Meta-analysis shows the impacts of ecological restoration on greenhouse gas emissions
作者:Tiehu He, Weixin Ding, Xiaoli Cheng, Yanjiang Cai, Yulong Zhang, Huijuan Xia, Xia Wang, Jiehao Zhang, Kerong Zhang, Quanfa Zhang · 发表于:Nature Communications · 年份:2024 · DOI:10.1038/s41467-024-46991-5 · 被引用次数:124 · 研究领域:Peatlands and Wetlands Ecology、Fire effects on ecosystems、Atmospheric and Environmental Gas Dynamics
Abstract International initiatives set ambitious targets for ecological restoration, which is considered a promising greenhouse gas mitigation strategy. Here, we conduct a meta-analysis to quantify the impacts of ecological restoration on greenhouse gas emissions using a dataset compiled from 253 articles. Our findings reveal that forest and grassland restoration increase CH4 uptake by 90.0% and 30.8%, respectively, mainly due to changes in soil properties. Conversely, wetland restoration increases CH4 emissions by 544.4%, primarily attributable to elevated water table depth. Forest and grassland restoration have no significant effect on N2O emissions, while wetland restoration reduces N2O emissions by 68.6%. Wetland restoration enhances net CO2 uptake, and the transition from net CO2 sources to net sinks takes approximately 4 years following restoration. The net ecosystem CO2 exchange of the restored forests decreases with restoration age, and the transition from net CO2 sources to net sinks takes about 3-5 years for afforestation and reforestation sites, and 6-13 years for clear-cutting and post-fire sites. Overall, forest, grassland and wetland restoration decrease the global warming potentials by 327.7%, 157.7% and 62.0% compared with their paired control ecosystems, respectively. Our findings suggest that afforestation, reforestation, rewetting drained wetlands, and restoring degraded grasslands through grazing exclusion, reducing grazing intensity, or converting croplan...