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System management of Lemna minor in aquaponics

机译:水生动物中 Lemna 未成年人的系统管理

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In farming, sustainability together with food safety is one of the main objectives to be achieved. Aquaponics is a technique that combines aquatic animals, such as fish, with the hydroponic production of plants that function as biological filters. The proper functioning of the system is based on the dynamic balance of the elements that make it up. Several studies confer aquatic macrophytes such as L. minor, great attributes, highlighting their use for feeding different species. Unfortunately, there is very little information on the system management of macrophytes in aquaponics. To determine the appropriate management parameters for the cultivation of L. minor integrated into the production of Oreochromis niloticus, in aquaponics, three experiments were carried out to evaluate the effect of the hydraulic retention time (HRT), the planting density, plant dissemination and the balance of nutrients in the systems. The results show that the highest biomass production and plant growth are achieved with high flow rates and short HRTs. Planting density has a direct effect on the behaviour of the plant. Regarding the balanced budget, between 7 and 8 of the nutrients (input in dry matter, N and P) are retained by L. minor, keeping the water quality within adequate limits for tilapia production.
机译:在农业中,可持续性和食品安全是要实现的主要目标之一。鱼菜共生是一种将水生动物(如鱼类)与植物的水培生产相结合的技术,具有生物过滤器的功能。系统的正常运行基于构成系统的元素的动态平衡。一些研究赋予了水生大型植物(如小乳杆菌)很大的属性,突出了它们用于喂养不同物种的用途。不幸的是,关于水生植物中大型植物系统管理的信息很少。为了确定在水生动物中整合尼罗河小乳杆菌养殖的适当管理参数,进行了三个实验,以评估水力停留时间(HRT)、种植密度、植物传播和系统中养分平衡的影响。结果表明,在高流速和短HRTs下,生物量产量和植物生长率最高,种植密度对植物的行为有直接影响。在平衡预算方面,7%至8%的营养物质(干物质、氮和磷的输入)被小乳杆菌保留,使水质保持在罗非鱼生产的适当限度内。

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