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Investigation of the fate of sulfonamides downgradient of a decommissioned sewage farm near Berlin, Germany

机译:对德国柏林附近退役污水处理厂的磺酰胺类降级命运的调查

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摘要

The drinking water production of a drinking water treatment plant in Berlin is affected by ambient contaminated groundwater. The three organic compounds para-toluenesulfonamide (p-TSA), ortho-toluenesulfonamide (o-TSA) and benzenesulfonamide (BSA) were identified in the catchment area of this plant. The groundwater pollution is a result of former sewage farm irrigation in the area, operating for almost 70 years until the 1980s. The distribution of the sulfonamides in the anoxic groundwater was investigated, and a large number of observation and production wells were sampled for this purpose. The contaminant plume is 25 m~* 3000 m~* 2000 m (depth, length, width) in size. The high concentrations of p-TSA, o-TSA and BSA in the groundwater show that the sulfonamides persist over decades in an anoxic aquifer environment. Groundwater quality assessment revealed that elevated concentrations of the analytes can be expected in the abstraction well galleries in the future. Therefore, sulfonamides should periodically be monitored in the drinking water (maximum allowed concentration of 0.30 μg/L of p-TSA and for o-TSA and BSA, a limit of 0.10 μg/L for unknown substances applies). Because of the widespread application and the persistence of the sulfonamides under anoxic conditions, our local investigations suggest that the substances may generally be present in groundwater under the influence of sewage irrigation. Incubation experiments were conducted under in situ hydrostatic pressure to study the behaviour of these trace organic compounds under different redox conditions (oxic and anoxic). Groundwater sampling equipment was either sterilised or not sterilised in order to distinguish between microbiological processes occurring in the aquifer and those representing sampling and storage artefacts (incubation experiments). Results showed that the addition of oxygen to the anoxic groundwater facilitates p-TSA and o-TSA degradation. Hence, while the substances are persistent under anoxic conditions, they are more degradable in the presence of oxygen. Results also illustrate that maintaining anoxic conditions or applying appropriate preservation techniques is necessary to ensure accurate analysis.
机译:柏林的饮用水处理厂的饮用水生产受到环境污染的地下水的影响。在该工厂的集水区发现了三种有机化合物对甲苯磺酰胺(p-TSA),邻甲苯磺酰胺(o-TSA)和苯磺酰胺(BSA)。地下水污染是该地区以前的污水处理场灌溉的结果,该地区运营了近70年,直到1980年代。研究了磺酰胺在缺氧地下水中的分布,并为此采样了许多观察井和生产井。污染物羽流的尺寸为25 m〜* 3000 m〜* 2000 m(深度,长度,宽度)。地下水中高浓度的p-TSA,o-TSA和BSA表明,磺酰胺在缺氧含水层环境中可持续存在数十年。地下水质量评估显示,将来在抽水井画廊中可以预期分析物的浓度会升高。因此,应定期监测饮用水中的磺酰胺类(p-TSA的最大允许浓度为0.30μg/ L,o-TSA和BSA的最大允许浓度为未知物质0.10μg/ L。)由于磺胺类药物在缺氧条件下的广泛应用和持久性,我们的当地调查表明,在污水灌溉的影响下,该物质通常可能存在于地下水中。在原位静水压力下进行温育实验,以研究这些痕量有机化合物在不同氧化还原条件(有氧和无氧)下的行为。为了区分含水层中发生的微生物过程与代表采样和储存伪像的微生物过程(温育实验),对地下水采样设备进行了灭菌或未灭菌。结果表明,向缺氧地下水中添加氧气有助于p-TSA和o-TSA降解。因此,尽管这些物质在缺氧条件下是持久的,但在氧气存在下它们更易于降解。结果还表明,维持缺氧条件或应用适当的保存技术对于确保准确的分析是必要的。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2009年第4期|183-194|共12页
  • 作者单位

    Institute of Geological Sciences, Freie Universitat Berlin, Malteserstr. 74-100, 12249 Berlin, Germany Department of Laboratories, Berlin Water Company, 10864 Berlin, Germany;

    Institute of Geological Sciences, Freie Universitat Berlin, Malteserstr. 74-100, 12249 Berlin, Germany;

    Institute of Geological Sciences, Freie Universitat Berlin, Malteserstr. 74-100, 12249 Berlin, Germany;

    Department of Laboratories, Berlin Water Company, 10864 Berlin, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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

    sewage farm; groundwater pollution; sterile groundwater sampling; incubation experiment; redox sensitivity;

    机译:污水处理场;地下水污染;无菌地下水采样;孵化实验;氧化还原敏感性;

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