首页> 外文期刊>Aquacultural Engineering: An International Journal >Foam fractionation efficiency of a vacuum airlift - application to particulate matter removal in recirculating systems.
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Foam fractionation efficiency of a vacuum airlift - application to particulate matter removal in recirculating systems.

机译:真空气举的泡沫分馏效率-应用于再循环系统中的颗粒物去除。

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The accumulation of particulate organic matter (POM) in recirculating aquaculture systems (RAS) has become an important issue with the intensification of finfish production. The objective of this study was to assess the foam fractionation efficiency of a vacuum airlift in different conditions (POM concentrations, airflow rates, bubble sizes, water renewal rates and feed addition). In sea water, the vacuum airlift allowed removing 20% of the initial POM concentration per hour (foam fractionation efficiency), corresponding to a 20.7-fold concentration factor between the tank and the foam. In rearing conditions, efficiency increased with decreasing water renewal rate or increasing POM concentration. An increase in airflow rate from 10 to 80 L min -1 in the vacuum airlift significantly decreased foam fractionation efficiency when feed was added to the water. The impact of feeding was only observed with high airflow rates where bubble coalescence occurred. Calculated POM production by fish ranged between 15.9 and 23.5 g h -1 and was equivalent to estimations based on feed conversion ratio (FCR). This indicated that all the POM produced was extracted by the vacuum airlift.
机译:随着有鳍鱼类产量的增加,循环水产养殖系统(RAS)中颗粒有机物(POM)的积累已成为一个重要问题。这项研究的目的是评估真空吹气器在不同条件下(POM浓度,气流速率,气泡大小,水更新率和饲料添加量)的泡沫分离效率。在海水中,真空空运允许每小时去除初始POM浓度的20%(泡沫分馏效率),相当于水箱和泡沫之间的浓度系数为20.7倍。在饲养条件下,效率随着水更新速率的降低或POM浓度的增加而提高。当将进料添加到水中时,真空气举中气流速率从10 L -1增加到80 L min -1会显着降低泡沫分离效率。仅在发生气泡聚结的高气流速率下才能观察到进料的影响。鱼的POM产量计算值介于15.9和23.5 g h -1之间,相当于基于饲料转化率(FCR)的估计值。这表明所有产生的POM都是通过真空空运提取的。

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