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Simultaneous removal of multiple odorants from source water suffering from septic and musty odors: Verification in a full-scale water treatment plant with ozonation

机译:同时从具有腐臭和霉味的原水中去除多种气味:在具有臭氧处理功能的大型水处理厂中进行验证

摘要

Ozonation is known to be very effective in the removal of odorants from source water. However, it is not known if ozonation is effective in the removal of multiple odorants causing different types of odors. In this study, the removal performance for odors and odorants were evaluated in a Water Treatment Plant (WTP), which was equipped with coagulation, sedimentation, ozonation, biological activated carbon (BAC) filtration, sand filtration, and chlorination in succession and located in the downstream of the Huangpu (HP) River, over the period from April, 2014 to April, 2015. Flavor profile analysis (FPA) results showed that the source water was constantly associated with septic and musty odors. Geosmin and 2-MIB, with an average OAV of 4.54 and 138, respectively, were the major odorants for musty odor, while bis(2-chloroisopropyl) ether, DEDS and DMDS with an average OAV of 2.35, 1.65 and 0.78, respectively, might be responsible for the septic odor. While the musty odor could be removed effectively through the combination of ozonation and BAC, the septic odor and associated odorants required further treatment with sand filtration and chlorination for complete removal. It is clear that the advanced treatment process was effective for the treatment of source water containing complicated odorants. It should be noted that the sedimentation process needs careful management because release of odorants may occur during the treatment. The result of this study will be helpful for the mitigation of odors in WTP using source waters suffering from complicated odor problems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:众所周知,臭氧化对于从水源中去除臭味非常有效。然而,臭氧处理是否有效去除引起不同类型气味的多种气味剂,尚不知道。在这项研究中,在水处理厂(WTP)中评估了对异味和异味的去除性能,该厂配备了混凝,沉淀,臭氧化,生物活性炭(BAC)过滤,沙滤和氯化的连续设备,并位于2014年4月至2015年4月期间是黄浦江下游。风味特征分析(FPA)结果表明,源水一直与化脓和霉味相关。 Geosmin和2-MIB的平均OAV分别为4.54和138,是产生霉味的主要气味,而双(2-氯异丙基)醚,DEDS和DMDS的平均OAV分别为2.35、1.65和0.78,可能是造成败血症气味的原因。虽然可以通过臭氧处理和BAC的组合有效地去除霉味,但仍需要进一步进行沙滤和氯化处理,以彻底去除脓毒味和相关的臭味。显然,高级处理工艺对于处理含有复杂气味的原水是有效的。应该注意的是,沉淀过程需要谨慎处理,因为在处理过程中可能会释放出气味。这项研究的结果将有助于减轻使用复杂气味问题源水的WTP中的气味。 (C)2016 Elsevier Ltd.保留所有权利。

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