Arid
DOI10.1016/j.fcr.2024.109454
Optimizing cotton yield and soil salinity management: Integrating brackish water leaching and freshwater drip irrigation with subsurface drainage
Li, Dongwei; Yang, Yuhui; Zhao, Yulong; Zhou, Xinguo; Han, Qibiao; Liu, Hongguang; Li, Mingsi
通讯作者Liu, HG ; Li, MS
来源期刊FIELD CROPS RESEARCH
ISSN0378-4290
EISSN1872-6852
出版年2024
卷号314
英文摘要Context: The contradiction between land improvement in saline-alkali areas and water-saving irrigation in the arid regions is becoming increasingly prominent, affecting the movement of soil water and salt as well as cotton growth. Objectives: To effectively improve soil quality and alleviate soil salinization issues under the premise of water conservation to increase cotton yields, a method involves conducting brackish water leaching during the nongrowing season and utilizing freshwater drip irrigation during the growing season for cotton under subsurface drainage. Methods: A 2-year field experiment using six subsurface drainage systems at different depths of 0.8 and 1.1 m and different spacings of 10, 20, and 30 m respectively, alongside a non-drainage treatment as control (CK) was conducted in Aral, Xinjiang, China. Furthermore, efficient simulations of soil water and salt dynamics as well as cotton growth in arid regions under subsurface drainage conditions could be achieved using AquaCrop and DRAINMOD-S models. Results: The results showed that soil salinity leaching could be achieved effectively with the use of appropriate brackish water and subsurface drainage pipes with the proper technical parameters during the non-growing season. Compared with the non-drainage treatment, the subsurface drainage and drip irrigation with freshwater reduced soil salinity effectively and improved growth indices and cotton yield considerably during the growing season. The rate of soil desalination exhibited an upward trend as the distance of subsurface pipes decreased, and the growth indices of cotton increased with the decrease in distance and depth of t subsurface pipes. Conclusion: This study concluded that using brackish water in the non-growing season, appropriate selection of irrigation water volume, spacing, and depth of subsurface pipes can simultaneously improve soil salinity drainage and cotton yield. Implications: This research suggests new irrigation and management recommendations for agricultural production and achieves more efficient water use and crop cultivation under arid conditions, providing a new insight into the efficient use of saline soil resources in the arid regions in Xinjiang.
英文关键词Subsurface drainage Brackish water AquaCrop and Drainmod-S models Soil salinity Cotton yield
类型Article
语种英语
收录类别SCI-E
WOS记录号WOS:001255901100001
WOS关键词AQUACROP MODEL ; SIMULATION ; QUALITY ; PERFORMANCE ; IMPACTS ; SYSTEMS ; XINJIANG ; GROWTH ; MANURE ; LANDS
WOS类目Agronomy
WOS研究方向Agriculture
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/403730
推荐引用方式
GB/T 7714
Li, Dongwei,Yang, Yuhui,Zhao, Yulong,et al. Optimizing cotton yield and soil salinity management: Integrating brackish water leaching and freshwater drip irrigation with subsurface drainage[J],2024,314.
APA Li, Dongwei.,Yang, Yuhui.,Zhao, Yulong.,Zhou, Xinguo.,Han, Qibiao.,...&Li, Mingsi.(2024).Optimizing cotton yield and soil salinity management: Integrating brackish water leaching and freshwater drip irrigation with subsurface drainage.FIELD CROPS RESEARCH,314.
MLA Li, Dongwei,et al."Optimizing cotton yield and soil salinity management: Integrating brackish water leaching and freshwater drip irrigation with subsurface drainage".FIELD CROPS RESEARCH 314(2024).
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