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Enhancement of microbubble generation in a pressurized dissolution process by packing the nozzle with porous ceramics

机译:通过在喷嘴中填充多孔陶瓷来增强加压溶解过程中微气泡的产生

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The pressurized dissolution method is often used for microbubble generation. However, the main disadvantage of this method is that a large amount of energy (more than 0.3 MPa) is required to generate many microbubbles, each of which have a diameter of several dozen μm. To overcome this problem, we investigated the effectiveness of porous ceramic when used as the packing material in the pressurized dissolution method. The results showed that when compared with the control (no porous ceramics), use of porous ceramics resulted in a 39% increase in the number of microbubbles. Furthermore, when this system was used for the flotation separation of artificial suspended solids and activated sludge, the level of separation achieved with porous ceramics at 0.15 MPa was the same as that achieved using no porous ceramics at 0.25 MPa. It was estimated that the use of porous ceramics led to a 40% reduction in the energy required for the dissolved air flotation, with subsequent decreases in the operating cost.
机译:加压溶解方法通常用于产生微气泡。但是,该方法的主要缺点是需要大量的能量(大于0.3 MPa)才能生成许多微气泡,每个微气泡的直径为几十微米。为了克服这个问题,我们研究了多孔陶瓷在加压溶解法中用作填充材料时的有效性。结果表明,与对照(无多孔陶瓷)相比,使用多孔陶瓷可使微气泡数量增加39%。此外,当该系统用于浮选分离人工悬浮固体和活性污泥时,在0.15 MPa下使用多孔陶瓷实现的分离水平与在0.25 MPa下不使用多孔陶瓷实现的分离水平相同。据估计,多孔陶瓷的使用导致溶解气浮所需的能量减少了40%,从而降低了运营成本。

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