Spatiotemporal variations of water use efficiency and its driving factors in Inner Mongolia from 2001 to 2020

用水效率 蒸散量 降水 环境科学 蒸汽压差 水循环 干旱 含水量 蒸腾作用 初级生产 大气科学 农学 生态系统 地理 植物 生态学 光合作用 灌溉 气象学 生物 地质学 岩土工程
作者
Li Mei,Siqin Tong,Shan Yin,Yuhai Bao,Xiaojun Huang,Alateng Tuya,Rui Wang,Enliang Guo,Zhihui Yuan,Dalai Nashun,Suriguga Gao,Xinyi Liu,Zhigang Ye
出处
期刊:Journal of Geographical Sciences [Springer Nature]
卷期号:33 (1): 169-194 被引量:5
标识
DOI:10.1007/s11442-023-2078-x
摘要

Water use efficiency (WUE) is an important variable to explore coupled relationships in carbon and water cycles. In this study, we first compared the spatial variations of annual gross primary productivity (GPP) and evapotranspiration (ET) using four GPP and ET products. Second, we selected the products closest to the flux towers data to estimate WUE. Finally, we quantitatively analyzed the impact of climate change and soil water content on WUE. The results showed that: (1) Four GPP and ET products provided good performance, with GOSIF-GPP and FLDAS-ET exhibiting a higher correlation and the smallest errors with the flux tower data. (2) The spatial pattern of WUE is consistent with that of GPP and ET, gradually decreasing from the northeast to the southwest. Higher WUE values appeared in the northeast forest ecosystem, and lower WUE values occurred in the western Gobi Desert, with a value of 0.28 gC m−2 mm−1. The GPP and ET products showed an increasing trend, while WUE showed a decreasing trend (55.15%) from 2001 to 2020. (3) The spatial relationship between WUE and driving factors reveal the variations in WUE of Inner Mongolia are mainly affected by soil moisture between 0 and 10 cm (SM0–10cm), vapor pressure deficit (VPD), and precipitation, respectively. (4) In arid regions, VPD and precipitation exhibit a major influence on WUE. An increase in VPD and precipitation has a negative and positive effect on WUE, with threshold values of approximately 0.36 kPa and 426 mm, respectively. (5) In humid regions, SM0–10cm, VPD, SM10–40cm, and SM40–100cm exert a significant impact on WUE, especially SM0–10cm, and weakens with increasing soil depths, these differences may be related to physiological structure and living characteristics of vegetation types in different climate regimes. Our results emphasize the importance of VPD and soil moisture in regional variability in WUE.
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