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滴灌在农业盐渍-碱土中的应用控制土壤盐分,提高作物产量:来自全球荟萃分析的证据。

Drip irrigation in agricultural saline-alkali land controls soil salinity and improves crop yield: Evidence from a global meta-analysis.

机构信息

College of Water Resources and Architecture Engineering, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

Institute of Soil and Water Conservation, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

出版信息

Sci Total Environ. 2023 Jul 1;880:163226. doi: 10.1016/j.scitotenv.2023.163226. Epub 2023 Apr 3.

Abstract

Saline-alkali land, a precious candidate arable land resources, plays a critical role in achieving agricultural sustainability. Drip irrigation (DI) is an effective method for rationalizing of saline-alkali land. Nevertheless, the inapposite application of DI increases the risk of secondary salinization, significantly leading to severe soil degradation and yield decline. In this study, we conducted a meta-analysis to quantify the impacts of DI on soil salinity and crop yield to determine the appropriate DI management strategies for an irrigated agricultural system in saline-alkali land. The results showed that DI generally decreased soil salinity in the root zone by 37.7 % and increased crop yield by 37.4 % relative to flooding irrigation (FI). Drip emitters with a flow rate of 2-4 L h were recommended to obtain positive effects on soil salinity control and agricultural production when an irrigation quota was below 50 % crop evapotranspiration (ETc), and the salinity of irrigation water was between 0.7 and 2 dS m. Further, we also found that drip-irrigated cotton had a higher yield on fine-textured saline soils. Our study provides scientific recommendations for applying DI technology worldwide in the saline-alkali land.

摘要

盐碱地是一种宝贵的耕地资源,对实现农业可持续发展具有重要意义。滴灌(DI)是合理利用盐碱地的有效方法。然而,滴灌应用不当会增加次生盐渍化的风险,导致严重的土壤退化和产量下降。本研究采用元分析方法量化了滴灌对土壤盐分和作物产量的影响,旨在为盐碱地灌溉农业系统确定适宜的滴灌管理策略。结果表明,与淹灌(FI)相比,滴灌通常可使根区土壤盐分降低 37.7%,作物产量提高 37.4%。当灌溉定额低于作物蒸散量(ETc)的 50%且灌溉水盐度在 0.7 至 2 dS m 之间时,推荐使用流量为 2-4 L h 的滴头,以获得对土壤盐分控制和农业生产的积极影响。此外,我们还发现滴灌棉花在细质地的盐碱土壤上具有更高的产量。本研究为全球范围内在盐碱地上应用滴灌技术提供了科学建议。

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