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高级处理膜生物反应器(MBR)出水以实现有效的废水回收。

Advanced treatment of membrane bioreactor (MBR) effluents for effective wastewater reclamation.

机构信息

Department of Environmental Science and Engineering, GIST, 1 Oryong-dong, Bug-ku, Gwangju 500-712, Korea.

出版信息

Water Sci Technol. 2011;63(2):303-10. doi: 10.2166/wst.2011.054.

Abstract

One of the two main objectives of this work is to oxidize MBR effluents with ozone/peroxide in high pH conditions in order to improve oxidation of pharmaceuticals, which could efficiently be rejected by the nanofiltration (NF) stage. The other main objective is to effectively oxidize of dissolved organic carbon (DOC) in MBR effluents in order to decrease fouling in the filtration stage. In this work, ozone/peroxide oxidation was applied to the MBR effluents in high pH conditions in order to improve the formation of OH radicals, and oxidized effluents were filtered by the NF membrane (NE90) in order to investigate fouling potentials and the removal of pharmaceuticals. Natural and synthetic wastewater samples were used as feed solutions for the MBR system, which was equipped with a U-shaped hollow fiber membrane module. The flux decline was decreased from 29% to 15% when 9 mg/L of ozone was used, the same decline was also observed when 6 mg/L ozone and hydrogen peroxide (1/1 ozone/peroxide mol ratio) were used. A further decrease in flux decline was observed when pH was adjusted to 9.00 (29% to 9%) prior to the ozone/peroxide oxidation. In most cases, the increase in the ozone dose, the addition of hydrogen peroxide and the adjustment of the pH level led to an increase in the removal of pharmaceuticals. Iopromide, TCEP and Naproxen were found to be more resistant to the oxidation when pH was increased.

摘要

这项工作的两个主要目标之一是在高 pH 条件下用臭氧/过氧化物氧化 MBR 出水,以提高纳滤(NF)阶段有效去除的药物的氧化效率。另一个主要目标是有效氧化 MBR 出水中的溶解性有机碳(DOC),以减少过滤阶段的结垢。在这项工作中,在高 pH 条件下用臭氧/过氧化物氧化,以提高 OH 自由基的形成,并用 NF 膜(NE90)过滤氧化后的出水,以研究结垢潜力和药物的去除。天然和合成废水样品被用作 MBR 系统的进料溶液,该系统配备了 U 形中空纤维膜模块。当使用 9 mg/L 臭氧时,通量下降从 29%降低到 15%,当使用 6 mg/L 臭氧和过氧化氢(1/1 臭氧/过氧化物摩尔比)时,也观察到相同的下降。在进行臭氧/过氧化物氧化之前,将 pH 调节至 9.00 时,通量下降进一步降低(从 29%降低到 9%)。在大多数情况下,增加臭氧剂量、添加过氧化氢和调节 pH 值水平都会导致药物去除率的提高。当 pH 值升高时,发现碘普罗胺、三(2-氯乙基)磷酸酯和萘普生更能抵抗氧化。

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