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森林年龄转变与净碳平衡的全球共变
Simon Besnard1, Viola H A Heinrich2,3, Nuno Carvalhais4,5,6
1GFZ Helmholtz Centre for Geosciences, Potsdam, Germany. simon.besnard@gfz.de.
Nature ecology & evolution
|August 20, 2025
概括
全球森林年龄正在下降,特别是在热带地区, 因为年轻的森林无法取代老森林储存的碳.
科学领域:
- 森林生态
- 气候科学
- 碳循环研究
背景情况:
- 森林年龄的动态对于全球碳平衡至关重要,
- 量化森林年龄转变对碳储量和流量的影响对于缓解气候变化至关重要.
研究的目的:
- 分析2010年至2020年的全球森林年龄动态.
- 评估这些动态对地面碳储量和二氧化碳净流量的影响.
- 评估对碳捕获和气候减缓的长期影响.
主要方法:
- 使用全球年龄映射整合 v2.0 数据集用于森林年龄动态.
- 综合卫星衍生的地面碳 (AGC) 数据.
- 采用大气逆转衍生的净二氧化碳流量数据.
主要成果:
- 在亚马逊,刚果盆地,东南亚和西伯利亚,由于火灾和收获等干扰,森林年龄普遍下降.
- 全球净损失约为每年0.14 PgC,原因是老森林转移到更年轻,更低碳的森林.
- 在年轻森林迅速再生的地区暂时加强碳吸收,但不足以抵消老森林的损失.
结论:
- 保护老树林对于维持大量碳储存至关重要.
- 优化森林管理策略是最大限度地减少碳排放并加强减缓气候变化的必要.
- 年轻森林的快速再生无法弥补成熟和老森林的长期碳捕获能力.
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