奥特基因碳酸盐和全球碳循环的历史
Daniel P Schrag1, John A Higgins, Francis A Macdonald
1Department of Earth and Planetary Sciences, Harvard University, Cambridge, MA 02138, USA. daniel_schrag@harvard.edu
概括
沉积物中的天然碳酸盐形成显著影响了地球过去的碳循环. 这一过程解释了在古代低氧或无氧时期的主要碳同位素转移.
科学领域:
- 地质化学 地质化学
- 古气候学 古气候学
- 沉积地质学的地质学
背景情况:
- 解释沉积岩碳同位素需要了解地球的历史碳循环和氧化还原预算.
- 在毛孔流体中早期的透析过程中形成的奥特基因碳酸盐被认为是过去的关键碳汇.
- 它的意义因大气氧气水平和海洋无氧而有所不同.
研究的目的:
- 为解释沉积岩的碳同位素组成提供一个新的框架.
- 重新评估authigenic碳酸盐在地球历史上全球碳循环中的作用.
- 为了解释在古代地质时期观察到的极端碳同位素变化.
主要方法:
- 发展碳同位素质量平衡的概念框架.
- 模拟外原性碳酸盐形成对碳循环的影响.
- 分析碳同位素数据与古环境条件 (氧气水平,无氧) 相结合.
主要成果:
- 在过去的碳循环中,甲基碳酸盐是主要的沉积物,特别是在低大气O2或无氧条件下.
- 这种水槽是现代碳同位素平衡中较小的组成部分,原因是氧气水平很高.
- 这种全球性碳酸盐沉的增长和减少解释了前生代,古生代和三叠纪的显著碳同位素变化.
结论:
- 甲基碳酸盐在调节全球碳循环方面发挥了至关重要的,历史上变化的作用.
- 拟议的框架为解释古代沉积碳同位素记录提供了一个新的镜头.
- 了解这种代谢过程是重建地球过去的气候和生物地质化学循环的关键.
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