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Automated system developed to control pH and concentration of nutrient solution evaluated in hydroponic lettuce production.

机译:开发了自动化系统来控制水培生菜生产中评估的pH值和营养液浓度。

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Lettuce is one of the most widely consumed leaf vegetables. In hydroponic the growth depends upon the composition of nutrient solution. Due to its nutrient absorption, the conductivity and pH suffer continuous variations. This paper describes the development of a system completely managed by a lab-made software. It monitors the conductivity and pH throughout 24 h during the whole cycle of production. Also, allows adjust automatically any variation, through solenoid valves which dispense solutions of acid/base or nutrient. The efficiency of the proposed instrumentation was evaluated by simultaneously cultivation of same kind of lettuce (Vanda) in two different ways, hydroponics in greenhouse controlled with the developed devices, and grown conventionally in soil, adopted as referential. Agronomic and chemical parameters of commercial interest were analyzed for both crop, attesting the precocity in harvest (64 against 71days) with reduced labor, better control and higher productivity, especially in fresh and dry matter of aerial parts, presenting 267.56 and 13.33 g plant--1 respectively, using the developed system. The data sequence regarding the concentration of nutrients for the automated hydroponic system was similar to those obtained by the mentioned researchers, as follows: K>N>Ca>P>Mg>S>Fe>Zn>Mn>Cu. This similarity highlights the efficiency of controlling the parameters of conductivity and pH in the instrumental system applied to hydroponics, offering the producer an effective and viable alternative in the production of lettuce. All rights reserved, Elsevier.
机译:生菜是最广泛食用的叶类蔬菜之一。在水耕中,生长取决于营养液的组成。由于其吸收养分,电导率和pH值连续变化。本文描述了完全由实验室制作的软件管理的系统的开发。在整个生产周期中,它会在整个24小时内监控电导率和pH值。此外,还可以通过分配酸/碱或营养液的电磁阀自动调节任何变化。通过以两种不同的方式同时种植相同种类的莴苣(Vanda)来评估所提出的仪器的效率,这是由开发的设备控制的温室中的水培法,并以常规方式在土壤中生长,作为参考。分析了两种作物都有商业价值的农艺和化学参数,证明了收获前的优势(64天对抗71天),从而减少了劳动力,更好的控制和更高的生产率,特别是在空中零件的新鲜和干物质中,种植了267.56和13.33 g植物sup>-1 ,分别使用开发的系统。有关自动水培系统养分浓度的数据序列与上述研究人员获得的数据序列相似,如下:K> N> Ca> P> Mg> S> Fe> Zn> Mn> Cu。这种相似性突显了控制应用于水培法的仪器系统中电导率和pH参数的效率,为生菜生产者提供了一种有效且可行的生菜替代方法。保留所有权利,Elsevier。

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