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首页> 外文期刊>Journal of Hazardous Materials >The role of ozone pretreatment on optimization of membrane bioreactor for treatment of oil sands process-affected water
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The role of ozone pretreatment on optimization of membrane bioreactor for treatment of oil sands process-affected water

机译:臭氧预处理在优化膜生物反应器处理油砂工艺污水中的作用

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摘要

Previously, anoxic-aerobic membrane bioreactor (MBR) coupled with mild ozonation pretreatment has been applied to remove toxic naphthenic acids (NAs) in oil sands process-affected water (OSPW). To further improve MBR performance, the optimal operation conditions including hydraulic retention time (HRT) and initial ammonia nitrogen (NH4+-N) need to be explored. In this study, the role of ozone pretreatment on MBR optimization was investigated. Compared with MBR treating raw OSPW, MBR treating ozonated OSPW had the same optimal operation conditions (HRT of 12 h and NH4+-N concentration of 25 mg/L). Nevertheless, MBR performance benefited from HRT adjustment more after ozone pretreatment. HRT adjustment resulted in NA removal in the range of 33-50% for the treatment of ozonated OSPW whereas NA removal for raw OSPW only fluctuated between 27% and 38%. Compared with the removal of classical NAs, the degradation of oxidized NAs was more sensitive to the adjustment of operation conditions. Adjusting HRT increased the removal of oxidized NAs in ozonated OSPW substantially (from 6% to 35%). It was also noticed that microbial communities in MBR treating ozonated OSPW were more responsive to the adjustment of operation conditions as indicated by the noticeable increase of Shannon index and extended genetic distances. (C) 2018 Elsevier B.V. All rights reserved.
机译:以前,缺氧-好氧膜生物反应器(MBR)与温和的臭氧化预处理相结合已用于去除油砂工艺影响水(OSPW)中的有毒环烷酸(NAs)。为了进一步提高MBR性能,需要探索包括液压停留时间(HRT)和初始氨氮(NH4 + -N)在内的最佳操作条件。在这项研究中,研究了臭氧预处理对MBR优化的作用。与MBR处理原始OSPW相比,MBR处理臭氧化OSPW具有相同的最佳操作条件(HRT为12 h,NH4 + -N浓度为25 mg / L)。然而,在臭氧预处理后,MBR性能更多地受益于HRT的调整。 HRT的调整导致臭氧化OSPW的去除率在33%至50%之间,而原始OSPW的去除率仅在27%至38%之间波动。与去除传统的NA相比,氧化的NA的降解对操作条件的调节更为敏感。调节HRT可以显着提高臭氧化OSPW中氧化型NA的去除(从6%到35%)。还注意到,如香农指数的显着增加和遗传距离的延长所表明的那样,MBR治疗臭氧化OSPW的微生物群落对操作条件的调节更敏感。 (C)2018 Elsevier B.V.保留所有权利。

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