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首页> 外文期刊>Chemical Engineering and Processing >Intensification of liquid-liquid extraction in a tubular sono-extractor using 1.7 MHz ultrasound and SiO2 nanoparticles
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Intensification of liquid-liquid extraction in a tubular sono-extractor using 1.7 MHz ultrasound and SiO2 nanoparticles

机译:使用1.7MHz超声和SiO2纳米粒子的管状超声提取器中液液萃取的强化

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The purpose of the present study is to investigate the effect of high-frequency ultrasound propagation in a sono-extractor to augment liquid-liquid mass transfer in the presence of SiO2 nanoparticles. For this purpose, four 1.7 MHz ultrasound transducers are placed on the body of the sono-extractor and the effect of transducer locations on the mass transfer characteristics are evaluated. Using ultrasound and nanoparticles showed a higher effect on the increase in the mass transfer characteristics compared with only using ultrasound or nanoparticles. Activation of two bottom transducers is more efficient from viewpoint of lower energy consumption. The effect of increasing the power of ultrasound (P) is investigated and measurable increase in K(L)a and E are obtained. The effect of various weight fraction of nanoparticles (phi = 0.1-2% wt.) on K(L)a and E is evaluated and phi = 2% wt showed higher values. Maximum values of K(L)a (2.81 x 10(-3) 1/s) and E (0.943) are achieved for activation of two bottom ultrasound transducers with P = 9.5 W and phi= 2% wt.
机译:本研究的目的是探讨高频超声波在Sono-interpleor中的高频超声波传播在SiO2纳米颗粒存在下增加液体液体传递。为此,将四个1.7 MHz超声换能器放置在Sono提取器的主体上,并评估换能器位置对传质特性的影响。使用超声波和纳米颗粒对仅使用超声波或纳米颗粒的较高效果较高。从低能耗的观点来看,两个底部换能器的激活更有效。研究了提高超声(P)功率(P)的效果,并获得了K(1)A和E的可测量增加。评估各种重量级数(PHI = 0.1-2%wt。)在K(L)A和E上的各种重量分数和PHI = 2%wt显示出较高的值。 k(l)a(2.81×10(-3)1 / s)和e(0.943)的最大值用于激活两个底部超声换能器,具有p = 9.5 w和phi = 2%wt。

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