Demulsification with simultaneous water purification by coupling filtration and enhanced oil droplet coalescence at anode interface in an electrochemical reactor

乳状液 电极 阳极 油滴 材料科学 聚结(物理) 化学工程 过滤(数学) 电化学 肺表面活性物质 阴极保护 化学 物理 统计 数学 物理化学 天体生物学 工程类
作者
Xi Li,Gong Zhang,Chengzhi Hu,Huachun Lan,Huijuan Liu
出处
期刊:Journal of Environmental Sciences-china [Elsevier BV]
卷期号:146: 118-126 被引量:1
标识
DOI:10.1016/j.jes.2023.06.014
摘要

With the increasing demand of recycling disposal of industrial wastewater, oil-in-water (O/W) emulsion has been paid much attention in recent years owing to its high oil content. However, due to the presence of surfactant and salt, the emulsion was usually stable with complex physicochemical interfacial properties leading to increased processing difficulty. Herein, a novel flow-through electrode-based demulsification reactor (FEDR) was well designed for the treatment of saline O/W emulsion. In contrast to 53.7% for electrical demulsification only and 80.3% for filtration only, the COD removal efficiency increased to 92.8% under FEDR system. Moreover, the pore size of electrode and the applied voltage were two key factors that governed the FEDR demulsification performance. By observing the morphology of oil droplets deposited layer after different operation conditions and the behavior of oil droplets at the electrode surface under different voltage conditions, the mechanism was proposed that the oil droplets first accumulated on the surface of flow-through electrode by sieving effect, subsequently the gathered oil droplets could further coalesce with the promoting effect of the anode, leading to a high-performing demulsification. This study offers an attractive option of using flow-through electrode to accomplish the oil recovery with simultaneous water purification.
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