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大气水汽同位素组成的短期变异特征
引用本文:张世春,孙晓敏,王建林,于贵瑞,温学发.大气水汽同位素组成的短期变异特征[J].地理学报(英文版),2011,21(3):401-416.
作者姓名:张世春  孙晓敏  王建林  于贵瑞  温学发
作者单位:Key Laboratory of Ecosystem Network Observation and Modeling;Institute of Geographic Sciences and Natural Resources Research;Key Laboratory of Wetland Ecology and Environment;Northeast Institute of Geography and Agroecology;Qingdao Agricultural University;
基金项目:No.30970517,No.31070408,Ministry of Science and Technology of China
摘    要:Stable isotopes of atmospheric water vapor reveal rich information on water movement and phase changes in the atmosphere. Here we presented two nearly continuous time-series of δD and δ18O of atmospheric water vapor (δv) measured at hourly intervals in surface air in Beijing and above a winter wheat canopy in Shijiazhuang using in-situ meas-urement technique. During the precipitation events, the δv values in both Beijing and Shiji-azhuang were in the state of equilibrium with precipitation water, revealing the influence of precipitation processes. However, the δv departures from the equilibrium state were positively correlated with local relative humidity. Note that the δv tended to enrich in Beijing, but deplete in Shijiazhuang during the precipitation events, which mainly resulted from the influence of transpiration processes that enriched the δv in Shijiazhuang. On seasonal time-scale, the δv values were log-linear functions of water vapor mixing ratios in both Beijing and Shijiazhuang. The water vapor mixing ratio was an excellent predictor of the δv by the Rayleigh distillation mechanisms, indicating that air mass advection could also play an important role in deter-mining the δv. On a diurnal time-scale, the δv reached the minimum in the early afternoon hours in Beijing which was closely related to the atmospheric processes of boundary layer entrainment. During the peak of growing season of winter wheat, however, the δv reached the minimum in the early morning, and increased gradually through the daytime, and reached the maximum in the late afternoon, which was responsible by the interaction between boundary layer entrainment and the local atmospheric processes, such as transpiration and dew for-mation. This study has the implications for the important role of vegetation in determining the surface δv and highlights the need to conduct δv measurement on short-term (e.g. diurnal) time scales.

关 键 词:stables  isotopes  atmospheric  water  vapor  precipitation  TDLAS
收稿时间:19 November 2010

Short-term variations of vapor isotope ratios reveal the influence of atmospheric processes
Shichun?Zhang,Xiaomin?Sun,Jianlin?Wang,Guirui?Yu,Xuefa?Wen.Short-term variations of vapor isotope ratios reveal the influence of atmospheric processes[J].Journal of Geographical Sciences,2011,21(3):401-416.
Authors:Shichun Zhang  Xiaomin Sun  Jianlin Wang  Guirui Yu  Xuefa Wen
Institution:ZHANG Shichun1,2,SUN Xiaomin1,WANG Jianlin3,YU Guirui1,WEN Xuefa1 1. Key Laboratory of Ecosystem Network Observation and Modeling,Institute of Geographic Sciences and Natural Resources Research,CAS,Beijing 100101,China,2. Key Laboratory of Wetland Ecology and Environment,Northeast Institute of Geography and Agroecology,Changchun 130012,3. Qingdao Agricultural University,Qingdao 266109,Shandong
Abstract:Stable isotopes of atmospheric water vapor reveal rich information on water movement and phase changes in the atmosphere. Here we presented two nearly continuous time-series of δD and δ 18O of atmospheric water vapor (δ v) measured at hourly intervals in surface air in Beijing and above a winter wheat canopy in Shijiazhuang using in-situ measurement technique. During the precipitation events, the δ v values in both Beijing and Shijiazhuang were in the state of equilibrium with precipitation water, revealing the influence of precipitation processes. However, the δ v departures from the equilibrium state were positively correlated with local relative humidity. Note that the δ v tended to enrich in Beijing, but deplete in Shijiazhuang during the precipitation events, which mainly resulted from the influence of transpiration processes that enriched the δ v in Shijiazhuang. On seasonal time-scale, the δ v values were log-linear functions of water vapor mixing ratios in both Beijing and Shijiazhuang. The water vapor mixing ratio was an excellent predictor of the δ v by the Rayleigh distillation mechanisms, indicating that air mass advection could also play an important role in determining the δ v. On a diurnal time-scale, the δ v reached the minimum in the early afternoon hours in Beijing which was closely related to the atmospheric processes of boundary layer entrainment. During the peak of growing season of winter wheat, however, the δ v reached the minimum in the early morning, and increased gradually through the daytime, and reached the maximum in the late afternoon, which was responsible by the interaction between boundary layer entrainment and the local atmospheric processes, such as transpiration and dew formation. This study has the implications for the important role of vegetation in determining the surface δ v and highlights the need to conduct δ v measurement on short-term (e.g. diurnal) time scales.
Keywords:stables isotopes  atmospheric water vapor  precipitation  TDLAS  
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