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One representative water supply system in China with nitrosamine concern: Challenges and treatment strategies

机译:中国亚硝胺关注的一个代表性供水系统:挑战和治疗策略

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Four sampling campaigns were conducted in two years to understand the fluctuation of N-Nitrosamines (NAs) and their precursors in one drinking water treatment plant (DWTP) in East China in different seasons. This water supply system has been facing several nitrosamine challenges related with source water, including the switch of water source, high concentration of ammonium, formed NAs and NA formation potential (FP) in source water. Besides, the use of ozonation in the DWTP and chloramination in networks will increase the NDMA concentration in tap water. To address these challenges, the bio-pretreatment was applied in this DWTP to decrease the concentration of ammonium and NAs. The following biological activated carbon (BAC) will neutralize the nitrosamine increase brought by ozonation. The use of free chlorine in disinfection process will also decrease the NDMA formation compared with chloramination. The results will benefit other cities in China and other countries with similar impacted water sources. (C) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:两年内进行了四项抽样活动,以了解不同季节在华东饮用水处理厂(DWTP)中N-硝基胺(NAS)及其前体的波动。这种供水系统面临着与源水相关的几种亚硝胺挑战,包括水源,高浓度的铵,形成的NAS和Na形成电位(FP)的开关。此外,在网络中使用臭氧化合物和网络中的氯化将增加自来水中的NDMA浓度。为了解决这些挑战,在该DWTP中应用生物预处理以降低铵和NAs的浓度。以下生物活性炭(BAC)将中和臭氧化带来的亚硝胺增加。与氯化相比,在消毒过程中使用自由氯也将降低NDMA形成。结果将使中国其他城市和其他受影响的水源的国家。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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