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Characteristics and determinants of personal exposure to PM_(2.5) mass and components in adult subjects in the megacity of Guangzhou, China

机译:个人接触PM_(2.5)质量和成年人群体的特征和决定因素在广州市广州市的成人受试者

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摘要

Understanding the heterogeneity between ambient concentration and personal exposure is crucial in studies regarding the health risks of air pollution exposure. We performed a panel study with 4-19 (average = 10) repeated personal monitoring in 16 adult subjects (ages 18-30) for three consecutive weeks during the winter and summer of 2011-2012 in the Chinese megacity of Guangzhou. Also, we conducted simultaneous ambient measurements at eight districts (including five urban sites, two suburban locations, and one rural site) of Guangzhou. Significant seasonal variations were shown in personal PM2.5 exposure for most of the analyzed components (p 0.05), with higher levels in winter than in summer. Average personal exposures exhibited a pattern of central urban suburban rural areas for PM2.5 mass and most of the constituents (e.g., carbonaceous aerosols, ions). We applied mixed-effects models to estimate within- and between-subject variance components and determinants of personal PM2.5 exposure after adjusting for potential confounders. The within-subject variance component dominated the total variability (63.7-95.6%) for most of the investigated PM2.5 components. Ambient PM2.5 mass and its components were the dominant predictors and contributors of the corresponding personal exposures (0.11 R-c(2) 0.97; p 0.05). The results indicate that season and district type affect personal PM2.5 exposure and its components, contributing to 4.9-51.6% and 8.0-77.8% of the variability. Time indoors and outdoors were also factors affecting personal exposure. The study findings revealed ambient concentrations at a fixed monitoring station underestimated residents' true exposure levels. In conclusion, the current study emphasizes the need for incorporating spatio-temporal activity patterns complementing evenlydistributed air quality monitoring networks to increase the estimation power in epidemiological analysis linking true personal exposure to health effects.
机译:了解环境浓度与个人暴露之间的异质性在于空气污染暴露的健康风险的研究至关重要。我们在2011 - 2012年冬季和夏季在2011 - 2012年夏季在广州的冬季和夏季连续三周进行了4-19(平均= 10)的小组研究。此外,我们在广州八个地区(包括五个城市网站,两个城市地点,一个农村地区)进行了同时的环境测量。对于大多数分析的组分(P <0.05),冬季含量高于夏季,在个人PM2.5暴露中显示出显着的季节性变化。平均个人风险显示中央城市>郊区>农村地区的PM2.5质量和大部分成分(例如,碳质气溶胶,离子)。我们在调整潜在混淆后,我们应用了混合效果模型来估计,对象差异分量和各个PM2.5暴露的决定因素。对象内方差分量为大多数研究的PM2.5组分主导了总变异性(63.7-95.6%)。环境PM2.5质量及其组分是相应的个人曝光的主要预测因子和贡献者(0.11

著录项

  • 来源
    《Atmospheric environment》 |2020年第3期|117295.1-117295.14|共14页
  • 作者单位

    Chinese Univ Hong Kong Inst Environm Energy & Sustainabil Hong Kong Peoples R China|Chinese Univ Hong Kong Shenzhen Res Inst Shenzhen Peoples R China;

    Bielefeld Univ Sch Publ Hlth Bielefeld Germany;

    Univ Montana Sch Publ & Community Hlth Sci Missoula MT 59812 USA;

    Univ Hong Kong Dept Urban Planning & Design Hong Kong Peoples R China;

    Sun Yat Sen Univ Sch Geog & Planning Guangzhou Peoples R China|Sun Yat Sen Univ Guangdong Key Lab Urbanizat & Geosimulat Guangzhou Peoples R China;

    Desert Res Inst Div Atmospher Sci Reno NV USA|Calif Air Resources Board El Monte CA USA;

    Bielefeld Univ Sch Publ Hlth Bielefeld Germany;

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

    Personal exposure; PM2.5 constituents; Within-subject variability; Mixed-effects model;

    机译:个人曝光;PM2.5成分;在主题内变异性;混合效果模型;
  • 入库时间 2022-08-18 22:35:16

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