Abst'/> Airborne particle-bound brominated flame retardants: Levels, size distribution and indoor-outdoor exchange
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Airborne particle-bound brominated flame retardants: Levels, size distribution and indoor-outdoor exchange

机译:空气中与颗粒结合的溴化阻燃剂:含量,尺寸分布和室内外交换

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摘要

AbstractThe quality of indoor environments has a significant impact on public health. Usually, an indoor environment is treated as a static box, in which physicochemical reactions of indoor air contaminants are negligible. This results in conservative estimates for primary indoor air pollutant concentrations, while also ignoring secondary pollutants. Thus, understanding the relationship between indoor and outdoor particles and particle-bound pollutants is of great significance. For this reason, we collected simultaneous indoor and outdoor measurements of the size distribution of airborne brominated flame retardant (BFR) congeners. The time-dependent concentrations of indoor particles and particle-bound BFRs were then estimated with the mass balance model, accounting for the outdoor concentration, indoor source strength, infiltration, penetration, deposition and indoor resuspension. Based on qualitative observation, the size distributions of ΣPBDE and ΣHBCD were characterized by bimodal peaks. According to our results, particle-bound BDE209 andγ-HBCD underwent degradation. Regardless of the surface adsorption capability of particles and the physicochemical properties of the target compounds, the concentration of BFRs in particles of different size fractions seemed to be governed by the particle distribution. Based on our estimations, for airborne particles and particle-bound BFRs, a window-open ventilated room only takes a quarter of the time to reach an equilibrium between the concentration of pollutants inside and outside compared to a closed room. Unfortunately, indoor pollutants and outdoor pollutants always exist simultaneously, which poses a window-open-or-closed dilemma to achieve proper ventilation.Graphical abstractDisplay OmittedHighlightsParticle-bound BDE-209 and γ-HBCD underwent degradation.HFRs in different size fractions are ungoverned by the airborne particle distribution.Ventilation make an equilibrium between interior and exterior easily to reach.Indoor-outdoor exchange of particle-bound HFRs was not governed by particles.Selecting the appropriate ventilation strategy is in a dilemma.
机译: 摘要 室内环境的质量会对公共健康产生重大影响。通常,室内环境被视为静态箱,其中室内空气污染物的物理化学反应可忽略不计。这导致对室内主要空气污染物浓度的保守估计,同时也忽略了次级污染物。因此,了解室内外颗粒与颗粒结合污染物之间的关系具有重要意义。因此,我们收集了室内和室外同时测量空气中溴化阻燃剂(BFR)同系物尺寸分布的信息。然后使用质量平衡模型估算室内颗粒和颗粒结合的BFR随时间变化的浓度,其中考虑了室外浓度,室内源强度,渗透,渗透,沉积和室内悬浮。在定性观察的基础上,用双峰峰表征了ΣPBDE和ΣHBCD的粒径分布。根据我们的结果,颗粒结合的BDE209和γ -HBCD经历了降解。不管颗粒的表面吸附能力和目标化合物的物理化学性质如何,BFR在不同尺寸分数的颗粒中的浓度似乎都取决于颗粒的分布。根据我们的估计,对于空气中的微粒和与微粒结合的BFR,开窗通风的房间与封闭的房间相比,仅需四分之一的时间就能达到内部和外部污染物浓度之间的平衡。不幸的是,室内污染物和室外污染物总是同时存在,这为实现适当的通风带来了开窗或关窗的难题。 < ce:abstract xmlns:ce =“ http://www.elsevier.com/xml/common/dtd” xmlns =“ http://www.elsevier.com/xml/ja/dtd” class =“ graphical” id = “ abs0015” view =“ all”> 图形摘要 省略显示 突出显示 绑定粒子的BDE-209和γ-六溴环十二烷降解。 不同尺寸分数的HFR不受空中粒子分布的控制。 < ce:label>• 通风使内部和外部之间的平衡很容易达到。 粒子绑定HFR的室内外交换不受粒子控制。 选择合适的通风策略困境。 < / ce:抽象>

著录项

  • 来源
    《Environmental Pollution》 |2018年第2期|1104-1112|共9页
  • 作者单位

    Shenzhen Key Laboratory of Circular Economy, Shenzhen Graduate School, Peking University;

    Shenzhen Key Laboratory of Circular Economy, Shenzhen Graduate School, Peking University;

    Shenzhen Key Laboratory of Circular Economy, Shenzhen Graduate School, Peking University;

    Shenzhen Key Laboratory of Circular Economy, Shenzhen Graduate School, Peking University;

    Shenzhen Key Laboratory of Circular Economy, Shenzhen Graduate School, Peking University;

  • 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
  • 中图分类
  • 关键词

    Particle; Brominated flame retardants; Size distribution; Indoor-outdoor exchange;

    机译:颗粒;溴化阻燃剂;粒度分布;室内外交换;
  • 入库时间 2022-08-17 13:25:40

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