Welcome to Chinese Journal of Applied Ecology! Today is Share:

Chinese Journal of Applied Ecology ›› 2021, Vol. 32 ›› Issue (7): 2407-2414.doi: 10.13287/j.1001-9332.202107.015

• Original Articles • Previous Articles     Next Articles

Partitioning of evapotranspiration and the influencing factors of evapotranspiration components in a shrub ecosystem dominated by Artemisia ordosica and Hedysarum fruticosum var. mongolicum in the Mu Us Desert, Northwest China

WEI Ning-ning1,2,3, MU Yan-mei1,2,3, JIANG Xiao-yan1,2,3, JIA Xin1,2,3*, GAO Sheng-jie1,2,3, JIANG Yan1,2,3, JIN Chuan1,2,3, HAN Cong1,2,3, ZHA Tian-shan1,2,3   

  1. 1School of Soil and Water Conservation, Beijing Forestry University, Beijing 100083, China;
    2Key Laboratory of State Forestry Administration on Soil and Water Conservation, Beijing Forestry University, Beijing 100083, China;
    3Yanchi Ecology Research Station of the Mu Us Desert, Yanchi 751500, Ningxia, China
  • Received:2020-12-29 Revised:2021-04-10 Online:2021-07-15 Published:2022-01-15
  • Contact: *xinjia@bjfu.edu.cn
  • Supported by:
    National Natural Science Foundation of China (32071843, 31670708, 32071842, 31670710) and the undamental Research Funds for the Central Universities (2015ZCQ-SB-02).

Abstract: Evapotranspiration (ET) is an important part of water cycle and energy flow in ecosystem. Accurate estimation of ET and its components is critical for understanding the impacts of ecophysiological processes on ecosystem water balance and plant water use strategy. Using the eddy-covariance technique and the micro-lysimeter, we measured ET, evaporation (E), transpiration (T) of the Artemisia ordosica-Hedysarum fruticosum var. mongolicum shrubland in the Mu Us Desert during May 20 to September 15, 2019, quantified the ET components, and analyzed the seasonal characteristics and influencing factors of ET and its components. The results showed that T was the main component of ET in the growing season, with a T/ET of 53.1%. T/ET increased and E/ET decreased as precipitation decreased. The partitioning of evapotranspiration was regulated by precipi-tation. At the seasonal scale, the value of E was positively correlated with soil water content at 10 cm depth (SWC10) and net radiation (Rn), while SWC10 was the main factor influencing E. The value of T increased with the increases of Rn and leaf area index (LAI), and increased first and then decreased with the increases of soil water content at 30 cm layer (SWC30). T was affected by SWC30, Rn and LAI. Moisture was the main influencing factor of ET. The ET/P in the growing season was 109.2% and was 250.5% in May, indicating that the water consumption of ET in early growing season was partly from the precipitation in non-growing season.

Key words: Mu Us Desert, eddy correlation, micro-lysimeter, evapotranspiration, transpiration, evaporation