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Estimation of the Emission Characteristics of SVOCs from Household Articles Using Group Contribution Methods

机译:使用组贡献法估算家庭用品中SVOC的排放特性

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摘要

The risk to humans from chemicals in consumer products is a function of both hazard and exposure. There is an ongoing effort to quantify chemical exposure due to household articles such as furniture and building materials. Polymers and plastic materials make up a substantial portion of these articles, which may contain chemical additives such as plasticizers. When these additives are not bound to the polymer matrix, they are free to diffuse throughout it and leach or emit from the surface We have implemented a methodology to predict plasticizer emission from polyvinyl chloride (PVC) products, based on group contribution methods that consider a free volume effect to estimate activity coefficients for chemicals in polymer—solvent solutions. Using the estimated activity coefficients, we calculate steady-state gas phase concentrations for plasticizers in equilibrium with the polymer surface (y_0). The method uses only the structure of the chemical and polymer, the weight fraction, and physical-chemical properties, allowing rapid estimation of y_0 at different weight fractions in PVC. Using the predicted y_0 values and weight fraction data gleaned from public databases, we estimate plasticizer exposures associated with 72 PVC-containing articles using a high-throughput model. We also investigate potential exposures associated with plasticizer substitutions in these products.
机译:消费品中化学物质对人类的危害是危害和暴露的函数。目前正在努力量化由于家用物品(例如家具和建筑材料)引起的化学暴露。聚合物和塑料材料构成了这些物品的主要部分,其中可能包含化学添加剂,例如增塑剂。当这些添加剂未与聚合物基体结合时,它们可以自由扩散到整个聚合物基体中并从表面浸出或散发出光。我们已经采用了一种方法来预测聚氯乙烯(PVC)产品中的增塑剂排放,该方法基于以下考虑自由体积效应来估计聚合物-溶剂溶液中化学物质的活度系数。使用估计的活度系数,我们计算出与聚合物表面(y_0)处于平衡状态的增塑剂的稳态气相浓度。该方法仅使用化学和聚合物的结构,重量分数和物理化学性质,从而可以快速估算PVC中不同重量分数的y_0。使用从公共数据库中收集到的预测y_0值和重量分数数据,我们使用高通量模型估算了与72个含PVC制品相关的增塑剂暴露量。我们还将调查与这些产品中增塑剂替代品相关的潜在暴露。

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  • 来源
    《Environmental Science & Technology》 |2020年第1期|110-119|共10页
  • 作者

  • 作者单位

    Oak Ridge Institute for Science and Education (ORISE) Oak Ridge Tennessee 37830 United States U.S. Environmental Protection Agency Office of Research and Development National Exposure Research Laboratory 109 T.W. Alexander Drive Research Triangle Park North Carolina 27709 United States;

    U.S. Environmental Protection Agency Office of Research and Development National Exposure Research Laboratory 109 T.W. Alexander Drive Research Triangle Park North Carolina 27709 United States;

  • 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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