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火山活动和撞击加热在大规模灭绝气候转变中的作用。

Role of volcanism and impact heating in mass extinction climate shifts.

作者信息

Kaiho Kunio

机构信息

Department of Earth Science, Graduate School of Science, Tohoku University, Sendai, 980-8578, Japan.

出版信息

Sci Rep. 2024 Apr 30;14(1):9946. doi: 10.1038/s41598-024-60467-y.

Abstract

This study investigates the mechanisms underlying the varied climate changes witnessed during mass extinctions in the Phanerozoic Eon. Climate shifts during mass extinctions have manifested as either predominant global cooling or predominant warming, yet the causes behind these occurrences remain unclear. We emphasize the significance of sedimentary rock temperature in comprehending these climate shifts. Our research reveals that low-temperature heating of sulfide leads to global cooling through the release of sulfur dioxide (SO), while intermediate-temperature heating of hydrocarbons and carbonates releases substantial carbon dioxide (CO), contributing to global warming. High-temperature heating additionally generates SO from sulfate, further contributing to global cooling. Different degrees of contact heating of the host rock can lead to different dominant volatile gas emissions, crucially driving either warming or cooling. Moreover, medium to high-temperature shock-heating resulting from asteroid impacts produces soot from hydrocarbons, also contributing to global cooling. Large-scale volcanic activity and asteroid impacts are both events that heat rocks, emitting the same gases and particles, causing climate changes. The findings elucidate the critical role of heating temperature and heating time in understanding major climate changes during mass extinctions.

摘要

本研究调查了显生宙大灭绝期间所见证的各种气候变化背后的机制。大灭绝期间的气候变化表现为主要的全球变冷或主要的全球变暖,然而这些现象背后的原因仍不清楚。我们强调沉积岩温度在理解这些气候变化中的重要性。我们的研究表明,硫化物的低温加热通过释放二氧化硫(SO)导致全球变冷,而碳氢化合物和碳酸盐的中温加热释放大量二氧化碳(CO),导致全球变暖。高温加热还会从硫酸盐中产生SO,进一步导致全球变冷。母岩不同程度的接触加热会导致不同的主要挥发性气体排放,这对变暖或变冷起着关键驱动作用。此外,小行星撞击产生的中高温冲击加热会使碳氢化合物产生烟灰,也有助于全球变冷。大规模火山活动和小行星撞击都是加热岩石的事件,释放相同的气体和颗粒,导致气候变化。这些发现阐明了加热温度和加热时间在理解大灭绝期间主要气候变化中的关键作用。

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