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Time series analysis of mantle cycles Part Ⅱ: The geologic record in zircons, large igneous provinces and mantle lithosphere

机译:地幔周期的时间序列分析第二部分:锆石,大火成岩省和地幔岩石圈的地质记录

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Igneous and detrital zircons have six major U/Pb isotopic age peaks in common (2700 Ma,1875 Ma,1045 Ma,625 Ma,265 Ma and 90 Ma).For igneous rocks,each age peak is comprised of subpeaks with distinct geographic distributions and a subpeak age range per age peak ≤100 Myr.There are eight major LIP age peaks (found on ≥ 10 crustal provinces) of which only four are in common to major detrital zircon age peaks (2715 Ma,1875 Ma,825 Ma,90 Ma).Of the whole-rock Re depletion ages,58% have corresponding detrital zircon age peaks and 55% have corresponding LIP age peaks.Ten age peaks are found in common to igneous zircon,detrital zircon,LIP,and Re depletion age time series (3225 Ma,2875 Ma,2145 Ma,2085 Ma,1985 Ma,1785 Ma,1455 Ma,1175 Ma,825 Ma,and 90 Ma),and these are very robust peaks on a global scale as recorded in both crustal and mantle rocks.About 50% of the age peaks in each of these time series correspond to predicted peaks in a 94-Myr mantle cycle,including four of the ten peaks in common to all four time series (2875 Ma,1785 Ma,825 Ma and 90 Ma).Age peak widths and subpeak ranges per age peak suggest that mantle events responsible for age peaks are <100 Myr and many < 50 Myr in duration,Age peak geographic distributions show three populations (≤ 1000 Ma,2500 -1000 Ma,≥2500 Ma),with the number of new provinces in which age peaks are represented decreasing with time within each population.The breaks between the populations (at 2.5 Ga and 1 Ga) fall near the onsets of two transitions in Earth history.The First Transition may represent a change from stagnant-lid tectonics into plate tectonics and the Second Transition,the onset of subduction of continental crust.The major factor controlling geographic distribution of age peaks is the changing locations of orogeny.Before ~ 2 Ga,age subpeaks and peaks are housed in orogens within or around the edges of crustal provinces,mostly in accretionary orogens,but beginning at 1.9 Ga,collisional orogens become more important.The coincidence in duration between magmatic flare-ups in Phanerozoic arcs and duration of age subpeaks (10-30 Myr) is consistent with subpeaks representing periods of enhanced arcrelated magmatism,probably caused by increased subduction flux.The correlation of isotopic age peaks between time series supports a cause and effect relationship between mantle plume activity,continental magma production at convergent margins,and crustal deformation.Correlation of over half of the detrital zircon age peaks (and six of the nine major peaks) with Re depletion age peaks supports an interpretation of the zircon peaks as crustal growth rather than selective preservation peaks.
机译:火成岩和碎屑锆石共有6个主要的U / Pb同位素年龄峰(2700 Ma,1875 Ma,1045 Ma,625 Ma,265 Ma和90 Ma)。对于火成岩,每个年龄峰均由具有独特地理分布的亚峰组成。每个峰峰值≤100 Myr的亚峰年龄范围。有八个主要LIP年龄峰(发现于≥10个地壳省),其中只有四个与主要碎屑锆石年龄峰相同(2715 Ma,1875 Ma,825 Ma, 90 Ma)。在整个岩石的Re耗尽年龄中,58%具有相应的碎屑锆石年龄峰值,55%具有相应的LIP年龄峰值。在火成锆石,碎屑锆石,LIP和Re耗尽年龄中共有十个年龄峰值。时间序列(3225 Ma,2875 Ma,2145 Ma,2085 Ma,1985 Ma,1785 Ma,1455 Ma,1175 Ma,825 Ma和90 Ma),这两个地壳在全球范围内都是非常强劲的峰值在每个时间序列中,大约50%的年龄峰对应于94毫秒地幔周期中的预测峰,包括十个共同峰中的四个到所有四个时间序列(2875 Ma,1785 Ma,825 Ma和90 Ma)。每个年龄峰的年龄峰宽度和亚峰范围表明,造成年龄峰的地幔事件持续时间<100 Myr,持续时间很多<50 Myr,年龄峰地理分布显示三个种群(≤1000 Ma,2500 -1000 Ma,≥2500Ma),每个种群中代表年龄高峰的新省的数量随时间而减少。种群之间的间隔(2.5 Ga和1 Ga)接近地球历史上两个过渡的起点。第一次过渡可能代表了从停滞盖层构造向板块构造的转变,第二次过渡可能代表了地壳俯冲的开始。控制年龄峰值地理分布的主要因素在〜2 Ga之前,年龄亚峰和峰值位于地壳省边缘内或周围的造山带中,主要在增生造山带中,但从1.9 Ga开始,碰撞造山带变得更为重要。准生代弧岩浆爆发的持续时间与年龄亚峰持续时间(10-30 Myr)的证据与代表与弧相关的岩浆作用增强的时期的亚峰一致,可能是由俯冲通量增加引起的。时间序列支持之间同位素年龄峰的相关性地幔柱活动,汇聚边缘的大陆岩浆产生和地壳变形之间的因果关系。超过一半的碎屑锆石年龄峰(和九个主要峰中的六个)与Re耗尽年龄峰的相关性支持了对锆石的峰值是地壳的生长,而不是选择性保存的峰值。

著录项

  • 来源
    《地学前缘(英文版)》 |2019年第4期|1327-1336|共10页
  • 作者

    Kent C.Condie; Stephen J.Puetz;

  • 作者单位

    Department of Earth & Environmental Science, New Mexico Institute of Mining and Technology, Socorro, NM, 87801, USA;

    Progressive Science Institute, Honolulu, HI, 96815, USA;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 04:29:19
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