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The Mass Transfer and Coalescence Time Scales in Binary Droplet Systems for Copper Extraction

机译:二元液滴萃取铜系统中的传质和聚结时间尺度

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In this work, we studied whether coalescence has a direct effect on mass transfer in copper extraction. The coalescence of pendant and sessile droplets containing diluted Acorga M5640 in an aqueous copper sulfate solution was recorded on video. The videos were analyzed to determine droplet rest times, sizes, and concentrations. Concentration measurements revealed that coalescence does not enhance mass transfer because coalescence is a rapid phenomenon. A comparison of the experiments performed with and without mass transfer showed that the coalescence dynamics are not affected by mass transfer. A bimodal rest time distribution was observed when the copper sulfate solution was in the continuous phase. The surface flows and cell-like structures observed on the droplet interface are presumed to be because of a Marangoni convection, which is caused by concentration changes because of extraction. The presence and absence of surface flow is anticipated to lead to a bimodal rest time distribution. The presence of surface flow improves coalescence probability because of very short binary droplet rest times.
机译:在这项工作中,我们研究了聚结是否对铜萃取中的传质有直接影响。包含稀释的Acorga M5640的悬垂液滴和无蒂液滴在硫酸铜水溶液中的聚结记录在视频上。分析视频以确定液滴的停留时间,大小和浓度。浓度测量表明,聚结不会增强传质,因为聚结是一种快速现象。比较有和没有传质的实验表明,聚结动力学不受传质的影响。当硫酸铜溶液处于连续相时,观察到双峰静置时间分布。推测在液滴界面上观察到的表面流和细胞状结构是由于马兰戈尼对流引起的,该对流是由于萃取引起的浓度变化而引起的。预期表面流动的存在与否会导致双峰静息时间分布。由于非常短的二元液滴静置时间,表面流的存在提高了合并的可能性。

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