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A review of models for near-field exposure pathways of chemicals in consumer products

机译:消费品中化学品近场暴露途径模型的综述

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摘要

Exposure to chemicals in consumer products has been gaining increasing attention, with multiple studies showing that near-field exposures from products is high compared to far-field exposures. Regarding the numerous chemical-product combinations, there is a need for an overarching review of models able to quantify the multiple transfers of chemicals from products used near-field to humans. The present review therefore aims at an in-depth overview of modeling approaches for near-field chemical release and human exposure pathways associated with consumer products. It focuses on lower-tier, mechanistic models suitable for life cycle assessments (LCA), chemical alternative assessment (CAA) and high-throughput screening risk assessment (HTS). Chemicals in a product enter the near-field via a defined "compartment of entry", are transformed or transferred to adjacent compartments, and eventually end in a "human receptor compartment". We first focus on models of physical mass transfers from the product to 'near-field' compartments. For transfers of chemicals from article interior, adequate modeling of in-article diffusion and of partitioning between article surface and air/skin/food is key. Modeling volatilization and subsequent transfer to the outdoor is crucial for transfers of chemicals used in the inner space of appliances, on object surfaces or directly emitted to indoor air. For transfers from skin surface, models need to reflect the competition between dermal permeation, volatilization and fraction washed-off. We then focus on transfers from the 'near-field' to 'human' compartments, defined as respiratory tract, gastrointestinal tract and epidermis, for which good estimates of air concentrations, non-dietary ingestion parameters and skin permeation are essential, respectively. We critically characterize for each exposure pathway the ability of models to estimate near-field transfers and to best inform LCA, CM and HTS, summarizing the main characteristics of the potentially best-suited models. This review identifies large knowledge gaps for several near-field pathways and suggests research needs and future directions.
机译:消费品中化学物质的接触已引起越来越多的关注,多项研究表明,与远场接触相比,产品的近场接触较高。关于众多的化学产品组合,需要对模型进行总体审查,以量化从近场使用的产品到人类的多种化学物质的转移。因此,本综述旨在深入概述与消费品相关的近场化学释放和人体暴露途径的建模方法。它着重于适用于生命周期评估(LCA),化学替代评估(CAA)和高通量筛选风险评估(HTS)的较低层的机械模型。产品中的化学物质通过定义的“进入隔室”进入近场,被转化或转移到相邻的隔室中,最后终止于“人类受体隔室”。我们首先关注从产品到“近场”隔室的物理质量转移模型。对于从物品内部转移化学品,物品内部扩散以及物品表面与空气/皮肤/食物之间分配的充分建模是关键。模拟挥发量并随后将其转移到室外对于在设备内部空间,物体表面或直接排放到室内空气中的化学物质转移至关重要。对于从皮肤表面转移,模型需要反映真皮渗透,挥发和洗脱部分之间的竞争。然后,我们将重点放在从“近场”到“人”的车厢的转移,这些车厢被定义为呼吸道,胃肠道和表皮,分别对它们的空气浓度,非饮食摄入参数和皮肤渗透率进行良好的估算是必不可少的。我们对每种暴露途径进行关键性的表征,即模型评估近场传输并最好地告知LCA,CM和HTS的能力,总结了可能最适合的模型的主要特征。这篇综述指出了几种近场途径的巨大知识空白,并提出了研究需求和未来方向。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第1期|1182-1208|共27页
  • 作者单位

    Environmental Health Sciences & Risk Science Center, School of Public Health, University of Michigan. Am Arbor, MI 48109-2029. United States;

    Quantitative Sustainability Assessment Division, Department of Management Engineering, Technical University of Denmark, 2808 Kgs. Lyngby, Denmark;

    Quantitative Sustainability Assessment Division, Department of Management Engineering, Technical University of Denmark, 2808 Kgs. Lyngby, Denmark;

    Oak Ridge Institute for Science and Education Research Participant, US Environmental Protection Agency, National Risk Management Research Laboratory, Cincinnati, OH 45268, United States;

    Environmental Health Sciences & Risk Science Center, School of Public Health, University of Michigan. Am Arbor, MI 48109-2029. United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Human exposure models; High-throughput risk screening; Life cycle impact assessment; Mass transfer fractions; Consumer products; Indoor environment;

    机译:人体暴露模型;高通量风险筛选;生命周期影响评估;传质分数;消费产品;室内环境;

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