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首页> 外文期刊>Environmental Science & Technology >Indoor Dust/Air Partitioning: Evidence for Kinetic Delay in Equilibration for Low-Volatility SVOCs
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Indoor Dust/Air Partitioning: Evidence for Kinetic Delay in Equilibration for Low-Volatility SVOCs

机译:室内灰尘/空气分配:低波动性SVOC的平衡延迟的动力学延迟证据

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摘要

Effective modeling of semivolatile organic chemical (SVOC) partitioning between air and indoor dust is investigated by calculating partition ratios for selected SVOCs between air and n-octanol as well as 8 other oligomers similar in chemical structure to common components of household dust. COSMO-RS solvation theory was used to calculate air-oligomer partition ratios, which were converted to estimates for K_(OA) (octanol-air) and K_(dust-air). The results are compared with reported monitored partition ratios with good agreement for the more volatile SVOCs of vapor pressure (VP) exceeding 10~(-5) Pa and corresponding calculated log K_(dust-air) (m~3 g~(-1)) of <5.5 or unitless log K_(OA) of < 11.5. For less volatile SVOCs, reported values of K_(DA) are significantly lower than predicted, with the deviation increasing with decrease in VP. This effect is attributed to a kinetic delay in which characteristic times for equilibration exceed the dust-air contact time, and equilibrium is not achieved. It is hoped that the approach of computing partition ratios of SVOCs using oligomers selected on the basis of likely dust sources and compositions may improve the estimation of indoor human exposure to SVOCs present in air and dust and assist in exploiting dust samples to monitor and evaluate the fate and exposure of organic chemicals used indoors.
机译:通过计算空气和正辛醇之间的选定SVOCs的分配比以及8种与化学结构类似的寡聚体与家用粉尘的共同组分来研究空气和室内灰尘之间的半抗体和室内灰尘之间分配的有效建模。 COSMO-RS溶剂化理论用于计算空气低聚物分区比,其被转化为K_(OA)(辛醇 - 空气)和K_(除尘器)的估计。将结果与报告的监测分配比率进行比较,对于超过10〜(5)PA的蒸气压(VP)的更挥发性SVOC的易于吻合的分区比率,并且相应的计算测井K_(灰尘 - 空气)(M〜3 G〜(-1 ))<5.5或无单位的log k_(oa)<11.5。对于较少的挥发性SVOC,报告的K_(DA)值显着低于预测,随着VP的减少而增加。这种效果归因于动力学延迟,其中平衡的特性时间超过灰尘 - 空气接触时间,并且没有实现平衡。希望使用基于可能的粉尘和组合物选择的低聚物计算SVOCs的分配比的方法可以改善空气和灰尘中存在的SVOC的室内人体暴露,并有助于利用粉尘样品来监测和评估在室内使用的有机化学品的命运和暴露。

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  • 来源
    《Environmental Science & Technology》 |2020年第11期|6723-6729|共7页
  • 作者单位

    Chemical Properties Research Group (CEMC) Department of Chemistry Trent University Peterborough Ontario K9L 0G2 Canada;

    Chemical Properties Research Group (CEMC) Department of Chemistry Trent University Peterborough Ontario K9L 0G2 Canada;

    Chemical Properties Research Group (CEMC) Department of Chemistry Trent University Peterborough Ontario K9L 0G2 Canada;

    Chemical Properties Research Group (CEMC) Department of Chemistry Trent University Peterborough Ontario K9L 0G2 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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