Removal of Phenol Contaminants from Aqueous Solution Using Pickering Emulsion Liquid Membrane Stabilized by Magnetic Nano-Fe3O4

Tamara L. Rasool, Ahmed A. Mohammed, Vida Ravankhah
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Abstract

In the current study, the effect of the nonionic surfactant (span 80) on the emulsification of a mixture of kerosene as a petroleum-based organic solvent and span80 as a green diluent in the ratio 1:1 was investigated. NaOH was used as the internal phase, and the stability of the emulsion was tested. The potential for extracting phenol from aqueous solutions without the use of a carrier agent has been explored using Pickering emulsion liquid membrane. Additionally, the impacts of experimental parameters include homogenizer speed, mixing speed, emulsification time, Fe3O4-Span 80 ratios, NaOH concentration, and internal to membrane volume ratio (I/O) on extraction effectiveness and emulsion stability. The findings demonstrated that after 9 minutes of contact time and a minimum breaking percent of 0.745% under ideal circumstances, more than 96% of phenol could be recovered. In addition thermodynamic analysis reveals that the extraction process was an endothermic and spontaneous in nature and the overall mass transfer coefficient was 1.115 m/s. Membrane materials and nanoparticles were recycled four time in the extraction of phenol with approximately the same efficiency and no significant breakage percent..
利用磁性纳米 Fe3O4 稳定的 Pickering 乳化液膜去除水溶液中的苯酚污染物
在本研究中,研究了非离子表面活性剂(span 80)对煤油(石油基有机溶剂)和 span80(绿色稀释剂)按 1:1 的比例混合乳化的影响。以 NaOH 为内相,测试了乳化液的稳定性。使用 Pickering 乳化液膜探索了在不使用载体剂的情况下从水溶液中萃取苯酚的潜力。此外,实验参数包括均质机速度、混合速度、乳化时间、Fe3O4-Span 80 比率、NaOH 浓度以及内部与膜体积比 (I/O) 对萃取效果和乳液稳定性的影响。研究结果表明,在理想情况下,经过 9 分钟的接触时间和 0.745% 的最小破碎率后,可回收 96% 以上的苯酚。此外,热力学分析表明,萃取过程是一个自发的内热过程,总体传质系数为 1.115 m/s。在萃取苯酚的过程中,膜材料和纳米颗粒循环使用了四次,效率大致相同,没有出现明显的破损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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