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Study of drop coalescence behavior for liquid-liquid extraction operation

机译:液-液萃取操作中液滴聚结行为的研究

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Using a video camera, a time course of coalescence was observed for toluene droplets formed at the top of adjacent nozzles in water. Several parameters which may control the coalescence have been investigated, such as concentration of acetone added to toluene, direction of mass transfer, time for attaining contact of the droplets, and flow rate of the continuous phase. The average coalescence times decrease with acetone concentration when acetone is transferred from the dispersed phase towards the continuous phase, and they increase with the time required for attaining contact. At high acetone concentration, oscillation of droplets appears, which restrains the coalescence. The average coalescence time increases when the acetone is transferred from the continuous phase towards the dispersed phase. An attempt has been made to predict coalescence times at low solute concentration (no oscillation) by assuming that the difference of interfacial tension causes the film drainage and leads to the drop coalescence. The agreement between the calculated and experimental values is not sufficiently quantitative but reasonable. For lower solute concentration, calculated coalescence times depend strongly on the time for attaining contact, which is in agreement with our experimental observation. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 32]
机译:使用摄像机,观察到在水中相邻喷嘴顶部形成的甲苯液滴聚结的时间过程。已经研究了可控制聚结的几个参数,例如加入甲苯的丙酮浓度,传质方向,液滴接触时间以及连续相的流速。当丙酮从分散相转移到连续相时,平均聚结时间随丙酮浓度的增加而减少,并且随着达到接触所需的时间而增加。在高丙酮浓度下,会出现液滴振荡,从而抑制了聚结。当丙酮从连续相转移到分散相时,平均聚结时间增加。尝试通过假设界面张力的差异导致薄膜排空并导致液滴聚结来预测低溶质浓度(无振荡)下的聚结时间。计算值和实验值之间的一致性不是足够定量的,而是合理的。对于较低的溶质浓度,计算的聚结时间在很大程度上取决于达到接触的时间,这与我们的实验观察一致。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:32]

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