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In situ ultrasound enhancement of octanoic acid directional solvent extraction for seawater desalination

机译:原位超声提高辛酸定向溶剂萃取海水淡化

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摘要

The low yield and high salinity of the water product have limited the use of directional solvent extraction desalination method to the treatment of only low salinity water. In this research, in situ ultrasound enhancement of octanoic acid solvent extraction desalination is reported. The pre-prepared 3.5% (w/w) of saltwater solution and octanoic acid were mixed at five different temperatures which resulted in two phases. The performance of extraction for each set was evaluated based on salinity, yield of the recovered water, and solvent residual in the product water. The calculated yield of pure water under the ultrasound effects was higher than that without the ultrasound. This is due to the role of ultrasound in weakening the intermolecular interaction to dissociate water from salt, increasing the solvent efficiency in extracting water. The recovered water salinity was lower by using the ultrasound which can be explained as result of increasing the water yield.
机译:水产物的低产量和高盐度限制了使用定向溶剂萃取脱盐方法,仅对低盐水进行处理。 在该研究中,据报道,原位超声提高辛酸溶剂萃取脱盐。 将预制的3.5%(W / W)的盐水溶液和辛酸混合在5个不同的温度下,导致两相。 基于盐度,回收的水的产率,产物水中的溶剂残留来评价每组的萃取性能。 在超声效应下的纯水的计算产率高于没有超声波的纯净水。 这是由于超声波在削弱分子间相互作用以解离水中的分离物中的作用,提高了提取水中的溶剂效率。 通过使用超声波将回收的水盐度降低,这可以通过增加水产量来解释。

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