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电凝聚与膜生物反应器联用处理葵花籽油精炼废水对处理性能、生物特性和污染行为的综合研究。

A comprehensive study on the effects of electrocoagulation integrated in a membrane bioreactor treating sunflower oil refinery wastewater on treatment performance, biological properties, and fouling behavior.

机构信息

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

School of Chemical Engineering, College of Engineering, University of Tehran, Tehran, Iran.

出版信息

Environ Sci Pollut Res Int. 2024 Oct;31(49):59253-59274. doi: 10.1007/s11356-024-35106-8. Epub 2024 Sep 30.

Abstract

This study evaluated the effects of electrocoagulation integrated in a laboratory-scale membrane bioreactor (MBR), namely EC-MBR, on the treatment performance, activated sludge morphological characterization, and membrane fouling of MBR treating actual sunflower oil refinery wastewater. The EC-MBR system exhibited significantly higher chemical oxygen demand (COD) and oil and grease (O&G) removal efficiency compared to the MBR system. Additionally, both systems achieved excellent turbidity removal, with a percentage above 99%. The membrane fouling rate was higher in the EC-MBR system compared to the MBR system. Despite the decrease in the soluble microbial product (SMP) and extracellular polymeric substance (EPS) concentration in the EC-MBR system, especially their protein fraction, the significant increase in MLSS and carbohydrates/protein ratio, and the decrease in the mixed liquor and the cake layer particles size were the main membrane fouling factors. The membrane fouling resistance distribution showed that the EC-MBR system had a higher percentage of pore blocking resistance compared to the MBR. FTIR analysis identified a greater proportion of carbohydrate compounds in the cake layer of the EC-MBR system. SEM images revealed dense microbial clusters, mainly rod- and oval-shaped bacteria, in the EC-MBR system. Furthermore, EDX analysis detected elements such as Ca, K, O, Al, and P in both systems, with the EC-MBR system showing a higher Al content. The EC-MBR system showed low energy consumption (0.431 kWh m) and total operating costs ($0.90 m), showcasing its effectiveness and affordability for sustainable wastewater management.

摘要

本研究评估了电凝聚集成在实验室规模的膜生物反应器(MBR)中的效果,即 EC-MBR,对 MBR 处理实际葵花籽油精炼废水的处理性能、活性污泥形态特征和膜污染的影响。EC-MBR 系统表现出比 MBR 系统更高的化学需氧量(COD)和油和油脂(O&G)去除效率。此外,两个系统都实现了极好的浊度去除,百分比均在 99%以上。EC-MBR 系统的膜污染速率高于 MBR 系统。尽管 EC-MBR 系统中的可溶性微生物产物(SMP)和胞外聚合物(EPS)浓度下降,特别是其蛋白质部分,但 MLSS 和碳水化合物/蛋白质比的显著增加,以及混合液和饼层颗粒尺寸的减小是主要的膜污染因素。膜污染阻力分布表明,EC-MBR 系统的孔阻塞阻力百分比高于 MBR。FTIR 分析表明 EC-MBR 系统的饼层中含有更多的碳水化合物。SEM 图像显示 EC-MBR 系统中存在密集的微生物簇,主要是杆状和椭圆形细菌。此外,EDX 分析在两个系统中都检测到 Ca、K、O、Al 和 P 等元素,EC-MBR 系统显示出更高的 Al 含量。EC-MBR 系统显示出低能耗(0.431 kWh m)和总运营成本($0.90 m),展示了其在可持续废水管理方面的有效性和可负担性。

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