地球系统的不稳定性放大了在波斯纪末期大规模灭绝之后的生物地球化学振荡
Zi-Heng Li1,2, Timothy M Lenton2, Fei-Fei Zhang3
1State Key Laboratory of Geomicrobiology and Environmental Changes, China University of Geosciences, Wuhan, China.
Nature communications
|April 18, 2025
概括
波斯末期的大规模灭绝造成了地球系统的不稳定,导致了早期的三叠纪碳循环振荡. 这些是由内部系统动态驱动的,而不是火山活动,涉及和碳循环.
科学领域:
- 古气候学 古气候学
- 地质化学 地质化学
- 地球系统科学 地球系统科学
背景情况:
- 波斯纪末期的大规模灭绝导致了极端的地球系统波动,包括高温,海洋无氧和碳循环振荡.
- 地化学同位素代理记录证明了这些振荡,但潜在的机制仍然不清楚.
研究的目的:
- 为了研究驱动早期三叠纪碳循环振荡的机制,在末珀米纪大规模灭绝之后.
- 提出一种由氧化还原条件调节的和碳循环动态的模型.
主要方法:
- 利用地化学同位素代理记录来重建过去的环境条件.
- 采用建模来模拟地球系统动态,重点是对海洋埋葬的氧化还原控制.
主要成果:
- 西伯利亚陷和大规模灭绝启动了早期的三叠纪温室状态.
- 海底氧化还原同质化向无氧放大了反,破坏了地球系统的稳定.
- 内部系统动态,而不是反复的火山活动,触发了碳和同位素的极限周期振荡.
结论:
- 由非线性氧化还原控制驱动的海洋和大气-海洋碳的合振荡解释了早期的三叠纪碳循环变化.
- 海洋无氧在破坏地球系统稳定和产生周期性环境振荡方面发挥了关键作用.
- 该研究强调了地球内部系统反在推动重大古环境变化的重要性.
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