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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Electron microprobe monazite geochronology of magmatic events:Examples from Variscan migmatites and granitoids,Massif Central,France
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Electron microprobe monazite geochronology of magmatic events:Examples from Variscan migmatites and granitoids,Massif Central,France

机译:岩浆事件的电子微探针独居石年代学:来自法国马西夫中部的瓦里斯卡蒙脱石和花岗岩类的例子

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U-Th-Pb dating of monazite with the electron probe microanalyser (EPMA)is increasingly documented as a reliable geochronological method offering high spatial resolution.This method has been applied on monazite from the Cevennes migmatites and granitoids from the southeast of the French Massif Central.Measurements were performed on separated grains after systematic back-scattered electron (BSE)imaging.Monazites from migmatites record two main ages:(i)a protolith age of about 550-543 Ma obtained on inherited cores,and (ii)a migmatization event between 329 +-5 and 323 +-3 Ma recorded by monazite rims and all other monogenetic grains.Monazite from the peraluminous Rocles pluton yields a 318 +-3 Ma age.Finally,three granite dykes are dated at 333 +-6,318 +- 5 and 311 +- 5 Ma;the older dyke is the most deformed of them and is interpreted as linked to the migmatization event;the two other dykes are geochronologically,petrologically and structurally coeval with the Rocles pluton.The data constrain the timing of crustal melting following Variscan thickening in the northern Cevennes area.Migmatization of Ordovician protoliths took place at 329-323 Ma and was shortly followed by intrusion of leucogranite at 318-311 Ma.The study shows that EPMA dating of monazite can be successfully used to resolve a close succession of regional melting events.
机译:独居石用电子探针微分析仪(EPMA)的U-Th-Pb定年法已被证明是一种可靠的地质年代学方法,具有很高的空间分辨率,该方法已应用于法国塞维纳斯蒙脱石的独居石和法国地块中部东南部的花岗岩。进行系统背散射电子(BSE)成像后,对分离的晶粒进行了测量。来自辉锰矿的独居石记录了两个主要年龄:(i)在继承的岩心上获得的约550-543 Ma的原生岩年龄,以及(ii)迁移事件在独居石边缘和所有其他单基因粒记录的329 + -5至323 + -3 Ma之间。来自高铝质Rocles岩体的独居石的年龄为318 + -3 Ma。最后,三个花岗岩堤坝的年代为333 + -6,318 +- 5和311 +-5 Ma;年龄较大的堤坝是它们中变形最大的,并被解释为与迁移作用有关;另外两个堤坝在时间,岩石学和结构上与Rocles岩体一致。北部塞文山脉地区瓦里斯干增厚后,地壳融化的时机出现在奥陶纪原生岩的大型化发生在329-323 Ma,不久之后侵入白云石在318-311 Ma。研究表明,独居石的EPMA年代可以是成功地用于解决一系列连续的区域性融化事件。

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