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Ubiquitous Occurrence of the Artificial Sweetener Acesulfame in the Aquatic Environment: An Ideal Chemical Marker of Domestic Wastewater in Groundwater

机译:在水生环境中无处不在的人造甜味剂乙酰磺胺酸:地下水中生活污水的理想化学标记

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摘要

Artificial low-calorie sweeteners are consumed in considerable quantities with food and beverages. After ingestion, some sweeteners pass through the human metabolism largely unaffected, are quantitatively excreted via urine and feces, and thus reach the environment associated with domestic wastewater. Here, we document the widespread occurrence of four sweeteners in the aquatic environment and show that one of these compounds, acesulfame, meets all of the criteria of an ideal marker for the detection of domestic wastewater in natural waters, particularly groundwater. Acesulfame was consistently detected in untreated and treated wastewater (12-46 μg/L), in most surface waters, in 65% of the investigated groundwater samples, and even in several tap water samples (up to 2.6μg/L) from Switzerland. The sweetener was not eliminated in wastewater treatment plants (WWTPs) and was quite persistent in surface waters, where concentrations increased with population in the catchment area and decreased with water throughflow. The highest concentrations in groundwater, up to 4.7 μg/L, were observed in areas with significant infiltration of river water, where the infiltrating water received considerable discharges from WWTPs. Given the currently achieved detection limit of ≈0.01 μg/L, it is possible to trace the presence of >0.05% wastewater in groundwater.
机译:人造低热量甜味剂与食物和饮料一起大量消耗。摄入后,一些甜味剂通过人体新陈代谢,这些代谢基本上不受影响,通过尿液和粪便定量排泄,从而进入与生活污水相关的环境。在这里,我们记录了四种甜味剂在水生环境中的广泛存在,并显示出其中的一种化合物乙酰磺胺符合用于检测天然水(尤其是地下水)中生活污水的理想标记物的所有标准。在未经处理和处理过的废水(12-46μg/ L),大多数地表水,65%的被调查地下水样品中,甚至在瑞士的一些自来水样品(最高2.6μg/ L)中,均始终检测出乙磺胺。甜味剂在废水处理厂(WWTP)中并未消除,并且在地表水中相当持久,在地表水中,甜味剂的浓度随着集水区人口的增加而增加,而随着通水量的减少而降低。在河水大量渗入的地区,地下水的最高浓度高达4.7μg/ L,渗入的水从污水处理厂得到大量排放。鉴于目前达到的检测极限为≈0.01μg/ L,可以追踪地下水中> 0.05%废水的存在。

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  • 来源
    《Environmental Science & Technology》 |2009年第12期|4381-4385|共5页
  • 作者单位

    Plant Protection Chemistry, Swiss Federal Research Station (Agroscope), CH-8820 Waedenswil, Switzerland;

    Plant Protection Chemistry, Swiss Federal Research Station (Agroscope), CH-8820 Waedenswil, Switzerland;

    Plant Protection Chemistry, Swiss Federal Research Station (Agroscope), CH-8820 Waedenswil, Switzerland;

    Plant Protection Chemistry, Swiss Federal Research Station (Agroscope), CH-8820 Waedenswil, Switzerland;

    Plant Protection Chemistry, Swiss Federal Research Station (Agroscope), CH-8820 Waedenswil, Switzerland;

  • 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
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  • 入库时间 2022-08-17 14:04:42

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