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海洋循环对早期伊欧纪温室气体变暖的敏感性
Sandra Kirtland Turner1, Andy Ridgwell1, Allison L Keller1
1Department of Earth and Planetary Sciences, University of California, Riverside, CA 92521.
概括
早期欧时代的超热气体削弱了全球海洋的翻转循环,放大了碳同位素的外出. 这一发现影响了过去的变暖事件中碳排放的估计,并为未来的气候预测提供了信息.
科学领域:
- 古海洋学是古海洋学.
- 气候科学 气候科学
- 地球系统科学 地球系统科学
背景情况:
- 早期欧时代的高热气候导致了深海的显著变暖和碳同位素 (δ13C) 游览.
- 了解这些事件期间全球海洋翻转循环的变化对于识别气候驱动因素和反来说至关重要.
研究的目的:
- 为了研究早期欧时代的高热和全球海洋翻转循环之间的关系.
- 为了确定海洋循环的变化是否影响了碳同位素外行的规模.
主要方法:
- 高分辨率的谷底形菌稳定同位素记录 (δ13C和δ18O) 来自早期伊奥森气候最佳时期.
- 考古海洋学数据与中等复杂度的地球系统模型进行比较.
主要成果:
- 在高温期间,在赤道大西洋深处始终观察到放大的δ13C外游大小.
- 模型模拟表明,全球变暖引起的南大洋翻转循环的减弱会放大大西洋的δ13C外游.
- 模型数据的一致性支持结论是,在欧高热时期全球翻转循环的反复减弱.
结论:
- 纪的高热气流与全球海洋翻转循环的减弱有关.
- 海洋循环的变化对碳同位素外流的解释产生了重大影响,影响了碳释放规模的估计.
- 过去观察到的因气候变暖而导致的海洋翻转减弱与未来气候变化预测一致,特别是关于大西洋的预测.
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