Du Zhen, Ji Min, Li Ruying
School of Environmental Science and Engineering, Tianjin University, Tianjin 300350, PR China.
School of Environmental Science and Engineering, Tianjin University, Tianjin 300350, PR China.
Sci Total Environ. 2022 Feb 1;806(Pt 3):151212. doi: 10.1016/j.scitotenv.2021.151212. Epub 2021 Oct 26.
Applying an electric field in the membrane filtration was an effective method to alleviate membrane fouling and enhance the trace organic compounds (TrOCs) removal. The secondary effluent of a municipal wastewater treatment plant was used as feed water to evaluate the performance of the electric field coupled microfiltration system. Applying a 1.25 V voltage reduced 22.9% membrane fouling by electrophoretic force, and the membrane fouling was alleviated by 70.8% at 3 V by electrochemical oxidation and electric field force. At 3 V, active chlorine and hydroperoxide generated on the electrodes and the acidic environment formed around the anode significantly inhibited the growth of microorganisms and their attachment on the membrane surface, and thus reduced the membrane fouling formed by microorganisms. Electrochemical oxidation also removed the protein in wastewater and changed the main organic components of membrane fouling from microorganisms, protein, and polysaccharide to humic substances and polysaccharide. Furthermore, the electrophoretic force and acidic environment reduced the electrostatic repulsion of humic substances and made them tend to aggregate and form hydrophilic porous fouling structures, which obviously lowered filtration resistance and showed significant membrane fouling mitigation. Also, the electric field effectively enhanced the removal of target TrOCs through electrochemical oxidation and electric field force improving the elimination of TrOCs from 8.5% ~ 26.1% at 0 V to 35.9% ~ 84.8% at 3 V.
在膜过滤过程中施加电场是减轻膜污染并提高痕量有机化合物(TrOCs)去除率的有效方法。以某城市污水处理厂的二级出水作为进水,评估电场耦合微滤系统的性能。施加1.25 V电压时,电泳力使膜污染降低了22.9%;在3 V时,电化学氧化和电场力使膜污染减轻了70.8%。在3 V时,电极上产生的活性氯和过氧化氢以及阳极周围形成的酸性环境显著抑制了微生物的生长及其在膜表面的附着,从而减少了由微生物形成的膜污染。电化学氧化还去除了废水中的蛋白质,并使膜污染的主要有机成分从微生物、蛋白质和多糖转变为腐殖质和多糖。此外,电泳力和酸性环境降低了腐殖质的静电排斥力,使其倾向于聚集并形成亲水性多孔污染结构,这明显降低了过滤阻力并显著减轻了膜污染。而且,电场通过电化学氧化和电场力有效地提高了目标TrOCs的去除率,将TrOCs的去除率从0 V时的8.5%26.1%提高到3 V时的35.9%84.8%。