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Dechlorane Plus Levels in Sediment of the Lower Great Lakes

机译:大湖下游沉积物中的十氯烷水平

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A recently discovered chlorinated flame retardant, Dechlorane Plus (DP), was reported in air and a sediment core within the North American Great Lakes region. To further reveal the fate of DP in the Great Lakes, 40 surficial sediments from Lakes Erie and Ontario and two additional cores were analyzed using newly available analytical grade DP isomer solutions. The maximum total concentration in Lake Ontario was over 60-fold higher than Lake Erie, 586 ng/g and 8.62 ng/g, respectively. Additionally, analysis of archived suspended sediments collected from the Niagara River (1980-2002) showed a declining total DP concentration of 89 ng/g to 7.0 ng/g, suggesting a possible decrease in production orthe reduction of free DP released into the environment during manufacturing. The average syn-DP fractional abundance (f_(syn)) in our study was less than the commercial DP composition indicating a stereoselective enrichment of anti-DP in the environment Mean f_(syn) profiles were uniquely similar to both Lake Ontario and the Niagara River in comparison to Lake Erie. During the course of our analysis we noticed an increasing f_(syn) value in the calibration standard which became exacerbated as the liner got dirtier and suggested the prospect of DP degradation. Follow-up studies indicated these compounds were dechlorinated DP species produced on the injection liner. Using a clean injection liner, these degradates were also detected in sediments from the Niagara River and Lake Ontario; tentatively identified as[-Cl+H] and [-2Cl+2H] by high resolution mass spectrometry. The observed similarity of f_(syn) profiles between Lake Ontario and Niagara River and the detection of the degradates only in their locations, suggest to us that the river is a major source to Lake Ontario's DP burden. To our knowledge, this is the first report of DP degradates in the environment.
机译:据报道,在北美五大湖地区的空气和沉积物芯中,最近发现了一种氯化阻燃剂Dechlorane Plus(DP)。为了进一步揭示大湖区DP的命运,使用新近可得的分析级DP异构体溶液对来自伊利湖和安大略省的40种表面沉积物以及另外两个岩心进行了分析。安大略湖的最大总浓度分别比伊利湖高586 ng / g和8.62 ng / g,高出60倍以上。此外,对从尼亚加拉河(1980-2002)收集的悬浮悬浮沉积物进行的分析显示,总DP浓度从89 ng / g下降至7.0 ng / g,这表明在此期间产量可能降低或释放到环境中的游离DP可能减少。制造业。我们研究中的平均syn-DP分数丰度(f_(syn))小于商业DP成分,表明环境中抗DP的立体选择性富集。平均f_(syn)谱图与安大略湖和尼亚加拉独特河与伊利湖相比。在我们的分析过程中,我们注意到校准标样中的f_(syn)值不断增加,随着衬管变得更脏而加剧,并暗示了DP降解的前景。后续研究表明,这些化合物是在注射衬管上产生的脱氯DP物质。使用干净的注入衬管,还在尼亚加拉河和安大略湖的沉积物中检测到了这些降解物。通过高分辨率质谱法初步鉴定为[-Cl + H]和[-2Cl + 2H]。观察到的安大略湖和尼亚加拉河之间f_(syn)剖面的相似性以及仅在其位置发现的降解物向我们表明,该河是安大略湖DP负担的主要来源。据我们所知,这是DP在环境中降解的第一份报告。

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