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Increasing unsaturated dissolved oxygen concentration in water by fine bubbles induced by ultrasonic vibrations

机译:超声振动引起的微小气泡增加水中的不饱和溶解氧浓度

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References(22) Cited-By(2) In the past, much research has centered on dispersing liquids into gases, and dispersing solids and liquids into liquids. However, there has been almost no research on dissolving gases into liquids by dispersion, possibly because of concerns about the effect of deaeration due to cavitation of a liquid by ultrasound. Here, we consider a method using ultrasound to finely disperse and dissolve a supplied gas. The method entails placing the gas supply outlet close to the tip of an ultrasonic longitudinal vibration source and dissolving the gas into the liquid by finely dispersing the gas by means of the vibrations. In this method, the occurrence of cavitation is reduced as much as possible and deaeration effects are reduced. Here, air is used as the gas to be dissolved and water is used as the solvent. The unsaturated dissolved oxygen concentration in water is used as an indicator for evaluating the proportion of dissolved air. The results show that ultrasonic vibration increases the concentration of oxygen dissolved in the liquid and that almost no deaeration by cavitation occurs.
机译:参考文献(22)被引用者(2)过去,许多研究集中在将液体分散到气体中,以及将固体和液体分散到液体中。然而,几乎没有关于通过分散将气体溶解于液体中的研究,这可能是由于担心由于超声波使液体空化而引起的脱气的影响。在这里,我们考虑一种使用超声细微分散和溶解所供应气体的方法。该方法需要将气体供应出口放置在靠近超声纵向振动源的尖端的位置,并且通过利用振动将气体精细地分散而将气体溶解在液体中。在这种方法中,尽可能减少了气蚀的发生,并且减少了脱气效果。在此,空气用作待溶解的气体,而水用作溶剂。水中的不饱和溶解氧浓度用作评估溶解空气比例的指标。结果表明,超声振动增加了溶解在液体中的氧的浓度,并且几乎没有发生空化脱气。

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