首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Evaluation of a submerged membrane bioreactor (SMBR) coupled with chlorine disinfection for municipal wastewater treatment and reuse
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Evaluation of a submerged membrane bioreactor (SMBR) coupled with chlorine disinfection for municipal wastewater treatment and reuse

机译:潜水膜生物反应器(SMBR)结合氯消毒处理市政废水的处理和再利用的评估

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摘要

In this study, municipal wastewater was treated by a SMBR system and further disinfected with chlorine to produce reclaimed water. The primary objective was to examine the water quality with a focus on trihalomethanes (THMs). As disinfection conditions are important aspects in controlling the formation of THMs, influences of chlorine dose and contact time on THM formation and speciation were also investigated. High quality reclaimed water was generated though the SMBR system with regard to five-day biological oxygen demand (BOD5), suspend solid (SS) and turbidity. However the concentration of total trihalomethanes (TTHM) in the chlorinated SMBR effluent was up to 160 μg/L, demonstrating that the SMBR was insufficient in the removal of THM precursors. TTHM levels increased with chlorine dose and contact time. As chlorine dose increased, the yields of trichloromethane (CHCl3) and bromodichloromethane (CHBrCl2) increased, whereas both tribromomethane (CHBr3) and dibromochloromethane (CHBr2Cl) decreased due to the rise of Cl2/Br~- ratio. In order to reduce health risks of reclaimed water, efficient removal of disinfection by-product precursor and opportune chlorine disinfection conditions are recommended.
机译:在这项研究中,市政废水通过SMBR系统处理,并进一步用氯消毒以产生再生水。主要目标是检查水质,重点是三卤甲烷(THM)。由于消毒条件是控制THM形成的重要方面,因此还研究了氯剂量和接触时间对THM形成和形态的影响。通过SMBR系统生成了高质量的再生水,涉及五天的生物需氧量(BOD5),悬浮固体(SS)和浊度。但是,氯化SMBR废水中的总三卤甲烷(TTHM)浓度高达160μg/ L,表明SMBR不足以去除THM前体。 TTHM水平随氯剂量和接触时间而增加。随着氯剂量的增加,三氯甲烷(CHCl3)和溴二氯甲烷(CHBrCl2)的产率增加,而三溴甲烷(CHBr3)和二溴氯甲烷(CHBr2Cl)均由于Cl2 / Br〜-比率的增加而降低。为了减少中水的健康风险,建议有效去除消毒副产物前体和适当的氯消毒条件。

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