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Hydroponic systems and water management in aquaponics: A review

机译:水培系统中的水培系统和水管理:综述

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Aquaponics (AP), the integrated multi-trophic fish and plants production in quasi-closed recirculating system, is one of the newest sustainable food production systems. The hydroponic component of the AP directly influences water quality (in turn influencing fish growth and health), and water consumption (through evapotranspiration) of the entire system. In order to assess the role of the design and the management of the hydroponic component on the overall performance, and water consumption of the aquaponics, 122 papers published from 1979 to 2017 were reviewed. Although no unequivocal results were found, the nutrient film technique appears in several aspects less efficient than medium-based or floating raft hydroponics. The best system performance in terms of fish and plant growth, and the highest nutrient removal from water was achieved at water flow between 0.8 L min–1 and 8.0 L min–1. Data on water consumption of aquaponics are scarce, and no correlation between the ratio of hydroponic unit surface/fish tank volume and the system water loss was found. However, daily water loss was positively correlated with the hydroponic surface/fish tank volume ratio if the same experimental conditions and/or systems were compared. The plant species grown in hydroponics influenced the daily water loss in aquaponics, whereas no effect was exerted by the water flow (reciprocating flood/drain cycle or constant flow) or type (medium-based, floating or nutrient film technique) of hydroponics.
机译:Aquaponics(AP)是准封闭循环系统中集成的多营养鱼类和植物生产,是最新的可持续食品生产系统之一。 AP的水培成分直接影响整个系统的水质(进而影响鱼类的生长和健康)和耗水量(通过蒸散)。为了评估水培组件设计和管理对水培植物总体性能和耗水量的作用,对1979年至2017年发表的122篇论文进行了综述。尽管没有发现明确的结果,但营养膜技术在某些方面似乎比中基或浮筏水培法效率低。就鱼类和植物的生长而言,最佳的系统性能以及在0.8 L min-1至8.0 L min-1的水流量下从水中去除的养分最高。关于水培植物耗水量的数据很少,并且在水培单元表面/鱼缸容积之比与系统失水之间未发现相关性。但是,如果将相同的实验条件和/或系统进行比较,则每日水分损失与水培表面/鱼缸容积比呈正相关。在水培法中生长的植物物种影响了水培法的日失水量,而水培法的水流量(往复的洪水/排水循环或恒定流量)或类型(中基,漂浮或营养膜技术)没有作用。

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