首页> 外文OA文献 >Neodymium and strontium isotopic characterization of the Wrangellia, Alexander, Stikine, Taku and Yukon crystalline terranes of the Canadian Cordillera.
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Neodymium and strontium isotopic characterization of the Wrangellia, Alexander, Stikine, Taku and Yukon crystalline terranes of the Canadian Cordillera.

机译:加拿大堇青石的Wrangellia,Alexander,Stikine,Taku和Yukon晶状地球的钕和锶同位素特征。

摘要

Nd and Sr isotopic data are reported from samples of the Alexander, Wrangellia, and Stikine terranes of the Canadian Cordillera. Initial ε(Nd) values range from 0 to +9.5, for Alexander, -0.5 to +6.7 for Stikine, and +1 to +7.3 for Wrangellia. Initial ⁸⁷Sr/⁸⁶Sr ratios for igneous samples of the terranes range from 0.70276-0.70663 (Alexander), 0.70369-0.70531 (Stikine), and 0.70323-0.70481 (Wrangellia). These data indicate that the terranes are isotopically very juvenile and probably resided in intra-oceanic environments until their accretion to North America. The origin of the terranes is envisioned to have occurred via island-arc volcanic processes, with accompanying erosion, sedimentary recycling, metamorphism and plutonism, with the critical characteristic that none of these processes involved more than trivial amounts of old, pre-existing continental crustal material. The terranes are thus exceptional when compared to many other Phanerozoic crustal regions that are composed predominantly of remobilized, pre-existing crust. Isotopic data are also presented for the Gravina belt, the Taku terrane, the Yukon Crystalline terrane (YCT), and the Coast Mountains batholith. The Gravina belt is isotopically similar to the Alexander terrane and most of the material in the belt was probably derived from Alexander. The Taku terrane is composed of juvenile and evolved crust and its relation to surrounding terranes is poorly understood. Nd data from the YCT indicate that it is partly composed of material derived from an early Proterozoic source. The proximity of the YCT to Stikine therefore raises important questions about the styles of accretion of the terranes. It is possible that the YCT was positioned next to Stikine by strike-slip faults, that there is a stratigraphic link between the terranes, or Stikine and other inboard terranes are thrust fragments that were emplaced on top of YCT. The YCT is isotopically and lithologically similar to the Yukon-Tanana terrane and may be the southern continuation of that terrane. Nd and U-Pb data for the CMB requires that it is composed of a Proterozoic crustal component and an isotopically juvenile component. It is likely that the Proterozoic component is YCT crust and the juvenile component is a combination of mantel-derived material and juvenile terrane crust. The style of crustal growth in the Cordillera, the sweeping up of juvenile terranes, may be an important analog to Precambrian crustal genesis.
机译:Nd和Sr同位素数据是从加拿大Cordillera的Alexander,Wrangellia和Stikine地雷样品中报告的。亚历山大的初始ε(Nd)值在0到+9.5之间,Stikine的初始ε(Nd)值在-0.5到+6.7之间,兰吉拉的初始ε(Nd)值在+1到+7.3之间。地球的火成样品的初始⁸⁷Sr/⁸⁶Sr之比在0.70276-0.70663(亚历山大),0.70369-0.70531(Stikine)和0.70323-0.70481(兰吉利亚)之间。这些数据表明,这些地层的同位素非常幼小,可能一直居住在海洋内部环境中,直到它们增加到北美为止。可以预料到,这些地层的起源是通过岛弧的火山作用而来的,伴随着侵蚀,沉积物循环,变质和岩体作用,其关键特征是这些作用所涉及的不超过平凡的旧大陆陆壳的数量。材料。因此,与许多其他主要由活动的,早已存在的地壳组成的生代地壳区域相比,地表是特殊的。还提供了Gravina带,Taku地貌,Yukon Crystalline地貌(YCT)和Coast Mountains岩基的同位素数据。 Gravina带在同位素上与Alexander地层相似,并且该带中的大部分材料可能来自Alexander。 Taku地层由幼年和演化的地壳组成,人们对其与周围地层的关系了解甚少。 YCT的Nd数据表明它部分地由早期元古代来源的物质组成。因此,YCT靠近Stikine提出了有关地形积聚样式的重要问题。 YCT可能由于走滑断层而靠近Stikine,或者在地层之间存在地层联系,或者Stikine和其他内侧地层是置于YCT顶部的逆冲断层。 YCT在同位素和岩性上与育空-塔纳纳(Yukon-Tanana)地貌相似,可能是该地貌的南部延续。 CMB的Nd和U-Pb数据要求它由元古代地壳组分和同位素少年组分组成。古生代成分可能是YCT地壳,而幼年成分可能是源自壁炉架的材料和幼年地壳的组合。山脉中地壳的生长方式,即幼年地层的席卷,可能是前寒武纪地壳成因的重要类似物。

著录项

  • 作者

    Samson Scott Douglas.;

  • 作者单位
  • 年度 1990
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-31 15:19:59

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