用原位和同位素稀释U-Pb年代学重新评价纽芬兰西部达什伍德地块的构造历史

E. Hodgin, F. Macdonald, Paul Karabinos, J. Crowley, D. Reusch
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引用次数: 0

摘要

阿巴拉契亚北部奥陶系融裂造山作用的综合受到Laurentian、Gondwanan和弧生构造元素沿走向变化的阻碍。纽芬兰的Dashwoods地块被解释为一个在Taconic造山运动开始时与Laurentian边缘碰撞的近劳伦弧地块,而在新英格兰,莫尔镇地块标志着近冈瓦纳弧的前缘。达什伍德地体的近劳伦纪亲和力取决于其最古老的变质沉积岩与纽芬兰西部劳伦-亨伯边缘上埃迪卡拉统至下奥陶统裂谷漂移沉积的对比。在此,我们报告了来自Dashwoods地块南部变质沉积岩的碎屑锆石的U-Pb日期和微量元素地球化学,挑战了这种对比,并为Taconic造山运动提供了新的见解。基于激光烧蚀-电感耦合等离子体质谱(LA-ICP-MS)和化学研磨-同位素稀释-热电离质谱(ca - id - tims)对碎屑锆石的年龄和微量元素地球化学分析,我们确定了ca. 462-445 Ma的沉积包体,其物源包括Laurentian、Gondwanan和弧源寒武-奥陶系。这些矿床在年龄上与上奥陶统的布里格亚带獾群地层重叠,后者也含有劳伦碎屑岩。我们推断,约462-455 Ma,来自Taconic碰撞带的劳伦碎屑主要向东运输,穿过碰撞后的弧-弧后杂岩,然后在约455-445 Ma,来自红印第安湖弧的碎屑主要向西运输。对达什伍德地区火成岩锆石的继承分析表明,亨伯边缘1500 ~ 900 Ma Laurentian结晶基底不太可能是达什伍德地区继承锆石的来源。相反,更世界性的劳伦森遗产可能最好的解释是来自俯冲的劳伦森沉积物。结果表明,来自Dashwoods地块南部的变质沉积单元与先前提出的Humber边缘裂陷-漂移地层不相关,与Moretown地块基底也不相关;然而,这些中上奥陶统序列表明,可能存在另一种板块构造模式,在这种模式下,Taconic造山运动可能是由冈瓦南弧地体的碰撞引发的,冈瓦南弧地体沿着Baie Verte-Brompton线封闭了Iapetus洋的主要区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A reevaluation of the tectonic history of the Dashwoods terrane using in situ and isotope-dilution U-Pb geochronology, western Newfoundland
Synthesis of the Ordovician Taconic orogeny in the northern Appalachians has been hindered by along-strike variations in Laurentian, Gondwanan, and arc-generated tectonic elements. The Dashwoods terrane in Newfoundland has been interpreted as a peri-Laurentian arc terrane that collided with the Laurentian margin at the onset of the Taconic orogeny, whereas along strike in New England, the More-town terrane marks the leading edge of peri-Gondwanan arcs. The peri-Laurentian affinity of the Dashwoods terrane hinges on the correlation of its oldest metasedimentary rocks with upper Ediacaran to Lower Ordovician rift-drift deposits of the Laurentian Humber margin in western Newfoundland. Here, we report U-Pb dates and trace-element geochemistry on detrital zircons from metasedimentary rocks in the southern Dashwoods terrane that challenge this correlation and provide new insights into the Taconic orogeny. Based on age and trace-element geochemistry of detrital zircons analyzed by laser ablation–inductively coupled plasma–mass spectrometry (LA-ICP-MS) and chemical abrasion–isotope dilution–thermal ionization mass spectrometry (CA-ID-TIMS), we identified ca. 462–445 Ma sedimentary packages with a mixed provenance consisting of Laurentian, Gondwanan, and arc-derived Cambrian–Ordovician sources. These deposits overlap in age with Upper Ordovician strata of the Badger Group of the Exploits subzone, which also contain Laurentian detritus. We infer dominantly east-directed transport of Laurentian detritus from the Taconic collision zone across a postcollisional arc–back-arc complex at ca. 462–455 Ma followed by dominantly west-directed transport of detritus from the Red Indian Lake arc at ca. 455–445 Ma. Our analysis of zircon inheritance from Dashwoods igneous rocks suggests that 1500–900 Ma Laurentian crystalline basement of the Humber margin is an unlikely source of Dashwoods inherited zircon. Instead, a more cosmopolitan Laurentian inheritance may be best explained as sourced from subducted Laurentian sediment. Our results demonstrate that the sampled metasedimentary units from the southern Dashwoods terrane do not correlate with rift-drift strata of the Humber margin as previously proposed, nor with the basement of the Moretown terrane; yet, these Middle to Upper Ordovician successions suggest the potential for an alternative plate-tectonic model in which the Taconic orogeny may have been initiated by collision of Gondwanan arc terranes that closed the main tract of the Iapetus Ocean along the Baie Verte–Brompton Line.
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