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UV/Fe(II)/S(IV)预处理用于含-水的超滤:Fe(II)/Fe(III)引发的协同氧化与混凝

UV/Fe(II)/S(IV) Pretreatment for Ultrafiltration of -Laden Water: Fe(II)/Fe(III) Triggered Synergistic Oxidation and Coagulation.

作者信息

Yu Huarong, Yang Haiyang, Wei Guangmei, Mameda Naresh, Qu Fangshu, Rong Hongwei

机构信息

School of Civil Engineering, Guangzhou University, Guangzhou 510006, China.

Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Guangzhou University, Guangzhou 510006, China.

出版信息

Membranes (Basel). 2023 Apr 25;13(5):463. doi: 10.3390/membranes13050463.

Abstract

Ultrafiltration (UF) has been proven effective in removing algae during seasonal algal blooms, but the algal cells and the metabolites can induce severe membrane fouling, which undermines the performance and stability of the UF. Ultraviolet-activated sulfite with iron (UV/Fe(II)/S(IV)) could enable an oxidation-reduction coupling circulation and exert synergistic effects of moderate oxidation and coagulation, which would be highly preferred in fouling control. For the first time, the UV/Fe(II)/S(IV) was systematically investigated as a pretreatment of UF for treating -laden water. The results showed that the UV/Fe(II)/S(IV) pretreatment significantly improved the removal of organic matter and alleviated membrane fouling. Specifically, the organic matter removal increased by 32.1% and 66.6% with UV/Fe(II)/S(IV) pretreatment for UF of extracellular organic matter (EOM) solution and algae-laden water, respectively, while the final normalized flux increased by 12.0-29.0%, and reversible fouling was mitigated by 35.3-72.5%. The oxysulfur radicals generated in the UV/S(IV) degraded the organic matter and ruptured the algal cells, and the low-molecular-weight organic matter generated in the oxidation penetrated the UF and deteriorated the effluent. The over-oxidation did not happen in the UV/Fe(II)/S(IV) pretreatment, which may be attributed to the cyclic redox Fe(II)/Fe(III) coagulation triggered by the Fe(II). The UV-activated sulfate radicals in the UV/Fe(II)/S(IV) enabled satisfactory organic removal and fouling control without over-oxidation and effluent deterioration. The UV/Fe(II)/S(IV) promoted the aggregation of algal foulants and postponed the shift of the fouling mechanisms from standard pore blocking to cake filtration. The UV/Fe(II)/S(IV) pretreatment proved effective in enhancing the UF for algae-laden water treatment.

摘要

超滤(UF)已被证明在季节性藻华期间去除藻类方面是有效的,但藻类细胞及其代谢产物会导致严重的膜污染,从而损害超滤的性能和稳定性。紫外光活化的铁(II)/亚硫酸盐(UV/Fe(II)/S(IV))能够实现氧化还原耦合循环,并发挥适度氧化和混凝的协同作用,这在污染控制方面是非常可取的。首次系统研究了UV/Fe(II)/S(IV)作为超滤预处理用于处理含藻水的情况。结果表明,UV/Fe(II)/S(IV)预处理显著提高了有机物的去除率并减轻了膜污染。具体而言,对于超滤处理细胞外有机物(EOM)溶液和含藻水,UV/Fe(II)/S(IV)预处理分别使有机物去除率提高了32.1%和66.6%,而最终归一化通量提高了12.0 - 29.0%,可逆污染减轻了35.3 - 72.5%。UV/S(IV)中产生的氧硫自由基降解了有机物并使藻类细胞破裂,氧化过程中产生的低分子量有机物穿透超滤并使出水水质恶化。UV/Fe(II)/S(IV)预处理中未发生过度氧化,这可能归因于Fe(II)引发的Fe(II)/Fe(III)循环氧化还原混凝作用。UV/Fe(II)/S(IV)中紫外光活化的硫酸根自由基实现了令人满意的有机物去除和污染控制,且没有过度氧化和出水水质恶化的问题。UV/Fe(II)/S(IV)促进了藻类污染物的聚集,并推迟了污染机制从标准孔堵塞向滤饼过滤的转变。UV/Fe(II)/S(IV)预处理被证明在强化超滤处理含藻水方面是有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efbe/10222291/f0603fb85683/membranes-13-00463-g001.jpg

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