Arid
DOI10.1016/j.agwat.2017.01.005
An isotope method to quantify soil evaporation and evaluate water vapor movement under plastic film mulch
Wu, Youjie; Du, Taisheng; Ding, Risheng; Yuan, Yusen; Li, Sien; Tong, Ling
通讯作者Du, Taisheng
来源期刊AGRICULTURAL WATER MANAGEMENT
ISSN0378-3774
EISSN1873-2283
出版年2017
卷号184页码:59-66
英文摘要

Plastic film mulch is a cropping system feature for water saving that is used extensively in arid and semiarid areas. However, research on water flow beneath and through the perforated film mulches is still limited, and the detailed processes of vaporization and transport of evaporation vapor in the soil are not examined thoroughly. Here we used an isotope-based method to quantitatively describe the processes of the soil water and vapor exchange in a maize field under plastic mulch. Micro-lysimeter-based methods and sap flow combined with soil water balance method (E(F-B)) were conducted to compare and verify the results. It shows that heavy oxygen isotope (180) depleted and enriched alternately along with the processes of condensation and distillation, and enriched again when the second evaporation occurred in condensation water adhered in plastic film. Soil evaporating front was presented in 5-10 cm soil layer, and the exchange motions of water vapor occurred in 0-5 cm soil layer before it diffused to the outside. During the whole maize growing season, about 4.5% of soil water in the 0-20 cm soil layer was evaporated, and 72.6% of the evaporation vapor was condensed and 70.0% of this condensation water was evaporated again. About 2.3% of soil water evaporated through plastic film holes, with the mean evaporation rate of 0.80 mm/d. A good agreement was found between the evaporation determined by our isotope-based method (E(Iso)) and (E(F-B)) method. The evaporation rate was relatively high with the ratio of E to ET around 21.2%, although the areas of the holes only taking up 0.5-5.0% of the whole area of the plastic cover. Therefore, the isotope-based method was robust in estimating evaporation under plastic film mulch. These quantitative analyses will improve our understanding of the mechanism of soil water movement and vapor exchange under plastic mulch and provide accurate estimation of evaporation in field. (C) 2017 Elsevier B.V. All rights reserved.


英文关键词Plastic film mulch Isotope-based method Evaporation Water vapor movement Maize field
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000397351400007
WOS关键词NORTHWEST CHINA ; EVAPOTRANSPIRATION COMPONENTS ; MICROLYSIMETRY TECHNIQUES ; HYDROLOGICAL MODEL ; OXYGEN-ISOTOPE ; ENERGY-BALANCE ; WINTER-WHEAT ; ARID REGION ; MAIZE ; FIELD
WOS类目Agronomy ; Water Resources
WOS研究方向Agriculture ; Water Resources
来源机构中国农业大学
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/197140
作者单位China Agr Univ, Ctr Agr Water Res China, Beijing 100083, Peoples R China
推荐引用方式
GB/T 7714
Wu, Youjie,Du, Taisheng,Ding, Risheng,et al. An isotope method to quantify soil evaporation and evaluate water vapor movement under plastic film mulch[J]. 中国农业大学,2017,184:59-66.
APA Wu, Youjie,Du, Taisheng,Ding, Risheng,Yuan, Yusen,Li, Sien,&Tong, Ling.(2017).An isotope method to quantify soil evaporation and evaluate water vapor movement under plastic film mulch.AGRICULTURAL WATER MANAGEMENT,184,59-66.
MLA Wu, Youjie,et al."An isotope method to quantify soil evaporation and evaluate water vapor movement under plastic film mulch".AGRICULTURAL WATER MANAGEMENT 184(2017):59-66.
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