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Year-long evaluation on the occurrence and fate of pharmaceuticals, personal care products, and endocrine disrupting chemicals in an urban drinking water treatment plant

机译:对城市饮用水处理厂中药品,个人护理产品和破坏内分泌的化学物质的发生和命运进行了为期一年的评估

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摘要

The occurrence and removal of thirty representative pharmaceutical and personal care products (PPCPs) and endocrine disrupting chemicals (EDCs) in an urban drinking water treatment plant (DWTP) were investigated for a period of one year to evaluate current system's treatment efficacy and assess occurrence of PPCPs and EDCs in finished drinking water. Results showed that the average total PPCPs and EDCs concentration in the surface water source was around 360 ng/L (median concentration = 340 ng/L) with 57% coefficient of variation (CV). The median concentrations of most of the individual PPCPs and EDCs in the surface water were below 15 ng/L except for N,N-diethyltoluamide (DEET) and nonylphenol, which were at 122 and 83 ng/L, respectively. The compounds DEET, nonylphenol, ibuprofen, triclosan, atrazine, tris(2-chloroethyl)-phosphate (TCEP), bisphenol-A, and caffeine (in the order of decreasing median concentration) were among twenty compounds detected at least once in the surface water, while all of the above detected compounds, except two, were also detected in the finished drinking water. The average total PPCPs and EDCs concentration in the finished drinking water was around 98 ng/L (median concentration = 96 ng/L) with 66% CV. The median concentrations of most detected PPCPs and EDCs in drinking water were below 5 ng/L except for DEET and nonylphenol, which were at 12 and 20 ng/L, respectively. There was a strong correlation (r = 0.97) between PPCPs and EDCs' concentrations in the source water and in the drinking water over the one-year study period when data points from two sampling events with unusual removals were excluded. Individual water treatment unit processes showed greater temporal variations of PPCPs and EDCs removal efficiencies than the overall treatment processes. The removal efficiencies also varied greatly among different PPCPs and EDCs. The average removal for total PPCPs and EDCs was 76 ± 18% at the DWTP, with ozonation showing the highest removal efficiency. Based on the similar occurrence and removal trends observed as that of total PPCPs and EDCs in this study, DEET and nonylphenol can be considered as potential indicator compounds for predicting the occurrence and removal of total PPCPs and EDCs in surface water. No strong correlations could be found between total PPCPs and EDCs removal and the removal of suspended solids, turbidity, or organic carbon.
机译:调查了城市饮用水处理厂(DWTP)中三十种代表性药品和个人护理产品(PPCP)和内分泌干扰化学物(EDC)的发生和去除,历时一年,以评估当前系统的治疗效果并评估成品饮用水中的PPCP和EDC。结果表明,地表水源中的平均总PPCPs和EDCs浓度约为360 ng / L(中位浓度= 340 ng / L),变异系数(CV)为57%。除N,N-二乙基甲苯酰胺(DEET)和壬基酚分别为122 ng / L和83 ng / L外,地表水中大多数单个PPCP和EDC的中值浓度均低于15 ng / L。化合物DEET,壬基酚,布洛芬,三氯生,at去津,三(2-氯乙基)-磷酸酯(TCEP),双酚A和咖啡因(按中值浓度降低的顺序)是在表面上至少检测到20种化合物中的一种饮用水中,除上述两种化合物外,所有上述检测到的化合物也都被检测出。最终饮用水中的PPCP和EDC的平均总浓度约为98 ng / L(中位浓度= 96 ng / L),CV为66%。除DEET和壬基苯酚分别为12 ng / L和20 ng / L外,饮用水中大多数检测到的PPCP和EDC的中值浓度均低于5 ng / L。在一年的研究期内,当从两个采样事件中有异常去除的数据点排除在外时,PPCP和EDC在源水和饮用水中的浓度之间存在很强的相关性(r = 0.97)。与整体处理过程相比,单个水处理单元过程显示出PPCP和EDC去除效率随时间的变化更大。在不同的PPCP和EDC之间,去除效率也有很大差异。在DWTP上,全部PPCP和EDC的平均去除率为76±18%,臭氧处理显示出最高去除效率。基于在这项研究中观察到的与总PPCP和EDC相似的发生和清除趋势,可以将DEET和壬基酚视为预测地表水中总PPCP和EDC发生和清除的潜在指示剂。在总的PPCP和EDC的去除与悬浮固体,浊度或有机碳的去除之间没有发现强相关性。

著录项

  • 来源
    《Water Research》 |2014年第15期|266-276|共11页
  • 作者单位

    School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332, United States,Centre for Environmental Science and Engineering, Indian Institute of Technology Bombay, Powai, Mumbai 400076,India;

    School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332, United States,Department of Municipal and Environmental Engineering, Beijing Jiaotong University, Beijing 100044, People's Republic of China;

    Integrated Circles Technologies, Inc., Atlanta, GA 30303, United States;

    School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PPCPs; EDCs; DEET; Nonylphenol; Drinking water treatment; Ozonation; Indicator compounds;

    机译:PPCP;EDC;DEET;壬基酚饮用水处理;臭氧化;指示剂;

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