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Use of a decision support system for management of the drainage solution in semi-closed hydroponic systems under different drainage fractions.

机译:使用决策支持系统管理不同排水分数下的半封闭水耕系统的排水解决方案。

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Soilless cultivation, especially in closed-loop hydroponic systems offers a great option for water saving in greenhouses. Capture and recycling of the excess irrigation water that drains out of the root zone is possible and might considerably improve water use efficiency in greenhouse crops. However, irrigation water in Mediterranean countries is characterized by high salt concentrations with typical EC levels of about 2 dS m -1, including mainly Na + and Cl -. Hence, in most cases, the quality of the available irrigation water in terms of mineral composition is incompatible with the application of completely closed hydroponic systems. Consequently, to enable Mediterranean growers to adopt recycling of the excess irrigation water, efficient solutions have to be found to minimize salt accumulation. Objective of this work was to test a decision-support-system developed for management of the drainage water in semi-closed hydroponic systems, based on a Na + mass-balance model and measurements of plant water consumption. For this purpose, experiments were carried out from February to July 2012 in a polyethylene covered greenhouse located at the experimental farm of the University of Thessaly in Greece. To test the system under different case studies, a tomato crop grown in an open system with a drainage fraction of about 30% was compared with crops grown in semiclosed systems with drainage fractions of 30% and 60%. The results showed that the model included in the decision support system of the greenhouse, for management of hydroponic systems fertigation, could be successfully used for the control of Na + concentration in the nutrient solution. The increase of drainage fraction in the semiclosed system from 30% to 60% helped to keep better conditions in the root zone, as indicated by the lower EC of the drainage solution as compared to the semiclosed system with 30% drainage, and resulted to higher crop production. However, the higher water use efficiency was observed under the semiclosed system with 30% drainage treatment, while the fertilisers discharged were also less under the same treatment than under the open or semiclosed system with 60% drainage treatments. CT International Symposium on New Technologies for Environment Control, Energy-Saving and Crop Production in Greenhouse and Plant Factory - Greensys 2013, Jeju, Korea Republic, 22-27 September 2013.
机译:无土栽培,尤其是在闭环水耕系统中,为温室节水提供了绝佳的选择。可以收集和回收从根区排出的多余灌溉水,这可能会大大提高温室作物的用水效率。然而,地中海国家的灌溉水的特点是盐浓度高,典型的EC含量约为2 dS m -1,主要包括Na +和Cl-。因此,在大多数情况下,就矿物质组成而言,可用灌溉水的质量与完全封闭的水耕系统的应用不相容。因此,为了使地中海种植者能够利用多余的灌溉水,必须找到有效的解决方案以最大程度地减少盐分的积累。这项工作的目的是基于Na +质量平衡模型和工厂耗水量的测试结果,测试用于开发半封闭水培系统排水管理的决策支持系统。为此目的,实验于2012年2月至2012年7月在位于希腊色萨利大学的实验农场的聚乙烯覆盖的温室中进行。为了在不同的案例研究下测试该系统,比较了在开放系统中排水比例约为30%的番茄作物与在半封闭系统中排水比例分别为30%和60%的番茄作物。结果表明,温室决策支持系统中包含的用于水培系统施肥管理的模型可以成功地用于控制营养液中的Na +浓度。与采用30%排水的半封闭系统相比,排水溶液的EC较低,表明半封闭系统的排水分数从30%增加到60%有助于保持根部条件更好,这表明排水溶液的EC较低。作物生产。然而,在排水量为30%的半封闭系统中,观察到较高的水分利用效率,而在相同的处理条件下,肥料的排放量也少于排水量为60%的开放式或半封闭系统。 CT国际温室和植物工厂环境控制,节能和作物生产新技术研讨会-Greensys 2013,韩国济州,2013年9月22日至27日。

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