碳循环. 碳循环. 碳循环. 碳循环. 太阳光控制水柱,在北极淡水中处理碳
Rose M Cory1, Collin P Ward2, Byron C Crump3
1Earth and Environmental Sciences, University of Michigan, Ann Arbor, MI 48109, USA. rmcory@umich.edu.
概括
永久土的解释放出溶解的有机碳 (DOC). 光化学氧化,而不是细菌呼吸,主导了北极水域的DOC处理,显著影响了全球碳预算.
科学领域:
- 环境科学 环境科学
- 生物地质化学生物地质化学
- 气候科学 气候科学
背景情况:
- 永久土的解释放出大量的溶解有机碳 (DOC) 进入水生系统.
- 这种DOC的命运,无论是氧化成CO2还是出口到海洋,对于了解气候变化至关重要.
- 目前的理解主要将DOC加工归因于细菌呼吸.
研究的目的:
- 调查控制溶解有机碳 (DOC) 在受永久土影响的北极水域解的命运的主要机制.
- 量化光化学氧化和细菌呼吸对DOC加工的相对贡献.
主要方法:
- 对北极湖泊和河流进行实地采样.
- 化实验用于测量DOC处理速度.
- 区分光化学和微生物降解途径.
主要成果:
- 发现光化学氧化是北极湖泊和河流中DOC去除的主要过程.
- 光化学氧化占水柱中处理的DOC总量的70-95%.
- 氧化的光化学处理占北极地表水中二氧化碳排放总量的很大一部分 (三分之一).
结论:
- 光化学氧化在处理来自北极水生环境中永久土解的DOC中比细菌呼吸发挥更重要的作用.
- 这一发现凸显了光降解在北极碳预算中的重要性及其对全球气候变化的影响.
- 需要进一步的研究才能将这些光化学过程完全整合到气候模型中.
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