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The impacts of magnetic treatment of irrigation water on plant, water and soil characteristics

机译:灌溉水磁处理对植物,水和土壤特性的影响

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Magnetic treatment has remained a controversial process for antiscale treatment of industrial and domestic water treatment over the past many years. Hence a study was initiated to evaluate the magnetic treatment of irrigation water on growth and yield parameters of cow pea and brinjal using pot and field experiments. Also, the impact of magnetic treatment on water properties and soil moisture were also evaluated. Under pot experiment, the treatments tried are normal water, hard water 150 and 300 ppm, saline water 500, 1000 and 2000 ppm of both control and magnetic treated solutions, respectively. Two permanent magnets with the strength of 1800-2000 G was used. The results showed that magnetic treatment of irrigation water types led to an improvement in crop growth and yield parameters of cow pea. Magnetic treatments tend to reduce electrical conductivity, total dissolved solids and salinity levels of all solutions except normal irrigation water, whereas a definite trend of increase in pH was noticed for all the treatments. Soil moisture study results showed that the differences in soil moisture for days 1-3 after irrigation with magnetized irrigation water were lesser than those for the control solutions. Irrigation with magnetized irrigation water caused higher soil moisture compared with the control for different solution of saline and hard water respectively. In the field experiment with brinjal also the magnetic treatment of normal and saline water improved the yield by 25.8 and 17.0% over control. Scanning electron microscope image analysis results confirmed that under magnetic treated hard water, there was variation in the crystal structure of calcium carbonate. The length of these crystals is more when compared to control solutions. These results indicated the beneficial effect of magnetically treated irrigation water on growth and yield of crops, the properties of water and confirmed the possibility of using low quality water for agriculture. (C) 2016 Elsevier B.V. All rights reserved.
机译:在过去的几年中,磁处理一直是工业和家庭用水处理中反垢处理的有争议的过程。因此,开始进行盆栽和田间试验,以评估灌溉水磁处理对cow豆和茄子生长和产量参数的影响。此外,还评估了磁处理对水质和土壤水分的影响。在盆栽实验中,尝试的处理分别是普通水,对照溶液和磁力处理溶液的硬水150和300 ppm,盐水500、1000和2000 ppm。使用了两个强度为1800-2000 G的永磁体。结果表明,灌溉水类型的磁处理可改善crop豆的作物生长和产量参数。磁力处理往往会降低除正常灌溉水以外的所有溶液的电导率,总溶解固体和盐度水平,而在所有处理中都注意到pH值明显增加的趋势。土壤水分研究结果表明,用磁化灌溉水灌溉后1-3天的土壤水分差异小于对照溶液。与盐水和硬水不同溶液的对照相比,用磁化灌溉水灌溉引起的土壤湿度更高。在使用茄子的田间试验中,普通水和盐水的磁处理也使产量比对照提高了25.8和17.0%。扫描电子显微镜图像分析结果证实,在经过磁处理的硬水中,碳酸钙的晶体结构存在变化。与对照溶液相比,这些晶体的长度更长。这些结果表明用磁处理的灌溉水对农作物的生长和产量的有益作用,水的特性,并证实了将低质量水用于农业的可能性。 (C)2016 Elsevier B.V.保留所有权利。

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