首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Evolution of Palaeoproterozoic mafic intrusions located within the thermal aureole of the Sudbury Igneous Complex, Canada: Isotopic, geochronological and geochemical evidence
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Evolution of Palaeoproterozoic mafic intrusions located within the thermal aureole of the Sudbury Igneous Complex, Canada: Isotopic, geochronological and geochemical evidence

机译:位于加拿大萨德伯里火成岩复合体热极内的古元古代镁铁质侵入体的演化:同位素,年代学和地球化学证据

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Impact cratering and their resultant geological phenomena are recognised as significant factors in the lithological and biologic evolution of the earth. Age-dating of impact events is critical in correlating cause and effects for these catastrophic processes. The Falconbridge and Drury Township (Twp) intrusions were emplaced at the contact between Neoarchaean basement and Palaeoproterozoic volcanosedimentary rocks, and also lie at the southeast and southwest edges of the Sudbury Igneous Complex (SIC), within its thermal contact aureole. The Falconbridge Twp intrusion is dated at 2441 +/- 3 Ma by U-Pb zircon, with evidence of Archaean inheritance from its host granitoids. Granitoids from the southernmost Abitibi Subprovince are dated here between 2670 +/- 11 Ma for an undeformed Algoman granite, and 2696 +/- 18 Ma for a foliated granitoid, consistent with existing data from the Abitibi Greenstone Belt and from the Wawa Subprovince. Major and trace element geochemical evidence, common-Pb isotopic compositions, and epsilon(Nd)(2440) values between 0 and -1 are all consistent with a Palaeoproterozoic origin for the Falconbridge Twp intrusion, and support inclusion in the East Bull Lake-type suite of leucogabbroic plutons and sills.In contrast. the Drury Twp intrusion gives a U-Pb zircon age of 1859 - 13 Ma, coincident with the date of SIC-emplacement. While the major and trace element compositions are comparable to the Falconbridge data, the Drury displays significant heterogeneity in 82440, with values ranging from +3.7 to -0.1, and epsilon(Nd)(2440) contains more radiogenic Pb isotopic compositions. Field, geochemical and isotopic evidence clearly distinguishes this intrusion from constituents of the SIC itself, and indicates that the Drury too is a Palaeoproterozoic intrusion. This requires that apparently unshocked, undeformed magmatic-looking zircon has been grown or reset in a postmagmatic setting. This has significant implications for the identification of mantle-derived magmas and crustal remelts associated with large impact craters. A resetting mechanism involving aggressive hydrothermal alteration of zircon facilitated by halogen-complexing is proposed, inducing rapid, postshock lead loss and subsequent annealing. Copyright (c) 2005 Elsevier Ltd.
机译:撞击坑及其造成的地质现象被认为是地球岩性和生物演化的重要因素。影响事件的年龄约会对于关联这些灾难性过程的因果关系至关重要。 Falconbridge和Drury镇(Twp)侵入体位于新古生界基底与古元古代火山岩沉积岩之间的接触处,并且也位于Sudbury火成岩复合体(SIC)的东南和西南边缘,处于热接触极光中。 U-Pb锆石对Falconbridge Twp入侵的日期为2441 +/- 3 Ma,有证据表明古生代是从其宿主花岗石类遗传而来的。来自最南端的阿比提比省的花岗岩在这里的日期为未变形的Algoman花岗岩为2670 +/- 11 Ma,带叶类的花岗岩为2696 +/- 18 Ma,与来自阿比提比绿石带和瓦瓦省的现有数据一致。主要和微量元素的地球化学证据,常见的Pb同位素组成以及介于0和-1之间的epsilon(Nd)(2440)值均与Falconbridge Twp侵入的古元古代起源相一致,并支持列入东牛湖型一组白带小节和窗台。 Drury Twp入侵的U-Pb锆石年龄为1859年-13 Ma,与SIC植入日期相吻合。尽管主要元素和微量元素的组成与Falconbridge数据相当,但Drury在82440中显示出显着的异质性,其值范围为+3.7至-0.1,并且epsilon(Nd)(2440)包含更多的放射性Pb同位素组成。野外,地球化学和同位素证据清楚地将这种入侵与SIC本身的成分区分开,并表明Drury也是古元古代入侵。这就要求在后岩浆环境中生长或重置看上去无震动,未变形的岩浆状锆石。这对于识别与大型撞击坑相关的地幔源岩浆和地壳重熔具有重要意义。提出了一种通过卤素络合促进锆石发生剧烈水热蚀变的复位机制,从而引起快速的,震后铅损失和随后的退火。版权所有(c)2005 Elsevier Ltd.

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