Feng Luwei, Wang Yumiao, Fensholt Rasmus, Tong Xiaoye, Tagesson Torbern, Zhang Xiaoxin, Ardö Jonas, Zhou Jie, Shao Wenxuan, Dou Yujie, Sang Yirong, Tian Feng
Hubei Key Laboratory of Quantitative Remote Sensing of Land and Atmosphere, School of Remote Sensing and Information Engineering, Wuhan University, Wuhan, China.
Perception and Effectiveness Assessment for Carbon-neutrality Efforts, Engineering Research Center of Ministry of Education, Institute for Carbon Neutrality, Wuhan University, Wuhan, China.
Nat Commun. 2025 May 10;16(1):4354. doi: 10.1038/s41467-025-59544-1.
Soil quality is fundamental to nutrient-rich food production and the sustainability of terrestrial ecosystems. However, inappropriate agricultural practices often lead to persistent soil exposure to air and sunlight, which increases soil organic matter losses and erosion risks, particularly under climate extremes. Here, we provide a satellite-based mapping of daily soil exposure occurrence across global croplands from 2001 to 2022 and evaluate the associated degradation risks caused by extreme climate events. We find that while 57% of global croplands experienced a reduction in soil exposure duration in the past two decades, 86% are increasingly subjected to climate extremes. The areas exposed to increasing climate extremes tend to have higher soil organic carbon levels, indicating an intensified degradation risk of global nutrient-rich cropland soils. Our study offers spatio-temporally explicit insights into global cropland soil exposure and its vulnerability to climate extremes, providing evidence to support improvements in sustainable agriculture practices.
土壤质量是营养丰富的粮食生产和陆地生态系统可持续性的基础。然而,不当的农业做法往往导致土壤持续暴露于空气和阳光下,这增加了土壤有机质流失和侵蚀风险,特别是在极端气候条件下。在此,我们提供了2001年至2022年全球农田每日土壤暴露情况的卫星测绘,并评估了极端气候事件造成的相关退化风险。我们发现,虽然在过去二十年中,全球57%的农田土壤暴露持续时间有所减少,但86%的农田正越来越多地受到极端气候的影响。暴露于不断增加的极端气候下的地区往往具有较高的土壤有机碳水平,这表明全球营养丰富的农田土壤退化风险加剧。我们的研究提供了关于全球农田土壤暴露及其对极端气候脆弱性的时空明确见解,为支持改进可持续农业做法提供了证据。