Earth greening and climate change reshaping the patterns of terrestrial water sinks and sources

IF 9.4 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Yu Yan, Zhiyong Liu, Lei Chen, Xiaohong Chen, Kairong Lin, Zhenzhong Zeng, Xin Lan, Liyan Huang, Yajun Wang, Lili Yao, Linyin Cheng, Zhimin Ma
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Abstract

While vegetation brings positive benefits for climate mitigation and adaptation, the impact of ongoing global greening remains controversial due to its uncertain effects on hydrological cycle. Here, we quantitatively assess the impact of vegetation dynamics on global water availability by proposing a comprehensive framework to quantify the terrestrial water sink and source scores associated with vegetation dynamics. These scores serve as indicators of whether large alterations in water resources have occurred in the lands due to either the greening or degradation of surface vegetation. We use multisource datasets from climate model projections, remote sensing, and local measurements to examine the impact of vegetation dynamics on water availability over the periods of 1982 to 2019 and 2015 to 2100. During historical observation periods, regions such as India and northern China experienced large depletion of water resources as a result of vegetation greening, leading to water scarcity. In the future, a shift is projected for India and northern China, transforming them into regions capable of meeting water demands arising from vegetation greening. This transition is largely attributed to wetting and warming climates. It indicates that trade-off effects between climate and underlying vegetation dynamics may result in strengthening regional hydrological resilience and ensuring the stable status of local water resources. Furthermore, tropical rainforests (except for the Amazon Rainforest) are experiencing greening with minimal impact on local water resources consistently. These insights are valuable for globally identifying optimal locations to implement ecological restoration, facilitating the balance of sustainable water resources and vegetation greening.
地球绿化和气候变化重塑了陆地水汇和水源的格局
尽管植被对减缓和适应气候变化具有积极的作用,但由于其对水文循环的影响不确定,目前全球绿化的影响仍存在争议。在此,我们通过提出一个综合框架来量化与植被动态相关的陆地汇和水源得分,定量评估植被动态对全球水可用性的影响。这些分数可以作为表明土地上的水资源是否由于地表植被变绿或退化而发生大变化的指标。我们利用气候模式预测、遥感和当地测量的多源数据集,研究了1982年至2019年和2015年至2100年期间植被动态对水分供应的影响。在历史观测期内,印度和中国北方等地区由于植被绿化导致水资源大量枯竭,导致水资源短缺。未来,预计印度和中国北方将发生转变,使它们能够满足植被绿化带来的用水需求。这种转变很大程度上归因于湿润和变暖的气候。这表明气候与下垫植被动态之间的权衡效应可能会增强区域水文恢复力,确保当地水资源的稳定状态。此外,热带雨林(除了亚马逊雨林)正在经历绿化,对当地水资源的影响一直很小。这些见解对于全球范围内确定实施生态恢复的最佳地点,促进可持续水资源和植被绿化的平衡具有重要价值。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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