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Differential chemical profiling to identify ozonation by-products of estrone-sulfate and first characterization of estrogenicity in generated drinking water

机译:差异化学分析,以鉴定硫酸雌酮的臭氧化副产物和生成饮用水中雌激素的首次表征

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摘要

For a few years, the concern of water treatment companies is not only focused on the removal of target micropollutants but has been extended to the investigation of potential biologically active by-products generated during the treatment processes. Therefore, some methods dedicated to the detection and structural characterization of such by-products have emerged. However, most of these studies are usually carried out under simplified conditions (e.g. high concentration levels of micropollutants, drastic treatment conditions, use of deionized or ultrapure water) and somewhat unrealistic conditions compared to that implemented in water treatment plants. In the present study, a real field water sample was fortified at the part-per-billion level (50 μg L~(-2)) with estrone-3-sulfate (E1-3S) before being ozonated (at 1 mg L~(-1)) for 10 min. In a first step, targeted measurements evidenced a degradation of the parent compound (>80%) in 10 min. Secondly, a non-targeted chemical profiling approach derived from metabolomic profiling studies allowed to reveal 11 ozonation by-products, among which 4 were found predominant. The estrogenic activity of these water samples spiked with E1-3S before and after treatment was assessed by the ER-CALUX assay and was found to decrease significantly after 10 min of ozonation. Therefore, this innovative methodological strategy demonstrated its suitability and relevancy for revealing unknown compounds generated from water treatment, and permitted to generate new results regarding specifically the impact of ozonation on estrone-3-sulfate. These results confirm that ozonation is effective at removing E1-3S in drinking water and indicate that the by-products generated have significantly lower estrogenic activity.
机译:几年来,水处理公司的关注不仅集中在目标微污染物的去除上,而且还扩展到对处理过程中产生的潜在生物活性副产物的研究。因此,已经出现了一些专门用于检测和副产物结构表征的方法。但是,大多数这些研究通常是在简化的条件下进行的(例如,高浓度的微污染物,剧烈的处理条件,使用去离子水或超纯水),并且与在水处理厂实施的条件相比有些不切实际。在本研究中,实际的水样品在被臭氧处理(1 mg L〜)之前,用硫酸雌酮-3-硫酸盐(E1-3S)以十亿分之一的浓度(50μgL〜(-2))进行了强化。 (-1))10分钟。第一步,有针对性的测量表明母体化合物在10分钟内降解(> 80%)。其次,从代谢组学谱学研究得出的非目标化学谱学方法可以揭示11种臭氧化副产物,其中4种是主要的。通过ER-CALUX分析评估了处理前和处理后掺有E1-3S的这些水样品的雌激素活性,发现在臭氧化10分钟后雌激素活性显着降低。因此,这种创新的方法论策略证明了其适用性和相关性,可用于揭示水处理过程中产生的未知化合物,并允许就臭氧化对雌酮-3-硫酸酯的影响产生新的结果。这些结果证实了臭氧氧化可有效去除饮用水中的E1-3S,并表明产生的副产物具有明显较低的雌激素活性。

著录项

  • 来源
    《Water Research》 |2013年第11期|3791-3802|共12页
  • 作者单位

    LUNAM Universite, ONIRIS, Laboratoire d'Etude des Residus et Contaminants dans les Aliments (LABERCA),707, 44307 Nantes, France;

    LUNAM Universite, ONIRIS, Laboratoire d'Etude des Residus et Contaminants dans les Aliments (LABERCA),707, 44307 Nantes, France;

    LUNAM Universite, ONIRIS, Laboratoire d'Etude des Residus et Contaminants dans les Aliments (LABERCA),707, 44307 Nantes, France;

    LUNAM Universite, ONIRIS, Laboratoire d'Etude des Residus et Contaminants dans les Aliments (LABERCA),707, 44307 Nantes, France,INRA, Nantes, France;

    LUNAM Universite, ONIRIS, Laboratoire d'Etude des Residus et Contaminants dans les Aliments (LABERCA),707, 44307 Nantes, France;

    Veolia Enuironnement Recherche et Innouation, Saint Maurice, France;

    Veolia Enuironnement Recherche et Innouation, Saint Maurice, France;

    Veolia Enuironnement Recherche et Innouation, Saint Maurice, France;

    Veolia Enuironnement Recherche et Innouation, Saint Maurice, France;

    Veolia Enuironnement Recherche et Innouation, Maisons-Laffitte, France;

    LUNAM Universite, ONIRIS, Laboratoire d'Etude des Residus et Contaminants dans les Aliments (LABERCA),707, 44307 Nantes, France;

  • 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

    Chemical food safety; Ozonation; Water; Estrone-3-sulfate; By-products; High-resolution mass spectrometry;

    机译:食品化学安全性;臭氧化;水;3-硫酸雌激素;副产物;高分辨率质谱;

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