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Causes Of Variability In Concentrations And Diastereomer Patterns Of Hexabromocyclododecanes In Indoor Dust

机译:室内粉尘中六溴环十二烷的浓度和非对映异构体模式变化的原因

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The temporal evolution of concentrations of α-, β-, and γ-hexabromocyclododecanes (HBCDs), and pentabromocyclododecenes (PBCDs - degradation products of HBCDs) was studied in separate aliquots of a well-homogenized indoor dust sample. These were: (a) exposed to natural light, and (b) kept in the dark. Results revealed a rapid photolytically-mediated shift from γ -HBCD to α-HBCD that was complete after 1 week of exposure, and a slower degradative loss of HBCDs via elimination of HBr. Under the specific conditions studied in this experiment, calculated half-lives (t_(1/2)) showed the decay in ΣHBCDs concentration was faster in light-exposed samples (t_(1/2)=12 weeks), than in light-shielded dust (t_(1/2)=26 weeks). Within-room spatial and temporal variability in concentrations and diastereomer patterns were studied in six and three rooms respectively. While in some rooms, little variability was detected, in others it was substantial. In one room, concentrations of SHBCDs and the relative abundance of γ-HBCD declined dramatically with increasing distance from a TV. The same TV appears to have influenced strongly the temporal variation in that room; with higher concentrations observed in its presence and when the TV was moved closer to the area sampled. Significant negative correlation was observed in one room between concentrations of ΣHBCDs and dust loading (g dust m~(-2) floor), implying "dilution" occurs at higher dust loadings.
机译:在均一化的室内粉尘样品中,分别研究了α-,β-和γ-六溴环十二碳烯(HBCD)和五溴环十二碳烯(PBCDs-HBCD的降解产物)浓度的时间演变。它们是:(a)暴露在自然光下,(b)保持在黑暗中。结果显示,在暴露1周后,光解介导的快速光合作用从γ-HBCD转变为α-HBCD,并且通过消除HBr降低了HBCD的降解性损失。在此实验研究的特定条件下,计算得出的半衰期(t_(1/2))表明,暴露于光的样品(t_(1/2)= 12周)中ΣHBCDs浓度的衰减要快于暴露于光的样品中。屏蔽尘埃(t_(1/2)= 26周)。分别在六个和三个房间中研究了室内浓度和非对映异构体模式的时空变异性。在某些房间中,几乎没有发现变化,而在其他房间中,变化很大。在一个房间中,SHBCD的浓度和γ-HBCD的相对丰度随着与电视距离的增加而急剧下降。同一台电视似乎对该房间的时间变化有很大的影响。当电视出现并靠近样本区域时,观察到的浓度较高。在一个房间内,六溴环十二烷的浓度与粉尘负荷(克粉尘m〜(-2)地板)之间存在显着的负相关性,这意味着在较高的粉尘负荷下会发生“稀释”。

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