干旱区科学2021,Vol.13Issue(10) :1015-1025.

Seasonal dynamics of soil water content in the typical vegetation and its response to precipitation in a semi-arid area of Chinese Loess Plateau

ZHOU Tairan HAN Chun QIAO Linjie REN Chaojie WEN Tao ZHAO Changming
干旱区科学2021,Vol.13Issue(10) :1015-1025.

Seasonal dynamics of soil water content in the typical vegetation and its response to precipitation in a semi-arid area of Chinese Loess Plateau

ZHOU Tairan 1HAN Chun 1QIAO Linjie 1REN Chaojie 1WEN Tao 1ZHAO Changming1
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作者信息

  • 1. State Key Laboratory of Grassland and Agro-Ecosystems,School of Life Sciences,Lanzhou University,Lanzhou 730000,China;Gansu Provincial Field Scientific Observation and Research Station of Mountain Ecosystems,Lanzhou University,Lanzhou 730000,China
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Abstract

Soil water content is a key limiting factor for vegetation growth in the semi-arid area of Chinese Loess Plateau and precipitation is the main source of soil water content in this area. To further understand the impact of vegetation types and environmental factors such as precipitation on soil water content, we continuously monitored the seasonal dynamics in soil water content in four plots (natural grassland, Caragana korshinskii, Armeniaca sibirica and Pinus tabulaeformis) in Chinese Loess Plateau. The results show that the amplitude of soil water content fluctuation decreases with an increase in soil depth, showing obvious seasonal variations. Soil water content of artificial vegetation was found to be significantly lower than that of natural grassland, and most precipitation events have difficulty replenishing soil water content below a depth of 40 cm. Spring and autumn are the key seasons for replenishment of soil water by precipitation. Changes in soil water content are affected by precipitation, vegetation types, soil evaporation and other factors. The interception effect of vegetation on precipitation and the demand for water consumption by transpiration are the key factors affecting the efficiency of soil water replenishment by precipitation in this area. Due to artificial vegetation plantation in this area, soil will face a water deficit crisis in the future.

Key words

soil water content/vegetation type/precipitation/seasonal change/evaporation

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基金项目

This work was supported by the Strategic Priority Research Program of Chinese Academy of Sciences(XDA20100101)

Major Special Science and Technology Project of Gansu Province,China(18ZD2FA009)

and the National Natural Science Foundation of China(3152)

出版年

2021
干旱区科学
中国科学院新疆生态与地理研究所,科学出版社

干旱区科学

CSTPCDCSCDSCI
影响因子:1.743
ISSN:1674-6767
被引量2
参考文献量1
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