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Influence of the use of wastewater on nutrient absorption and production of lettuce grown in a hydroponic system

机译:废水利用对水耕系统生长生长生殖的养分吸收和生产的影响

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The aim of this research was to evaluate the nutrient absorption and the fresh mass of lettuce plants cultivated using domestic wastewater in a hydroponic system during winter and summer seasons. The hydroponic system used was the Nutrient Film Technique with three treatments: 1) drinking water and chemical fertilizers (T1): 2) wastewater supplemented with chemical fertilizers (T2): and 3) only wastewater (T3) in a completely randomized experimental design with four replicates. The wastewater was previously characterized before being used in the treatments in order to quantify the need for nutrient supplementation in the T2 treatment. To determine the fresh mass, dry mass and nutrient absorption, three whole plant samples of each plot were collected at 1, 7, 14 and 21 days after transplanting. The nutrient absorption occurred according to a growing polynomial function for all treatments and most of the elements throughout the two cycles of the crop, except for potassium and magnesium in the T3 treatment in the winter crop. The results of fresh mass of the plant, pH and electrical conductivity of nutrient solutions were submitted to 2-way ANOVA, considering winter and summer as the first factor and treatments as the second one. A significant interaction between the factors for fresh mass and electrical conductivity was observed, and for that reason the average were submitted to Tukey test (p & 0.05%). For T1 and T2 treatments, significant differences were found between the average of the fresh mass of winter and summer, with higher values in winter. For the T3 treatment, no difference was found between the evaluated periods, but there was a significant difference in relation to the other treatments in both periods. The plants of this last treatment had lower fresh mass, less accumulation of nutrients and visual symptoms of nutritional deficiency. Under the experimental conditions, it was concluded that there was no difference in the nutrient absorption between the T1 and T2 treatment, but in the T3 treatment, the absorption was slower and smaller, demonstrating that it is necessary to supplement the wastewater with nutrients.
机译:该研究的目的是评估在冬季和夏季季节在水耕系统中使用国内废水培养的营养吸收和新鲜质量的莴苣植物。使用的水培系统是具有三种处理的营养薄膜技术:1)饮用水和化肥(T1):2)补充化学肥料(T2)的废水(T2):和3)仅在完全随机的实验设计中的废水(T3)四重复。此前,废水预先在治疗中使用,以便量化T2处理中营养补充的需求。为了确定新鲜的质量,干燥质量和营养吸收,在移植后1,7,14和21天收集每种地块的三个整个植物样品。除了在冬季作物中T3治疗中的钾和镁,根据所有治疗的多项式和大部分元素发生的营养吸收和大部分元素。将植物新鲜质量,pH和营养溶液导电性的结果提交给双向ANOVA,考虑到冬季和夏季作为第一个因素和治疗作为第二个。观察到对新鲜质量和电导率的因素之间的显着相互作用,因此平均值提交到Tukey Test(P& 0.05%)。对于T1和T2治疗,在冬季和夏季的平均值之间发现了显着的差异,冬季冬季较高。对于T3治疗,评估期间没有发现差异,但在这两期的其他治疗方面存在显着差异。最后一次治疗的植物具有较低的新鲜质量,营养成分积累和营养缺乏的视觉症状。在实验条件下,得出结论是T1和T2处理之间的营养吸收没有差异,但在T3处理中,吸收较慢且更小,表明必须用营养物质补充废水。

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