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全面深入了解膜生物反应器中集成的电凝法对洗涤剂生产厂废水处理及膜污染的影响。

Gaining comprehensive insight into the effect of electrocoagulation integrated in a membrane bioreactor on the detergent manufacturing plant wastewater treatment and membrane fouling.

作者信息

Abdollahzadeh Sharghi Elham, Farzin Mehdi, Talaeian Earaqi Mohammad, Faridizad Ghazale

机构信息

Environmental Group, Energy Department, Materials and Energy Research Center, Karaj, Iran.

College of Environment, Karaj, Iran.

出版信息

Chemosphere. 2025 Feb;370:144007. doi: 10.1016/j.chemosphere.2024.144007. Epub 2024 Dec 28.

Abstract

This study evaluated the integration of electrocoagulation into a lab-scale membrane bioreactor (EC-MBR) for treating wastewater from a detergent manufacturing plant. The EC-MBR system achieved a higher chemical oxygen demand (COD) and anionic surfactant removal efficiencies of 95.1% and 99.7% compared to 93.3% and 98.7% in the MBR system, respectively. Sludge volume index and mixed liquor supernatant turbidity revealed superior sludge settling and flocculation ability, respectively, in the EC-MBR system compared to the MBR system. Membrane fouling was less severe in the EC-MBR system, linked to reduced concentrations of soluble microbial products and loosely bond extracellular polymeric substances, especially their protein to carbohydrate ratio, as well as increased particle size in the mixed liquor. Fourier transform infrared spectroscopy (FTIR) analysis indicated that the membrane cake layer was mainly composed of protein and carbohydrate. Scanning electron microscopy (SEM) revealed microbial clusters in the MBR system composed of rod- and oval-shaped bacteria, while the EC-MBR system primarily showed spherical microbial structures. The EC-MBR system demonstrated low energy consumption (1.75 kWh m³) and operating costs ($0.55 m³), highlighting its efficiency and cost-effectiveness for sustainable wastewater management.

摘要

本研究评估了将电凝技术集成到实验室规模的膜生物反应器(EC-MBR)中用于处理洗涤剂生产厂废水的效果。与MBR系统中分别为93.3%和98.7%的化学需氧量(COD)及阴离子表面活性剂去除效率相比,EC-MBR系统实现了更高的去除效率,分别为95.1%和99.7%。污泥体积指数和混合液上清液浊度分别表明,与MBR系统相比,EC-MBR系统具有更优的污泥沉降和絮凝能力。EC-MBR系统中的膜污染较轻,这与可溶性微生物产物和松散结合的胞外聚合物浓度降低有关,尤其是它们的蛋白质与碳水化合物比率,以及混合液中颗粒尺寸的增大。傅里叶变换红外光谱(FTIR)分析表明,膜滤饼层主要由蛋白质和碳水化合物组成。扫描电子显微镜(SEM)显示,MBR系统中的微生物聚集体由杆状和椭圆形细菌组成,而EC-MBR系统主要呈现球形微生物结构。EC-MBR系统显示出低能耗(1.75 kWh/m³)和运营成本(0.55美元/m³),突出了其在可持续废水管理方面的效率和成本效益。

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