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A novel method to separate organic compounds through ultrasonic atomization

机译:通过超声雾化分离有机化合物的新方法

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Ethanol and surfactants were enriched from their aqueous solutions through ultrasonic atomization at ambient temperature. Liquid particles produced with irradiation of 2.4 MHz ultrasound had diameters less than 15 micrometers. High enrichment ratio was obtained at lower concentration range and the ratio decreased with increasing the solute concentration. For ethanol enrichment, energy input to the oscillator was much smaller than the latent heat of the separated solution. Thus it is expected that energy requirement of this separation is smaller than distillation. Drop size distribution was measured to characterize the atomization behavior of solutions. Enrichment ratio of an anionic surfactant, DBS-Na was remarkably improved by adding KCl to the solution. The result indicated that the significance of surface adsorption to the separation of nonvolatile substances. Production of concentrated Japanese rise wine was introduced as a practial application.
机译:通过在环境温度下通过超声雾化从其水溶液中富集乙醇和表面活性剂。用2.4MHz的辐射产生的液体颗粒的直径小于15微米。在较低浓度范围内获得高富集率,并且随着溶质浓度的增加而降低。对于乙醇富集,输入到振荡器的能量远小于分离溶液的潜热。因此,预期该分离的能量需求小于蒸馏。测量滴尺寸分布以表征解决方案的雾化行为。通过将KCl加入溶液,富集的阴离子表面活性剂的富集率显着改善了DBS-Na。结果表明,表面吸附对非挥发性物质分离的重要性。将浓缩日本升葡萄酒的生产作为实例申请。

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