时间为1000万,造成了深层侵蚀。下层。流纹岩岩浆作用分为三个阶段。第一个是1.42亿年,是火成岩(微细流纹岩)的喷出;第二个是137-1.35亿年,这是山茱mor流纹岩熔岩的流出,以及次火山岩和环堤的侵入。第三阶段(128百万年)与火山口西南部含铯珍珠岩的发生有关。 Krasnoka-mensk储层的花岗岩斑岩年龄与铀矿石年龄的精确数据几乎一致[4]。已发现,在阿尔贡斯克矿床的矿石斑岩中的花岗岩斑岩中的锆石具有异常高的铀含量。这一事实还可以证明岩浆作用的时间和空间紧密性以及成矿过程。

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  • 来源
    《Doklady Earth Sciences》 |2010年第1期|P.587-592|共6页
  • 作者单位

    Karpinskii All-Russia Research Institute of Geology, Saint Petersburg, Russia;

    rnKarpinskii All-Russia Research Institute of Geology, Saint Petersburg, Russia;

    rnKarpinskii All-Russia Research Institute of Geology, Saint Petersburg, Russia;

    rnKarpinskii All-Russia Research Institute of Geology, Saint Petersburg, Russia;

    rnKarpinskii All-Russia Research Institute of Geology, Saint Petersburg, Russia;

    rnKarpinskii All-Russia Research Institute of Geology, Saint Petersburg, Russia;

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