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The Impact of Advanced Static Magnetic Units on Water Properties and the Performance of Aeroponic and NFT Systems for Lettuce

机译:先进的静态磁装置对莴苣水性性能的影响及促使NFT系统的性能

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摘要

The current study was conducted during two seasons, 2018 and 2019, to determine the optimal coupling of hydroponic systems with magnetized water levels (MWLs) to improve irrigation water characteristics, water productivity and lettuce production quality. Three hydroponic nutrient film technique (NFT; tower aeroponic and pyramidal aeroponic) systems and three levels of magnetic units (magnetized water level 1; MWL1 = 3800 gauss, level 2; MWL2 = 5250 gauss, level 3; MWL3 = 6300 gauss, and regular water (RW) was represented as a control) were tested. There was an increase in total dissolved solids (TDS) and a decrease in pH of water by increasing the magnetic level over time during the irrigation period. Maximum contents of nitrogen (N; 72.8 ppm), phosphorus (P; 223.3 ppm), and potassium (K; 425.0 ppm) were recorded in nutrient solution under irrigation with MWL3. The increase in magnetic intensity resulted in lower water consumption in all hydroponic systems compared to control. On the other hand, tower and pyramidal systems consumed less water compared to the NFT system. Maximum water consumption (3719.7 and 4175.4 m(3) ha(-1) for both seasons, respectively) was observed in the NFT system under RW. Maximum water productivity was recorded with the integration of NFT system + MWL3 (83.4 kg m(-3)) in the first season and tower system + MWL3 (71.2 kg m(-3)) in the second season. In addition, the highest leaf performance curves and lettuce yield (414 g per head) and its quality (3.50, 0.46, and 7.40 mg L-1 for N, P, and K contents) were recorded with the integration of the NFT system + MWL3 compared to other treatments.
机译:目前的研究是在2018年和2019年的两个季节进行的,以确定具有磁化水平(MWL)的水培系统的最佳耦合,以改善灌溉水分,水生产率和生菜生产质量。三种水培营养薄膜技术(NFT;塔架塔架和金字塔透镜)系统和三个级磁装置(磁化水位1; MWL1 = 3800高斯,2级; MWL2 = 5250高斯,3级; MWL3 = 6300高斯和常规测试水(RW)作为对照)进行了测试。总溶解固体(TDS)的增加和通过在灌溉期间随时间提高磁性水平来增加水的pH值。在用MWL3的灌溉下,在营养溶液中记录氮气(N; 72.8 ppm),磷(P; 223.3ppm)和钾(k; 425.0ppm)的最大含量。与对照相比,磁性强度的增加导致所有水培系统中的耗水量较低。另一方面,与NFT系统相比,塔和金字塔型系统消耗了较少的水。在RW下的NFT系统中分别观察到最大用水量(3719.7和4175.4 m(3)ha(-1)。在第一个季节和塔式系统+ MWL3(71.2kg M(-3)中的NFT系统+ MWL3(83.4千克M(-3))中的整合记录了最大水生产率。此外,随着NFT系统+的集成,记录了最高叶片性能曲线和莴苣产率(每头部414克)及其质量(3.50,0.46和7.40mg L-1) MWL3与其他治疗相比。

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