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首页> 外文期刊>Environmental earth sciences >Effects of excessive irrigation of date palm on soil salinization, shallow groundwater properties, and water use in a Saharan oasis
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Effects of excessive irrigation of date palm on soil salinization, shallow groundwater properties, and water use in a Saharan oasis

机译:过度灌溉椰枣对撒哈拉绿洲土壤盐渍化,浅层地下水特性和用水的影响

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In arid oases, soil salinity and a rise in shallow groundwater are serious threats to long-term sustainability of irrigated agriculture. Understanding the impacts of irrigation practices on soil salinity and shallow groundwater dynamics is critical for improving soil conditions and water efficiency. In this study, the impacts of excessive irrigation of date palms with low-quality water on soil salinization and shallow groundwater properties (depth and electrical conductivity) were evaluated for a 10-year period (2005-2015) in a Saharan Tunisian oasis. The study included three phases: (1) assessment of the suitability of groundwater for irrigating date palms; (2) quantification of the long-term water use of date palm plantations; and (3) quantification of dynamic patterns of soil electrical conductivity and shallow saline groundwater in the studied oasis for a 10-year period (2005-2015). Results of this study indicated that under high evapotranspiration conditions, the identified low-quality water resources (leading to high soil salinization risk) coupled with rapidly rising shallow groundwater at critical depths (<1.5 m) (resulting from the high water use) were key factors of the rapid increase in soil salinization within the oasis. The soil electrical conductivity built up to levels that exceeded the salt tolerance of date palms, estimated at 4 dS m(-1). Although the excessive use of irrigation water dilutes the groundwater, and its salinity decreases, the risk of increasing soil salinity is greater because of rising water table.
机译:在干旱的绿洲中,土壤盐分和浅层地下水的增加严重威胁着灌溉农业的长期可持续性。了解灌溉方式对土壤盐分和浅层地下水动力学的影响对于改善土壤条件和水效率至关重要。在这项研究中,在撒哈拉突尼斯的绿洲中评估了为期10年(2005年至2015年)的低质量水椰枣过度灌溉对土壤盐渍化和浅层地下水特性(深度和电导率)的影响。该研究包括三个阶段:(1)地下水对椰枣灌溉的适宜性评估; (2)量化枣椰子人工林的长期用水量; (3)在研究的绿洲中进行为期10年(2005-2015年)的土壤电导率和浅层盐水地下水动态模式的量化。这项研究的结果表明,在高蒸散条件下,已确定的劣质水资源(导致高土壤盐碱化风险)以及临界深度(<1.5 m)(由于高用水量导致)的浅层地下水迅速上升是关键绿洲内土壤盐碱化迅速增加的因素。土壤的电导率达到超过椰枣耐盐性的水平,估计为4 dS m(-1)。尽管过量使用灌溉水稀释了地下水,并降低了其盐度,但由于地下水位的升高,增加土壤盐分的风险更大。

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