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首页> 外文期刊>ACS Omega >Elevated Concentrations of 4-Bromobiphenyl and 1,3,5-Tribromobenzene Found in Deep Water of Lake Geneva Based on GC×GC-ENCI-TOFMS and GC×GC-μECD
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Elevated Concentrations of 4-Bromobiphenyl and 1,3,5-Tribromobenzene Found in Deep Water of Lake Geneva Based on GC×GC-ENCI-TOFMS and GC×GC-μECD

机译:基于GC×GC-ENCI-TOFMS和GC×GC-μECD的日内瓦湖深水中发现的4-溴联苯和1,3,5-三溴苯的浓度升高

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摘要

We quantified the concentrations of two little-studied brominated pollutants, 1,3,5-tribromobenzene (TBB) and 4-bromobiphenyl (4BBP), in the deep water column and sediments of Lake Geneva. We found aqueous concentrations of 625 ± 68 pg L~(–1) for TBB and 668 ± 86 pg L~(–1) for 4BBP over a depth range of 70–191.5 m (near-bottom depth), based on duplicate measurements taken at five depths during three separate 1 month sampling periods at our sampling site near Vidy Bay. These levels of TBB and 4BBP were 1 or 2 orders of magnitude higher than the quantified aqueous concentrations of the components of the pentabrominated biphenyl ether technical mixture, which is a flame retardant product that had a high production volume in Europe before 2001. We observed statistically significant vertical concentration trends for both TBB and 2,2′,4,4′,6-pentabromobiphenyl ether in the deep water column, which indicates that transport and/or degradation processes affect these compounds. These measurements were enabled by application of a comprehensive two-dimensional gas chromatograph coupled to an electron capture negative chemical ionization time-of-flight mass spectrometer (GC×GC-ENCI-TOFMS) and to a micro-electron capture detector (GC×GC-μECD). GC×GC-ENCI-TOFMS and GC×GC-μECD were found to be >10× more sensitive toward brominated pollutants than conventional GC×GC-EI-TOFMS (with an electron impact (EI) ionization source), the latter of which had insufficient sensitivity to detect these emerging brominated pollutants in the analyzed samples. GC×GC also enabled the estimation of several environmentally relevant partitioning properties of TBB and 4BBP, further confirming previous evidence that these pollutants are bioaccumulative and have long-range transport potential.
机译:我们量化了日内瓦湖深水柱和沉积物中两种未经研究的溴化污染物,即1,3,5-三溴苯(TBB)和4-溴联苯(4BBP)的浓度。根据重复测量,我们发现在70–191.5 m(近底部深度)深度范围内,TBB的水溶液浓度为625±68 pg L〜(–1),4BBP的水溶液浓度为668±86 pg L〜(–1)。在我们Vidy Bay附近的采样地点进行的三个单独的1个月采样期内,在五个深度进行了采样。这些TBB和4BBP的含量比五溴联苯醚工业混合物的成分的定量水溶液浓度高出1或2个数量级,该混合物是一种阻燃产品,在2001年之前在欧洲具有很高的产量。我们进行了统计观察TBB和2,2',4,4',6-五溴代二苯醚在深水塔中的垂直浓度有明显的趋势,这表明运输和/或降解过程会影响这些化合物。通过使用全面的二维气相色谱仪,电子捕获负化学电离飞行时间质谱仪(GC×GC-ENCI-TOFMS)和微电子捕获检测器(GC×GC),可以进行这些测量-μECD)。发现GC×GC-ENCI-TOFMS和GC×GC-μECD对溴化污染物的敏感性比常规GC×GC-EI-TOFMS(带有电子碰撞(EI)电离源)高10倍以上。灵敏度不足以检测分析样品中的这些新兴溴化污染物。 GC×GC还可以估算TBB和4BBP的几种与环境相关的分配特性,进一步证实了先前的证据表明这些污染物具有生物蓄积性,并且具有远距离迁移潜力。

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