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Application of zinc oxide and sodium alginate for biofouling mitigation in a membrane bioreactor treating urban wastewater

机译:氧化锌和藻酸钠在膜生物反应器中进行生物污水抑制治疗城市废水的应用

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摘要

This research aimed to mitigate fouling in membrane bioreactors (MBR) through concurrent usage of zinc oxide as an antibacterial agent (A) and sodium alginate as a hydrophilic agent (H) within a polyacrylonitrile membrane (PM) structure. The antibacterial polymeric membranes (APM) and antibacterial hydrophilic polymeric membranes (AHPM) synthesized showed a higher porosity, mechanical strength and bacterial inhibition zone, and a lower contact angle in comparison with PM membranes. EDS, SEM and AFM analyses were used to characterize the chemical, structural, and morphological properties of PM, APM, and AHPM. The flux of PM, APM, and AHPM in MBR was 37, 48, and 51 l m(-2)h(-1)and COD removal was 81, 93.5, and 96.7%, respectively. After MBR operation for 35 days in an urban wastewater treatment, only 50% of the flux of PM was recovered, while the antibacterial and hydrophilic agents yielded a flux recovery of 72.7 and 100% for APM and AHPM, respectively.
机译:该研究旨在通过将氧化锌作为抗菌剂(A)的并发用作氧化锌(A)和藻酸钠在聚丙烯腈膜(PM)结构中作为亲水剂(H)的藻酸钠来减轻膜生物反应器(MBR)的污垢。合成的抗菌聚合物膜(APM)和抗菌亲水性聚合物膜(AHPM)显示出较高的孔隙率,机械强度和细菌抑制区,与PM膜相比,较低的接触角。 EDS,SEM和AFM分析用于表征PM,APM和AHPM的化学,结构和形态学性质。 PM,APM和AHPM在MBR中的通量为37,48和51L m(-2)H(-1)和COD去除分别为81,93.5和96.7%。在城市废水处理中35天的MBR术后,仅回收50%的PM通量,而抗菌和亲水剂分别产生72.7和100%的助焊剂恢复,APM和AHPM。

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