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首页> 外文期刊>Agricultural Water Management >Effects of fixed partial root-zone drying irrigation and soil texture on water and solute dynamics in calcareous soils and corn yield.
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Effects of fixed partial root-zone drying irrigation and soil texture on water and solute dynamics in calcareous soils and corn yield.

机译:固定的局部根区干燥灌溉和土壤质地对石灰性土壤水分和溶质动态以及玉米产量的影响。

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摘要

Water dynamics and salt distribution in the soil were studied under Fixed Partial Root zone Drying irrigation (FPRD) conditions in corn fields in Northern Greece. FPRD irrigation technique was applied without deficit treatment in two calcareous soils, a sandy clay loam and a sandy loam. Soil water content was recorded in the vertical profile of 0.6 m with the use of capacitance sensors in the row and interrow positions of plants. Salt built-up was monitored to the depth of the root zone, bi-weekly, by measuring electrical conductivity (ECe) and the concentrations of soluble cations Ca2+, Mg2+, Na+ and K+ of the saturation extract on irrigated and non irrigated interrow positions. Soil moisture distribution and salt built-up in soil were used to evaluate the potentials and constraints of FPRD efficiency to sustain plant growth and crop production as a low cost drip irrigation technique. The results indicated that FPRD application on both soils was capable of supplying sufficient amounts of water on plant row. Soil analyses showed that salts accumulated to high levels in the soil surface and decreased in depth at the non irrigated interrow positions. Spatial and temporal variability of salt movement and distribution in the soil profile of 0.6 m were ascribed to soil textural differences. The development and yield of corn plants for both soils reached the usual standards for the area with a minor decrease in the sandy loam soil.
机译:在希腊北部玉米田的固定局部根区干燥灌溉(FPRD)条件下研究了土壤中的水动力学和盐分分布。 FPRD灌溉技术在没有石灰处理的情况下应用于两种钙质土壤,一种是砂质壤土,另一种是砂质壤土。在植物的行和行位置使用电容传感器在0.6 m的垂直剖面中记录土壤水分。每两周通过测量电导率(EC e )和可溶性阳离子Ca 2 + 的浓度来监测盐累积到根区的深度,在灌溉和非灌溉行间位置,饱和提取物的Mg 2 + ,Na + 和K + 。利用土壤水分分布和土壤中的盐分累积来评估FPRD效率作为可持续的滴灌技术来维持植物生长和农作物产量的潜力和制约因素。结果表明,在两种土壤上施用FPRD都能在植物行上供应足够量的水。土壤分析表明,盐分在土壤表层积累高,而在非灌溉行间位置深度降低。盐在土壤中的运动和分布在0.6 m的时空变化归因于土壤质地差异。两种土壤的玉米植株的生长和产量均达到该地区的常规标准,而沙壤土的含量略有下降。

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