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欧亚大陆 - 北美现代板块边界的岩浆作用:来自切尔斯基山脉(雅库特)碱性火山活动的制约因素

Magmatism at the Eurasian-North American modern plate boundary: Constraints from alkaline volcanism in the Chersky Belt (Yakutia).

作者信息

Tschegg Cornelius, Bizimis Michael, Schneider David, Akinin Vyacheslav V, Ntaflos Theodoros

机构信息

Department of Lithospheric Research, University of Vienna, Vienna, Austria.

Department of Earth and Ocean Sciences, University of South Carolina, Columbia, SC, United States.

出版信息

Lithos. 2011 Jul;125(1-2):825-835. doi: 10.1016/j.lithos.2011.04.008.

Abstract

The Chersky seismic belt (NE-Russia) forms the modern plate boundary of the Eurasian-North American continental plate. The geodynamic evolution of this continent-continent setting is highly complex and remains a matter of debate, as the extent and influence of the Mid-Arctic Ocean spreading center on the North Asian continent since the Eocene remains unclear. The progression from a tensional stress regime to a modern day transpressional one in the Chersky seismic belt, makes the understanding even more complicated. The alkaline volcanism that has erupted along the Chersky range from Eocene through to the Recent can provide constraints on the geodynamic evolution of this continental boundary, however, the source and petrogenetic evolution of these volcanic rocks and their initiating mechanisms are poorly understood. We studied basanites of the central Chersky belt, which are thought to represent the first alkaline volcanic activity in the area, after initial opening of the Arctic Ocean basin. We present mineral and bulk rock geochemical data as well as Sr-Nd-Pb-Hf isotopes of the alkaline suite of rocks combined with new precise K-Ar and Ar/Ar dating, and discuss an integrated tectono-magmatic model for the Chersky belt. Our findings show that the basanites were generated from a homogeneous asthenospheric mantle reservoir with an EM-1 isotopic flavor, under relatively 'dry' conditions at segregation depths around 110 km and temperatures of ~ 1500 °C. Trace element and isotope systematics combined with mantle potential temperature estimates offer no confirmation of magmatism related to subduction or plume activity. Mineral geochemical and petrographical observations together with bulk geochemical evidence indicate a rapid ascent of melts and high cooling rates after emplacement in the continental crust. Our preferred model is that volcanism was triggered by extension and thinning of the lithosphere combined with adiabatic upwelling of the underlying mantle at 37 Ma. This suggests that at that time, rift tectonics in the Mid-Arctic Ocean most likely had also affected the North-Asian continent, causing volcanic activity in the Chersky belt, before the regional geodynamic regime changed from a tensional to compressional. Our conclusions contribute not only to the understanding of volcanism in the Chersky seismic belt (NE-Russia) but also to general aspects of plate dynamics between the Eurasian and North American continent.

摘要

切尔斯基地震带(俄罗斯东北部)构成了欧亚大陆-北美大陆板块的现代板块边界。这种大陆-大陆构造环境的地球动力学演化极为复杂,至今仍是一个有争议的问题,因为自始新世以来,中北冰洋扩张中心对北亚大陆的范围和影响仍不明确。切尔斯基地震带从张应力状态向现代的压扭应力状态的转变,使得相关理解更加复杂。自始新世至近代沿切尔斯基山脉喷发的碱性火山活动,能够为这一大陆边界的地球动力学演化提供约束条件,然而,这些火山岩的源区、岩石成因演化及其起始机制却鲜为人知。我们研究了切尔斯基带中部的碧玄岩,它们被认为代表了北冰洋盆地初始张开后该地区的首次碱性火山活动。我们展示了碱性岩套的矿物和全岩地球化学数据以及锶-钕-铅-铪同位素,并结合新的精确钾-氩和氩-氩年代测定法,讨论了切尔斯基带的综合构造-岩浆模型。我们的研究结果表明,碧玄岩是在相对“干燥”的条件下,于约110千米的分离深度和约1500℃的温度下,由具有富集地幔1(EM-1)同位素特征的均匀软流圈地幔储层产生的。微量元素和同位素体系以及地幔势温度估计结果均未证实存在与俯冲或地幔柱活动相关的岩浆作用。矿物地球化学和岩石学观测结果以及全岩地球化学证据表明,熔体快速上升,且在侵入大陆地壳后冷却速率很高。我们倾向的模型是,火山活动是由岩石圈的伸展和变薄,以及3700万年前下伏地幔的绝热上升所触发的。这表明,在当时区域地球动力学状态从张性转变为压性之前,中北冰洋的裂谷构造很可能也影响了北亚大陆,从而导致了切尔斯基带的火山活动。我们的结论不仅有助于理解切尔斯基地震带(俄罗斯东北部)的火山活动,也有助于理解欧亚大陆和北美大陆之间板块动力学的一般问题。

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