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高铁酸盐(VI)预处理对二级出水超滤过程中有机物去除和膜污染缓解的氧化和混凝/吸附双重效应。

Oxidation and coagulation/adsorption dual effects of ferrate (VI) pretreatment on organics removal and membrane fouling alleviation in UF process during secondary effluent treatment.

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, PR China.

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, PR China.

出版信息

Sci Total Environ. 2022 Dec 1;850:157986. doi: 10.1016/j.scitotenv.2022.157986. Epub 2022 Aug 10.

Abstract

Ultrafiltration (UF) has been widely used in water and advanced sewage treatment. Unfortunately, membrane fouling is still the main obstacle to further improvement in the system. Fe (III) salt, a type of traditional coagulant, is often applied to mitigate UF membrane fouling. However, low molecule organic weight cannot be effectively removed, thus the water quality after single coagulation treatment does not effectively meet the standard of subsequent water reuse during secondary effluent treatment. Recently, it has been found that potassium ferrate (Fe (VI)) has multiple functions of oxidation, sterilization and coagulation, with other studies proving its good performance in organics removal and membrane fouling mitigation. However, the respective contributions of oxidation and coagulation/adsorption have not yet been fully understood. The oxidation and coagulation/adsorption effects of Fe (VI) during membrane fouling mitigation were investigated here. The oxidation effect of Fe (VI) was the main reason for organics with the MW of 8-20 kDa removal, and its coagulation/adsorption mainly accounted for the smaller amounts of molecular organics removed. The oxidation of Fe (VI) was the main method for overcoming membrane fouling in the initial filtration; it largely alleviated the standard blockage. The formation of a cake layer transformed the main membrane fouling alleviation mechanism from oxidation to coagulation/adsorption and further removed smaller amounts of molecule organics with the increase of filtration cycles and Fe (VI) dosages. The main fouling mechanism altered from standard blocking and cake filtration to only cake filtration after Fe (VI) treatment. Overall, the mechanism of the oxidation and coagulation/adsorption of Fe (VI) were differentiated, and would provide a reference for future Fe (VI) pretreatment in UF membrane fouling control during water and wastewater treatments.

摘要

超滤(UF)已广泛应用于水和高级污水处理。不幸的是,膜污染仍然是系统进一步改进的主要障碍。铁(III)盐是一种传统的凝聚剂,常用于减轻 UF 膜污染。然而,低分子量有机物不能被有效去除,因此单凝聚处理后的水质不能有效满足二级出水处理后续水再利用的标准。最近,发现高铁酸钾(Fe(VI))具有氧化、杀菌和凝聚的多种功能,其他研究也证明了其在去除有机物和减轻膜污染方面的良好性能。然而,氧化和凝聚/吸附的各自贡献尚未完全理解。本文研究了高铁酸钾(Fe(VI))在减轻膜污染过程中的氧化和凝聚/吸附作用。Fe(VI)的氧化作用是去除 MW8-20kDa 有机物的主要原因,其凝聚/吸附主要是去除较小分子量的有机物。Fe(VI)的氧化是克服初始过滤中膜污染的主要方法,它大大缓解了标准堵塞。滤饼层的形成将主要的膜污染缓解机制从氧化转变为凝聚/吸附,并随着过滤周期和 Fe(VI)剂量的增加,进一步去除较小分子量的有机物。Fe(VI)处理后,主要的污染机制从标准堵塞和滤饼过滤转变为仅滤饼过滤。总的来说,区分了 Fe(VI)的氧化和凝聚/吸附机制,为未来水和废水处理中 UF 膜污染控制的 Fe(VI)预处理提供了参考。

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