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Determination Of Atrazine And Degradation Products In Luxembourgish Drinking Water: Origin And Fate Of Potential Endocrine-Disrupting Pesticides

机译:卢森堡饮用水中阿特拉津及其降解产物的测定:潜在破坏内分泌农药的起源和命运

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摘要

Several pesticides have been hypothesized to act as endocrine-disrupting compounds, exhibiting hormonal activity and perturbing normal physiological functions. Among these, especially s-triazine herbicides have received increased attention. Despite being banned in many countries, including the European Union, atrazine is still the world's most widely used herbicide. Despite its discontinued use, considerable concentrations of atrazine and its degradation products, mainly desethylatrazine (DEA) and deisopropylatrazine (DIA), are still found in the environment, including drinking water sources. The aim of this investigation was to study concentrations of especially s-triazine herbicides and major degradation products in drinking water, including spring water, tap water and bottled water in Luxembourg. Spring water (2007/2008/2009, n = 69/69/69), tap water (2008/2009, n= 19/26), and bottled water (2007/2008/2009, »= 5/13/7) were sampled at locations in Luxembourg and investigated for pesticides by LC-ESI-MS/MS. Atrazine was the predominant triazine, detectable in many spring water locations, tap and bottled water, ranging (mean) from 0-57 (9), 0-44 (4), and 0-4 (1) ngl~(-1), respectively. DEA and DIA in spring water ranged (mean) from 0-120 (19) and 0-27 (3) ngl~(-1), with higher concentrations from agricultural areas and low molar ratios of DEA:atrazine <0.5 and high ratios of atrazine:nitrate suggesting point-source contamination. Levels (mean) of DEA and DIA in tap water were 0 62 (14) and 0 6 (< 1) ng 1~(-1) and in bottled water 0-11 (2) and 0-7 (2) ngl"1. Simazine and other triazines were detected in traces (<5ng~(-1)). Thus, the conducted monitoring suggested the presence of low concentrations of s-triazines in raw and finished water, presumably partly due to non-agricultural contamination, with concentrations being below thresholds advocated by the European Union Directive 98/83/EC.
机译:据推测,几种农药起破坏内分泌的作用,表现出激素活性并扰乱正常的生理功能。其中,特别是s-三嗪除草剂受到了越来越多的关注。尽管在包括欧盟在内的许多国家被禁止使用,ban去津仍然是世界上使用最广泛的除草剂。尽管已停止使用,但是在包括饮用水源在内的环境中仍然发现了相当浓度的阿特拉津及其降解产物,主要是去乙基阿特拉津(DEA)和去异丙基阿特拉津(DIA)。这项研究的目的是研究饮用水中特别是S-三嗪除草剂和主要降解产物的浓度,包括卢森堡的泉水,自来水和瓶装水。泉水(2007/2008/2009,n = 69/69/69),自来水(2008/2009,n = 19/26)和瓶装水(2007/2008/2009,»= 5/13/7)在卢森堡的一些地点进行了抽样,并通过LC-ESI-MS / MS对农药进行了调查。 r去津是主要的三嗪,可在许多泉水,自来水和瓶装水中检测到,平均值(平均值)为0-57(9),0-44(4)和0-4(1)ngl〜(-1) , 分别。泉水中的DEA和DIA(平均值)在0-120(19)和0-27(3)ngl〜(-1)之间,来自农业地区的浓度较高,DEA:阿特拉津的摩尔比低,<0.5,且比率高的azine去津:硝酸盐表明存在点源污染。自来水中DEA和DIA的含量(平均值)分别为0 62(14)和0 6(<1)ng 1〜(-1)以及瓶装水0-11(2)和0-7(2)ngl” 1.在痕量(<5ng〜(-1))中检测到了Simazine和其他三嗪,因此,进行的监测表明原水和成品水中存在低浓度的s-triazines,可能部分是由于非农业污染造成的,浓度低于欧盟指令98/83 / EC所倡导的阈值。

著录项

  • 来源
    《Food Additives & Contaminants》 |2011年第8期|p.1041-1054|共14页
  • 作者单位

    Centre de Recherche Public - Gabriel Lippmann, Department of Environment and Agra-Biotechnologies, 41, rue du Brill, L-4422 Belvaux, Luxembourg;

    Centre de Recherche Public - Gabriel Lippmann, Department of Environment and Agra-Biotechnologies, 41, rue du Brill, L-4422 Belvaux, Luxembourg;

    Centre de Recherche Public - Gabriel Lippmann, Department of Environment and Agra-Biotechnologies, 41, rue du Brill, L-4422 Belvaux, Luxembourg;

    Centre de Recherche Public - Gabriel Lippmann, Department of Environment and Agra-Biotechnologies, 41, rue du Brill, L-4422 Belvaux, Luxembourg;

    Centre de Recherche Public - Gabriel Lippmann, Department of Environment and Agra-Biotechnologies, 41, rue du Brill, L-4422 Belvaux, Luxembourg;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    s-triazine herbicides; atrazine degradation products; tap and spring water; DEA:atrazine ratio; nitrate; 2,6-dichlorobenzamide;

    机译:s-三嗪除草剂;阿特拉津降解产物;自来水和泉水;DEA:阿特拉津比率;硝酸盐;2,6-二氯苯甲酰胺;

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