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首页> 外文期刊>Geosciences >Pb Isotope Mapping of Paleoproterozoic Gneisses in the SW Grenville Province: Evidence for a Cryptic Continental Suture
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Pb Isotope Mapping of Paleoproterozoic Gneisses in the SW Grenville Province: Evidence for a Cryptic Continental Suture

机译:西南格伦维尔省古元古代片麻岩的Pb同位素测绘:大陆性缝合线的证据

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摘要

New whole-rock lead (Pb) isotope analyses are presented in this study for granitoid orthogneisses from the Southwest Grenville Province in Ontario and Western Quebec. These data are used to test the location of a cryptic Archean-Proterozoic suture proposed on the basis of neodymium (Nd) isotope mapping. Immediately south of the inferred suture boundary, Pb isotope results show a crustal component derived solely from a juvenile Paleoproterozoic mantle source. These data are distinctly different from the reworked Archean craton to the northwest and strongly support the boundary derived from Nd isotope data. Pb signatures in the Paleoproterozoic crust suggest a southerly increase in magmatic reworking due to intensive plutonism during the late Paleoproterozoic and early Mesoproterozoic periods. The accretion of a juvenile arc to the Archean margin during the Penokean event (ca. 1.85 Ga) would have triggered subduction-zone reversal and the development of a long-lived ensialic arc on the composite margin. This was expressed as a 1.75 Ga Killarnian magmatic event and subsequent early Mesoproterozoic magmatism. This tectonic model for the Southwest Grenville Province shows that its crustal evolution is consistent with the Paleoproterozoic Makkovik-Ketilidian Orogen of Labrador and Southern Greenland. Hence, the application of whole-rock Pb isotope data in conjunction with Nd model ages provides data useful for mapping the extent of crustal terranes of differing age, which is essential for modeling the tectonic evolution of complex ancient accretionary orogens.
机译:在这项研究中,对安大略省和魁北克西南格伦维尔省的花岗岩类正长片麻岩提出了新的全岩石铅(Pb)同位素分析。这些数据用于测试基于钕(Nd)同位素映射提出的隐伏太古代-元古代缝线的位置。在推测的缝合线边界以南,Pb同位素结果显示出地壳成分仅源自幼年古元古代地幔源。这些数据与西北地区的改造后的太古宙克拉通明显不同,并且强烈支持了由Nd同位素数据得出的边界。古元古代地壳中的铅签名表明,由于在古元古代晚期和中元古代时期强烈的岩溶作用,岩浆返工向南增加。在Penokean事件(约1.85 Ga)期间,幼弧向太古代边缘的积聚会触发俯冲带反转,并在复合边缘上形成长寿命的弧形弧。这表现为1.75 Ga基拉尼安岩浆事件和随后的中元古代岩浆活动。西南格林维尔省的这种构造模型表明,其地壳演化与拉布拉多和南部格陵兰的古元古代马克科维克-基提利冲造山带一致。因此,结合Nd模型年龄的全岩石Pb同位素数据的应用提供了有用的数据,可用于绘制不同年龄的地壳地形的范围,这对于模拟复杂的古代增生造山带的构造演化至关重要。

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