工业水处理 ›› 2025, Vol. 45 ›› Issue (10): 110-120. doi: 10.19965/j.cnki.iwt.2024-0814

• 试验研究 • 上一篇    

双极性电絮凝系统去除微塑料及有机物

李微1(), 刘玲玲1, 齐建华2, 陈一鸣1, 高原3   

  1. 1. 沈阳建筑大学市政与环境工程学院,辽宁 沈阳 110168
    2. 中国核电工程有限公司河北分公司,河北 石家庄 050000
    3. 沈阳数字经济产业园发展有限公司,辽宁 沈阳 110167
  • 收稿日期:2024-12-20 出版日期:2025-10-20 发布日期:2025-11-05
  • 作者简介:

    李微(1982— ),博士,教授,E-mail:

  • 基金资助:
    辽宁省高校基本科研项目(LJ212410153029); 辽宁省应用基础研究计划项目(2023030002-JH2/1013); 沈阳市科技计划项目(22-322-3-10)

Removal of microplastics and organic matters by bipolar eltrocoagulation system

Wei LI1(), Lingling LIU1, Jianhua QI2, Yiming CHEN1, Yuan GAO3   

  1. 1. School of Municipal and Environmental Engineering, Shenyang Jianzhu University, Shenyang 110168, China
    2. Hebei Branch, China Nuclear Power Engineering Co. , Ltd. , Shijiazhuang 050000, China
    3. Shenyang Digital Economy Industrial Park Development Co. , Ltd. , Shenyang 110167, China
  • Received:2024-12-20 Online:2025-10-20 Published:2025-11-05

摘要:

采用双极性电絮凝系统处理模拟纺织废水,探究其对废水中微塑料、色度和COD的去除效果,并揭示电絮凝对微塑料和有机物的去除机理。结果表明,双极性铝电极比双极性铁电极腐蚀更为严重,电化学溶解反应更活跃,且易于产生絮凝剂,进而有利于处理模拟纺织废水。采用铝双极性电极电絮凝体系处理模拟废水,在pH=7.5,电解质(NaCl)质量浓度为6 g/L,电流密度为8 A/m2的最佳条件下,微塑料、色度和COD的去除率分别为98.4%、99.2%和74.5%。电絮凝系统对微塑料、有机物的去除符合Langmuir模型和拟二级动力学方程,热力学分析表明絮体对微塑料、有机物的吸附为自发的吸热过程。

关键词: 微塑料, 有机物, 双极性电絮凝, 吸附

Abstract:

The bipolar electrocoagulation system was used to treat simulated textile wastewater, and its removal effects on microplastics, chromaticity and COD in wastewater were explored, while the adsorption mechanisms of electrocoagulation on microplastics and organic matters were revealed. The results showed that the corrosion of bipolar Al electrode was more severe than that of bipolar Fe electrode, the electrochemical dissolution reaction was more active, and flocculants were easy to generate, which was conducive to the treatment of simulated textile wastewater. The removal rates of microplastics, chromaticity and COD were 98.4%, 99.2% and 74.5%, respectively, under the optimal conditions of pH=7.5, electrolyte (NaCl) concentration of 6 g/L and current density of 8 A/m2. The adsorption process of microplastics and organic matters by the electrocoagulation system conformed to the Langmuir model and quasi-second-order kinetic equation, and the thermodynamic analysis showed that the adsorption of microplastics and organic matters by the flocculation system were spontaneous endothermic processes.

Key words: microplastics, organic matter, bipolar electrocoagulation, adsorption

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