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Effect of Soil Conditioning on the Moisture Content and the Salt Profile of the Soil Under Irrigation with Saline Water

机译:咸水灌溉条件下土壤调理对土壤水分和盐分分布的影响

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The research work was started on the preliminary knowledge that the risk of secondary salinization is high in the hobby gardens around Karcag as the water of the aquifers used for irrigation is saline, nevertheless irrigation in the drought periods is essential for vegetable production. A complex experiment was set up in 12 simple drainage lysimeters at the lysimeter station of the Research Institute of Karcag in 2012 in order to simulate the conditions of irrigation characteristic in the region with the goal of finding a solution to mitigate the harmful effects by means of optimization of irrigation. In 2017–2018 three approaches were applied for the scientific establishment of the problem studying the effect of different irrigation frequencies, different irrigation water qualities, and soil conditioning on the moisture content and the salt profile of the soil. The soil conditioner (Neosol) applied was found to have a positive effect on the water and salt regime of the soil, partly by creating a more favourable vertical distribution of the soil water, and partly preserving more moisture in the soil.
机译:这项研究工作是基于以下初步知识开始的:卡尔卡格附近的业余花园中次生盐渍化的风险很高,因为用于灌溉的蓄水层中的水是盐水,但是在干旱时期的灌溉对于蔬菜生产至关重要。为了模拟该地区灌溉特征的条件,2012年在卡尔卡格研究所的渗漏计站对12个简单的排水渗漏计进行了一项复杂的实验,目的是通过以下方法找到减轻有害影响的解决方案:优化灌溉。在2017-2018年间,采用了三种方法来科学地解决问题,研究不同灌溉频率,不同灌溉水质和土壤条件对土壤水分和盐分分布的影响。人们发现,施用的土壤改良剂(Neosol)对土壤的水和盐分状况有积极的作用,部分是通过使土壤水的垂直分布更有利,部分在土壤中保持更多的水分来实现的。

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