新建立的森林主导着土地覆盖转换引起的全球碳封存变化
Dailiang Peng1,2, Bing Zhang3,4,5, Shijun Zheng6
1International Research Center of Big Data for Sustainable Development Goals, Beijing, China.
Nature communications
|July 16, 2025
概括
全球土地覆盖面的变化导致了碳净增长,主要是由于植树和再造林努力抵消了森林砍伐. 新建立的森林显示出更高的碳捕获效率.
科学领域:
- 陆地生态系统 地球生态系统
- 生物地质化学循环的过程
- 遥感 遥感 遥感 遥感
背景情况:
- 土地覆盖转换 (LCC) 显著改变了陆地碳动态.
- LCC对碳捕获的净影响仍然不确定.
- 了解这些变化对于减缓气候变化至关重要.
研究的目的:
- 从1981年到2019年,量化LCC引起的生态系统净生产率 (NEP) 的变化.
- 评估全球土地覆盖变化对碳封存净影响.
- 为了确定区域和土地利用实践驱动碳增加和损失.
主要方法:
- 使用了远程传感驱动的BEPS模型.
- 集成的高分辨率HILDA+数据用于LCC分析.
- 在38年 (1981-2019) 期间,NEP的量化变化.
主要成果:
- LCC导致全球碳净增长达229 Tg C.
- 造林和再造林增加了NEP的1559 Tg C,抵消了森林砍伐的损失 (-1544 Tg C).
- 新建立的森林,特别是在北半球,带来了收益,而热带森林砍伐造成了损失.
结论:
- 尽管森林丧失,但全球LCC导致碳净增长,主要是由于植树/再造林.
- 较年轻,新建立的森林比较老的森林具有更高的碳捕获效率.
- 基于空间的土地利用策略,包括植树和森林管理,对于增强碳汇和实现碳中和至关重要.
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