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首页> 外文期刊>Geosphere >Shawinigan arc magmatism in the Adirondack Lowlands as a consequence of closure of the Trans-Adirondack backarc basin
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Shawinigan arc magmatism in the Adirondack Lowlands as a consequence of closure of the Trans-Adirondack backarc basin

机译:跨阿迪朗达克后流盆地的关闭导致阿迪朗达克低地的沙威尼根弧岩浆活动

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摘要

The Antwerp-Rossie metaigneous suite (ARS) represents arc magmatism related to closure of the Trans-Adirondack backarc basin during Shawinigan collisional orogenesis (ca. 1200a€“1160 Ma). The ARS is of calc-alkaline character, bimodal, and lacks intermediate compositions. Primarily intruding marble and pelitic gneiss, the ARS is spatially restricted to the Adirondack Lowlands southeast of the Black Lake fault. On discrimination diagrams, the ARS samples plot primarily within the volcanic arc granite fields. Incompatible elements show an arc-like signature with negative Nb, Ta, P, and Zr and positive Cs, Pb, La, and Nd anomalies relative to primitive mantle. Neodymium model ages (TDM, depleted mantle model) range from 1288 to 1634 Ma; the oldest ages (1613a€“1634) and smallest epsilon Nd (?μNd) values are found in proximity to the Black Lake fault, delineating the extent of Laurentia prior to the Shawinigan orogeny. The epsilon Nd values at crystallization (1200 Ma) plot well below the depleted mantle curve. Geochemical and isotopic similarities to the Hermon granitic gneiss (HGG) (ca. 1182 Ma) and differences from the Hyde School Gneissa€“Rockport Granite suites (1155a€“1180 Ma) suggest that arc plutonism rapidly transitioned into A-type AMCG (anorthosite-mangerite-charnockite-granite) plutonism. Given the short duration of Shawinigan subduction, apparently restricted extent of the ARS (Adirondack Lowlands), location outboard of the pre-Shawinigan Laurentian margin, intrusion into the Lowlands supracrustal sequence, bimodal composition, and recent discovery of enriched mantle rocks in the Lowlands, it is proposed the ARS formed as a consequence of subduction related to closure of a backarc basin that once extended between the Frontenac terrane and the Southern Adirondacks.
机译:安特卫普—罗西变质岩系(ARS)代表与Shawinigan碰撞造山过程中(约1200a-1160 Ma)反阿迪朗达克后弧盆地封闭有关的弧岩浆作用。 ARS具有钙碱性特征,是双峰的,并且缺乏中间组成。 ARS主要侵入大理石和片麻片麻岩,在空间上仅限于黑湖断层东南的阿迪朗达克低地。在判别图上,ARS样本主要在火山弧花岗岩场内绘制。不兼容元素显示出弧形特征,相对于原始地幔,其Nb,Ta,P和Zr为负,而Cs,Pb,La和Nd为正。钕模型年龄(TDM,耗尽地幔模型)的范围为1288至1634 Ma。在黑湖断层附近发现了最老的年龄(1613a-1634年)和最小的εNd(ΔμNd)值,描绘了劳文提亚在肖维尼根造山运动之前的程度。结晶时(1200 Ma)的εNd值远低于耗尽的地幔曲线。与Hermon花岗岩片麻岩(HGG)(约1182 Ma)的地球化学和同位素相似性以及与Hyde School Gneissa-Rockport花岗岩套件(1155a€“ 1180 Ma”)的差异表明弧岩成岩作用迅速转变为A型AMCG(正斜岩) -锰铁矿-锰铁矿-花岗岩)考虑到Shawinigan俯冲作用的持续时间短,ARS(阿迪朗达克低地)的范围明显受限制,Shawinigan Laurentian之前边缘的位置,侵入低地上壳序,双峰构造以及最近在低​​地发现了富集的地幔岩石,有人提出,ARS是由于俯冲作用的结果而形成的,该俯冲作用与曾经在Frontenac地层和南部阿迪朗达克山脉之间延伸的后弧盆地的关闭有关。

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