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FluoRAS Sensor - Online organic matter for optimising recirculating aquaculture systems

机译:FluoRAS传感器-用于优化循环水产养殖系统的在线有机物

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FluorRAS will develop a sensor that can save recycled fish farms 30% per year in water and energy consumption for water treatment, as well as optimize nitrogen removal. The sensor will be developed in a partnership between engineers (Krüger A / S) and researchers (DTU), and the product will be made available to the entire sector through Danish Aquaculture. Global aquaculture production is expected to double within the next 15 years. Recycling technology has a great potential for supporting environmentally and economically sustainable production. However, the technology has some challenges in balancing both the maintenance of necessary water quality and water treatment costs. Loss of production due to poor water quality is expensive and can be avoided with correct sensor systems. Accumulation of dissolved organic matter and nutrients in the water reduce the effectiveness of UV treatment, is a source of nutrition for opportunistic pathogens, and reduces the effectiveness of the biofilter's removing ammonia. Modern recycling systems are therefore dependent on a network of online sensors that monitor and respond to changes in water quality, but currently there is a need for a sensor to monitor the accumulation of organic matter. FluoRAS aims to fill this gap in technology by developing an online fluorescence sensor. The sensor is based on non-destructive, online optical technology that does not require chemicals and can run continuously.
机译:FluorRAS将开发一种传感器,该传感器可以每年为再生的养鱼场节省30%的水和水处理能耗,并优化脱氮效果。该传感器将由工程师(KrügerA / S)和研究人员(DTU)合作开发,并且该产品将通过丹麦水产养殖业提供给整个行业。预计未来15年全球水产养殖产量将翻一番。回收技术在支持环境和经济可持续生产方面具有巨大潜力。但是,该技术在平衡必要水质的维持和水处理成本方面面临一些挑战。由于水质差而造成的生产损失是昂贵的,并且可以通过使用正确的传感器系统来避免。水中溶解的有机物和营养物的积累降低了紫外线处理的有效性,是机会病原体的营养来源,并降低了生物滤池去除氨的有效性。因此,现代的循环利用系统依赖于在线传感器网络,该网络监视并响应水质的变化,但是目前需要一种传感器来监视有机物的积累。 FluoRAS旨在通过开发在线荧光传感器来填补技术空白。该传感器基于无损在线光学技术,该技术不需要化学品,并且可以连续运行。

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