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The consequences of saline irrigation treatments on physicochemical soil characteristics

The consequences of saline irrigation treatments on physicochemical soil characteristics

von Hossein Hashemi, Salem Bouri und Zied Haj-Amor
Softcover - 9783668718289
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Beschreibung

Research Paper (postgraduate) from the year 2018 in the subject Environmental Sciences, , language: English, abstract: When saline water is used to irrigate crops in arid environments, appropriate irrigation management should be applied to avoid negatively impacting soil characteristics. In this study, the effects of irrigating date palms with saline water (2,24 g l¿1) on soil physicochemical characteristics such as the electrical conductivity (ECe), the pH of the saturated soil paste (pHe), the concentrations of soluble cations (Ca2+, Mg2+, Na+), the sodium adsorption ratio (SAR), the saturated soil hydraulic conductivity (Ks), and the volumetric water content of the soil (¿v) were evaluated in a Tunisian Saharan cropland, the Dergine Oasis, during a 4-year period (2012¿2015).

The effects of three different irrigation treatments of date palms on soil properties were investigated: low treatment (90% of the net irrigation requirement (NIR) of date palms was applied); medium treatment (100% of NIR was applied), and high treatment (110% of NIR was applied). The results showed that the application of saline water for irrigation inevitably has a negative impact on the physicochemical properties of the soil.

Irrigation with saline water was observed to have severe negative impacts on the soil characteristics, especially ECe, Na+, Ks, and ¿v. However, among the three irrigation treatments applied, statistical analysis (Duncan¿s multiple range test) indicated that the high treatment significantly (p < 0.05) minimized the degradation of soil characteristics by the saline water; this treatment decreased ECe, Na+, and SAR and increased the water content, ¿v, of the studied soil.

Details

Verlag GRIN Verlag
Ersterscheinung 10. September 2018
Maße 21 cm x 14.8 cm x 0.2 cm
Gewicht 45 Gramm
Format Softcover
ISBN-13 9783668718289
Auflage 1. Auflage
Seiten 20

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