环境科学
降水
气候变化
植树造林
全球变暖
全球变化
大气科学
农林复合经营
气象学
地理
生态学
地质学
生物
作者
Obbe A. Tuinenburg,Joyce Bosmans,Arie Staal
标识
DOI:10.1088/1748-9326/ac55b8
摘要
Abstract Forest restoration is increasingly applied as a climate change mitigation measure. Apart from sequestering carbon, the large-scale addition of trees on Earth may enhance global precipitation levels. Here we estimate the global precipitation effects of the global forest potential by estimating its effects on evaporation and simulating the downwind precipitation effect of the moisture added to the atmosphere. We find that maximum forestation would on average increase evaporation by 0.6 mm d −1 and that two-thirds of that additional evaporation would rain out over land, especially during the growing season. Next, by excluding natural grasslands and prioritizing precipitation enhancement above areas that are projected to become drier due to global climate change, we establish where on Earth forest restoration would have the greatest precipitation benefits. Our results thus provide a first step towards forest restoration programs as double climate-change mitigation efforts.
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