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首页> 外文期刊>Journal of water reuse and desalination >Effects of magnetized water application on soil and maize growth indices under different amounts of salt in the water
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Effects of magnetized water application on soil and maize growth indices under different amounts of salt in the water

机译:水中不同盐量下磁化水对土壤和玉米生长指数的影响

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Application of low quality water for irrigation is compulsive in facing water scarcity. Use of a magnetic field is an approach to overcome this challenge. This study examined the impact of magnetic field technology on improving germination under water of different salinity levels. An experiment was conducted to determine the effects of saline water levels, i.e. (S1):0.5, (S2):2, (S3):4 and (S4):6 dS/m combined with magnetized technology (with or without) on maize growth. Thus, magnetic treatment was applied by passing the irrigation water through a 1,500 mT magnetic field at 3 litres per minute (lpm) flow rate. Some emergence indices, such as emergence index, emergence rate index (ERI) and mean emergence time, were used to evaluate the germination of maize seed. As for soil properties after plant harvest, the use of magnetically treated irrigation water reduced soil pH but increased soil electrical conductivity and available N and P. ERI increased from 7.6 to 10.2, 9.1 to 11.1, 10.3 to 13.3, and 11.8 to 13.3 when applying the magnetized field for S1, S2, S3 and S4, respectively. Overall, the growth parameters of maize were improved by using magnetic technology with saline water, while the opposite trend was shown for increasing salinity without magnetic treatment.
机译:面对水资源短缺,必须使用劣质水灌溉。磁场的使用是克服这一挑战的一种方法。这项研究检查了磁场技术对改善不同盐度水质下的发芽的影响。结合磁化技术(有或没有),进行了一项实验以确定盐水(S1):0.5,(S2):2,(S3):4和(S4):6 dS / m的盐水浓度对玉米生长。因此,通过使灌溉水以3升/分钟(lpm)的流速通过1,500 mT磁场进行磁处理。利用一些出苗指数,如出苗指数,出苗率指数(ERI)和平均出苗时间来评估玉米种子的发芽率。至于植物收割后的土壤特性,使用电磁处理的灌溉水可降低土壤pH值,但可提高土壤电导率以及有效氮和磷。施用时,ERI从7.6增至10.2、9.1增至11.1、10.3增至13.3、11.8增至13.3。 S1,S2,S3和S4的磁化场。总体而言,采用磁技术和盐水可以改善玉米的生长参数,而未经磁处理则显示出增加盐度的相反趋势。

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