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首页> 外文期刊>Environmental Science and Pollution Research >Environmental exposure of anthropogenic micropollutants in the Prut River at the Romanian-Moldavian border: a snapshot in the lower Danube river basin
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Environmental exposure of anthropogenic micropollutants in the Prut River at the Romanian-Moldavian border: a snapshot in the lower Danube river basin

机译:罗马尼亚 - 摩尔维亚边境普拉特河上的人为河流的环境暴露:下达巴德河流域的快照

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The Prut River, the second longest tributary of the Danube river, was investigated for a wide range of anthropogenic organic pollutants to fill the data gap on environmental contamination in eastern European surface waters. In this study, the occurrence of a wide range of organic pollutants was measured along the transboundary Prut River, between Sculeni and Branza in 2010–2012. Using two different analytical methods, gas chromatography coupled to mass spectrometry and liquid chromatography coupled to high-resolution mass spectrometry, over 300 compounds were screened for and 88 compounds were determined in the Prut River. In general, the chemicals occurred at low levels. At the last sampling site upstream of the confluence with the Danube river at Branza, the highest average concentrations (≥?100?ng?L_(?1)) were determined for the artificial sweetener acesulfame, the pharmaceuticals metformin, 4-acetamidoantipyrene, and 4,4,5,8-tetramethylchroman-2-ol, the antioxidants 2,4-di-tert-butylphenol, 3-tert-butyl-4-hydroxyanisol, and 3,5-di-tert-butyl-4-hydroxy-toluene, the personal care products HHCB (galaxolide), 4-phenyl-benzophenone, and octyl dimethyl-p-aminobenzoic acid, the industrial chemical diphenylsulfone, and the sterol cholesterol. Low concentrations of agricultural pesticides occurred in the catchment. At Branza, the total accumulated load of all measured compounds was calculated to be almost 19?kg?day_(?1). In comparison to the Rhine River, the loads in the Prut, determined with same LC-HRMS method for the same set of analytes, were two orders of magnitude lower. Discharge of wastewater without proper treatment from the city of Iasi in the Jijia catchment (Romania) as well as from the city of Cahul (Moldova) revealed a distinct increase in concentrations and loads in the Prut at Frasinesti and Branza. Thus, an implementation of wastewater treatment capacities in the Prut River basin would considerably reduce the loads of micropollutants from urban point sources.
机译:多瑙河的第二个最长的支流普拉特河对各种人为有机污染物进行了调查,以填补东欧地表水域环境污染的数据差距。在这项研究中,2010 - 2012年在Sculeni和Branza之间沿着跨界Prut河流测量了各种有机污染物的发生。采用两种不同的分析方法,将与质谱和液相色谱相偶联的气相色谱法与高分辨率质谱偶联,筛选出超过300种化合物,并在普鲁特河中测定88种化合物。通常,化学物质发生在低水平。在与Branza的多瑙河上游的最后一个采样网站上,测定了人造甜味剂乙酰磺胺,药物二甲双胍,4-乙酰氨基苯乙烯,和≥100≤NG≤1_(α1),和4,4,5,8-四甲基铬-2-醇,抗氧化剂2,4-二叔丁基苯基酚,3-叔丁基-4-羟基乙醇和3,5-二叔丁基-4-羟基 - 托洛烯,个人护理产品HHCB(Galaxolide),4-苯基 - 二苯甲酮和辛基二甲基-P-氨基苯甲酸,工业化学二苯基砜和甾醇胆固醇。在集水区内出现低浓度的农药。在Branza,计算所有测量化合物的总累积负荷差约19?kg?天_(?1)。与莱茵河(Rhine River)相比,用相同的LC-HRMS方法确定同一组分析物的载荷,是两个数量级。废水的排放而不适当地从嘉吉集水区(罗马尼亚)以及Cahul(摩尔多瓦)的城市,露出浓度和弗拉兰萨队的浓度和载荷突出的速度。因此,Prut River盆地的废水处理能力的实施将大大减少城市点源的微污染物负荷。

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