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首页> 外文期刊>Journal of Metamorphic Geology >A long-lived metdatingamorphic history in the contact aureole of the Mooselookmeguntic pluton revealed by in situ of monazite grains preserved as inclusions in staurolite porphyroblasts
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A long-lived metdatingamorphic history in the contact aureole of the Mooselookmeguntic pluton revealed by in situ of monazite grains preserved as inclusions in staurolite porphyroblasts

机译:Mooselookmeguntic质子接触金黄色长寿的变质史,其原位显示独居石晶粒被保留为十字沸石成斑细胞的夹杂物

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Emplacement of the Mooselookmeguntic pluton, located in the western Maine region of the northern Appalachians, was thought to have occurred towards the end of the Acadian deformation at around 370Ma. Crystallization ages from different parts of the pluton suggest a more sequential emplacement history over a period of c. 20Myr. Foliation inflection/intersection axes (FIAs) within porphyroblasts from its aureole reveal at least five periods of garnet and staurolite growth. The orientation of FIAs in both garnet and staurolite porphyroblasts trend successively from ESE-WNW, NNW-SSE, E-W, ENE-WSW to NE-SW. Electron probe microanalysis dating of monazite grains included in staurolite porphyroblasts containing one of these five periods of FIA development reveals a succession of apparent ages from 410Ma to 345Ma. A similar spread of crystallization ages can be observed for plutons from Maine and adjacent regions. This succession indicates that deformation and metamorphism began well before and continued long after what is classically regarded as the Acadian orogeny. The thermal structure of the orogen progressively evolved to enable pluton emplacement, and it continued to develop afterwards with magmatic fluids still forming at depth.
机译:位于阿巴拉契亚北部缅因州西部的Mooselookmeguntic岩体的侵入被认为发生在阿卡迪亚变形的末尾,大约370Ma。胶体不同部位的结晶年龄表明在一段c时间内有更连续的堆积历史。 20岁在成叶细胞中,从其金黄色的叶片的拐弯/相交轴(FIA)显示出至少五个时期的石榴石和星形石生长。石榴石和星形石卟啉母细胞中FIA的方向从ESE-WNW,NNW-SSE,E-W,ENE-WSW到NE-SW依次发展。电子探针微分析法对包含五个FIA发育时期之一的星形石质成岩细胞中所含独居石晶粒的分析表明,表观年龄从410Ma到345Ma。对于来自缅因州和邻近地区的lut,可以观察到类似的结晶年龄分布。这种演替表明变形和变质作用早于传统上被认为是阿卡迪亚造山运动的开始,并持续了很长时间。造山带的热结构逐渐演化,以实现岩体的定位,随后继续发展,岩浆流体仍在深处形成。

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