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Comparison of Ultrasonic Distillation to Sparging of Liquid Mixtures

机译:超声蒸馏与液体混合物喷射的比较

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The application of intense ultrasound to a liquid-gas interface results in the formation of an ultrasonic fountain and generates both mist and vapor from the liquid. Here, the composition of the vapor and aerosol above an ultrasonic fountain is determined as a function of irradiation time and compared with the results of sparging for five different solutions. The experimental apparatus for determining the efficiency of separation consists of a glass vessel containing a piezoelectric transducer driven at either 1.65 or 2.40 MHz. Dry nitrogen is passed over the ultrasonic fountain to remove the vapor and aerosol. The composition of the liquid solutions are recorded as a function of irradiation time using gas chromatography, refractive index measurement, nuclear magnetic resonance, or spectrophotometry. Data are presented for ethanol-water and ethyl acetate-ethanol solutions, cobalt chloride in water, colloidal silica, and colloidal gold. The experiments show that ultrasonic distillation produces separations that are somewhat less complete than what is obtained using sparging.
机译:在液-气界面上施加强烈的超声波会导致形成超声波喷泉,并从液体中产生雾气和蒸气。在此,根据照射时间确定超声波喷头上方的蒸气和气溶胶的成分,并将其与喷射五种不同溶液的结果进行比较。用于确定分离效率的实验设备由玻璃容器组成,该玻璃容器包含以1.65 MHz或2.40 MHz驱动的压电换能器。使干燥的氮气通过超声喷头以去除蒸汽和气溶胶。使用气相色谱法,折射率测量,核磁共振或分光光度法记录液体溶液的组成随照射时间的变化。给出了乙醇-水和乙酸乙酯-乙醇溶液,水中的氯化钴,胶体二氧化硅和胶体金的数据。实验表明,超声蒸馏产生的分离不如使用鼓泡获得的分离完全。

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