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首页> 外文期刊>Chemosphere >PCB and dioxin-like PCB in indoor air of public buildings contaminated with different PCB sources - deriving toxicity equivalent concentrations from standard PCB congeners
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PCB and dioxin-like PCB in indoor air of public buildings contaminated with different PCB sources - deriving toxicity equivalent concentrations from standard PCB congeners

机译:公共建筑室内空气中的PCB和类似二恶英的PCB被不同的PCB来源污染-从标准PCB同源物推导出毒性当量浓度

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摘要

Data on dioxin-like PCB in indoor air of buildings with PCB-containing materials and on possible correlation between toxicity equivalent concentrations (TEQ) and levels of non-dioxin-like standard PCB is sparse. As part of a larger survey on indoor-air contamination with PCB, the connection between the concentration of standard PCB congeners and the dioxin-like toxicity expressed as TEQ was investigated. Indoor air samples (n = 8) were collected in four public buildings with known PCB sources and total PCB levels in the range from 715 to 2250 ng/m~3 and analyzed for the six non-dioxin-like standard PCB (congeners 28, 52, 101, 138, 153, 180), the twelve dioxin-like PCB congeners according to WHO and the 17 2,3,7,8-substituted PCDD/PCDF congeners. In three buildings where PCB were used as flame retardant coatings of acoustic ceiling tiles, PCB 101 had the maximum level among the six standard PCB, while in the building with permanent elastic sealants as PCB source, congeners 28 and 52 dominated the pattern by far. In the case of permanent elastic sealants as PCB source (n = 3) a total PCB concentration of 1000 ng/m~3 corresponded to a total TEQ level of 0.3-0.6 pg/m~3. In contrast, in rooms with acoustic ceiling tiles as PCB source, 1.8-4.7 pg TEQ/m~3 per 1000 ng total PCB/m~3 were found. Linear regression analysis between PCB and TEQ indicated that PCB 118 might be used to calculate the total TEQ of dioxin-like PCB and PCDD/PCDF. By means of such a correlation it is possible to estimate TEQ by extrapolation from the results of less sophisticated analytical methods. It is tentatively recommended to use PCB 118 for screening purposes or re-evaluation of standard PCB indoor-air measurements. If only the six non-dioxin-like PCB standard congeners are available, a regression algorithm using the sum of PCB 101, 138, 153 and 180 might be used instead.
机译:含多氯联苯材料的建筑物的室内空气中类似二恶英类PCB的数据,以及毒性当量浓度(TEQ)与非二恶英类标准PCB含量之间可能的相关数据很少。作为对室内空气中多氯联苯污染的较大调查的一部分,研究了标准多氯联苯同源物的浓度与表示为TEQ的二恶英样毒性之间的联系。室内空气样本(n = 8)收集在四个已知PCB来源的公共建筑中,总PCB含量在715至2250 ng / m〜3的范围内,并分析了六种非二恶英样的标准PCB(同类物28, 52、101、138、153、180),根据WHO的十二种二恶英样PCB同系物和17种2,3,7,8取代的PCDD / PCDF同系物。在将PCB用作隔音天花板的阻燃涂料的三座建筑物中,PCB 101在六种标准PCB中的含量最高,而在以永久弹性密封胶作为PCB来源的建筑物中,同类材料28和52占据了主导地位。在使用永久弹性密封胶作为PCB来源(n = 3)的情况下,PCB的总浓度为1000 ng / m〜3,相当于TEQ的总水平为0.3-0.6 pg / m〜3。相比之下,在以隔音天花板作为PCB来源的房间中,每1000 ng总PCB / m〜3中发现1.8-4.7 pg TEQ / m〜3。 PCB与TEQ之间的线性回归分析表明,PCB 118可用于计算类二恶英PCB和PCDD / PCDF的总TEQ。通过这种相关性,可以从不太复杂的分析方法的结果中通过外推法估计TEQ。临时建议将PCB 118用于筛查目的或重新评估标准PCB室内空气测量值。如果只有六个非二恶英样的PCB标准同类物可用,则可以改用使用PCB 101、138、153和180之和的回归算法。

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