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An essential role for continental rifts and lithosphere in the deep carbon cycle

机译:深度碳循环中的大陆裂缝和岩石圈的重要作用

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摘要

The continental lithosphere is a vast store for carbon. The carbon has been added and reactivated by episodic freezing and re-melting throughout geological history. Carbon remobilization can lead to significant variations in CO2 outgassing and release in the form of magmas from the continental lithosphere over geological timescales. Here we use calculations of continental lithospheric carbon storage, enrichment and remobilization to demonstrate that the role for continental lithosphere and rifts in Earth's deep carbon budget has been severely underestimated. We estimate that cratonic lithosphere, which formed 2 to 3 billion years ago, originally contained about 0.25 Mt C km(-3). A further 14 to 28 Mt C km(-3) is added over time from the convecting mantle and about 43 Mt C km-3 is added by plume activity. Re-melting focuses carbon beneath rifts, creating zones with about 150 to 240 Mt C km(-3), explaining the well-known association of carbonate-rich magmatic rocks with rifts. Reactivation of these zones can release 28 to 34 Mt of carbon per year for the 40 million year lifetime of a continental rift. During past episodes of supercontinent breakup, the greater abundance of continental rifts could have led to short-term carbon release of at least 142 to 170 Mt of carbon per year, and may have contributed to the high atmospheric CO2 at several times in Earth's history.
机译:大陆岩石圈是碳的巨大商店。通过整个地质历史中,通过情节冷冻和重新熔化,加入并重新激活碳。碳重组可导致CO 2除气相的显着变化,并以岩石圈的形式释放地质尺度。在这里,我们使用大陆型岩石碳储存,富集和重组来证明地球深度碳预算的大陆岩石圈和裂谷的作用受到严重低估。我们估计了2至30亿年前形成的裂缝岩石圈,最初包含约0.25亿km(-3)。随着时间的推移,从对流地幔中加入另外14至28mt C km(-3),并且通过羽流量加入约43mt c km-3。重新融化射击下方的碳,产生约150至240毫升C km(-3)的区域,用裂缝解释了富含碳酸盐的岩浆岩石的知名结合。每年可重新激活这些区域可以每年释放28至34吨的碳,这是欧陆裂谷的4000万年。在过去的超大剧集期间,每年大量的大陆裂缝可能导致短期碳释放至少142%至170吨的碳,并且可能在地球历史上几次促进了高大气二氧化碳。

著录项

  • 来源
    《Nature geoscience》 |2017年第12期|共8页
  • 作者单位

    Macquarie Univ ARC Ctr Excellence Core Crust Fluid Syst Dept Earth &

    Planetary Sci N Ryde NSW Australia;

    Univ New Mexico Dept Earth &

    Planetary Sci Albuquerque NM 87131 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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