气候变化
环境科学
碳纤维
减缓气候变化
生物多样性
环境保护
环境资源管理
固碳
生物多样性保护
森林经营
自然资源经济学
温室气体
公司治理
农林复合经营
保护区
业务
全球变暖
持续性
碳储量
自然保护区
地理
碳补偿
蓝炭
作者
Yuwen Fu,Wang Li,Zheng Niu,Fang Chen,Bing Zhang,Hailang Qiao,Li Wang,Jens-Christian Svenning
标识
DOI:10.1038/s41467-026-69505-x
摘要
Protected areas (PAs) are central to China’s forest conservation strategy, yet their effectiveness for carbon storage across governance and management contexts remains unclear. A clearer understanding of their current and future carbon benefits is essential for informing conservation and climate policy. Here, using 1-km GEDI satellite data, we show that forests within China’s PAs store on average 68.29 ± 0.17 Mg C ha⁻¹ - about 13% more than matched unprotected forests. Carbon gains are highest in national parks (18.19 ± 0.69 Mg C ha⁻¹) and in managed naturally regenerating forests (9.85 ± 0.36 Mg C ha⁻¹), although some PA categories underperform. To assess future potential, we integrate GEDI observations with CMIP6 climate projections and find that under the high-emission SSP5-8.5 climate scenario, strongly protected areas could retain an additional ~600 ± 36.39 Tg C by 2100. These results show that strong protection and optimized management substantially enhance China’s carbon sink, offering major opportunities for climate mitigation and biodiversity conservation. Protected areas (PAs) are central to China’s forest conservation strategy, yet their carbon storage effectiveness under different governance and management contexts remains uncertain. Here, authors show that stronger protection enables substantially greater forest carbon gains in China’s PAs, both now and in the future.
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