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Indoor air sampling for fine particulate matter and black carbon in industrial communities in Pittsburgh

机译:匹兹堡工业社区室内空气细颗粒物和黑碳采样

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摘要

Impacts of industrial emissions on outdoor air pollution in nearby communities are well-documented. Fewer studies, however, have explored impacts on indoor air quality in these communities. Because persons in northern climates spend a majority of their time indoors, understanding indoor exposures, and the role of outdoor air pollution in shaping such exposures, is a priority issue. Braddock and Clairton, Pennsylvania, industrial communities near Pittsburgh, are home to an active steel mill and coke works, respectively, and the population experiences elevated rates of childhood asthma. Twenty-one homes were selected for 1-week indoor sampling for fine particulate matter (PM_(2.5)) and black carbon (BC) during summer 2011 and winter 2012. Multivariate linear regression models were used to examine contributions from both outdoor concentrations and indoor sources. In the models, an outdoor infiltration component explained 10 to 39% of variability in indoor air pollution for PM_(2.5), and 33 to 42% for BC. For both PM_(2.5) models and the summer BC model, smoking was a stronger predictor than outdoor pollution, as greater pollutant concentration increases were identified. For winter BC, the model was explained by outdoor pollution and an open windows modifier. In both seasons, indoor concentrations for both PM_(2.5) and BC were consistently higher than residence-specific outdoor concentration estimates. Mean indoor PM_(2.5) was higher, on average, during summer (25.8 ± 22.7 μg/m~3) than winter (18.9 ± 132 Mg/m~3). Contrary to the study's hypothesis, outdoor concentrations accounted for only little to moderate variability (10 to 42%) in indoor concentrations; a much greater proportion of PM_(2.5) was explained by cigarette smoking. Outdoor infiltration was a stronger predictor for BC compared to PM_(2.5), especially in winter. Our results suggest that, even in industrial communities of high outdoor pollution concentrations, indoor activities - particularly cigarette smoking - may play a larger role in shaping indoor exposures.
机译:有据可查的是,工业排放对附近社区室外空气污染的影响。然而,很少有研究探索这些社区对室内空气质量的影响。由于北部气候的人们将大部分时间都花在室内,因此,了解室内暴露以及室外空气污染在形成此类暴露中的作用是当务之急。匹兹堡附近的工业区宾夕法尼亚州的布拉多克和克莱顿,都是活跃的钢铁厂和炼焦厂的所在地,人口中儿童期哮喘的发病率上升。在2011年夏季和2012年冬季,选择了21个房屋进行为期1周的室内采样,以采集细颗粒物(PM_(2.5))和黑碳(BC)。使用多元线性回归模型研究室外浓度和室内浓度的影响资料来源。在模型中,室外渗透成分对PM_(2.5)解释了室内空气污染变化的10%到39%,对于BC解释了33%到42%。对于PM_(2.5)模型和夏季BC模型,由于确定了更大的污染物浓度,吸烟是比室外污染更强的预测指标。对于BC冬季,该模型通过室外污染和开窗修饰符来解释。在两个季节中,PM_(2.5)和BC的室内浓度始终高于特定居所的室外浓度估计值。在夏季(25.8±22.7μg/ m〜3),室内平均PM_(2.5)平均高于冬季(18.9±132 Mg / m〜3)。与该研究的假设相反,室外浓度仅占室内浓度的很少到中等变化(10%到42%)。吸烟解释了PM_(2.5)的更大比例。与PM_(2.5)相比,室外渗透是BC的更强预测指标,尤其是在冬季。我们的结果表明,即使在室外污染浓度很高的工业社区中,室内活动(尤其是吸烟)也可能在影响室内暴露方面起更大的作用。

著录项

  • 来源
    《The Science of the Total Environment》 |2015年第1期|108-115|共8页
  • 作者单位

    University of Pittsburgh Graduate School of Public Health, Department of Environmental and Occupational Health, Bridgeside Point, 100 Technology Drive, Room 529, Pittsburgh, PA 15219-3130, USA;

    University of Pittsburgh Graduate School of Public Health, Department of Environmental and Occupational Health, Pittsburgh, PA, USA;

    University of Pittsburgh Graduate School of Public Health, Department of Environmental and Occupational Health, Pittsburgh, PA, USA;

    University of Pittsburgh Graduate School of Public Health, Department of Environmental and Occupational Health, Pittsburgh, PA, USA;

    University of Pittsburgh Medical Center, Department of Pediatric Pulmonology and Pediatric Environmental Medicine Center, Pittsburgh, PA, USA;

    Environmental and Occupational Health Sciences Institute (EOHSI), Robert Wood Johnson Medical School (RWJMS), Piscataway, NJ, USA;

    University of Pittsburgh Graduate School of Public Health, Department of Environmental and Occupational Health, Pittsburgh, PA, USA;

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

    Black carbon; Fine particulate matter; Indoor air pollution; Industrial emissions; Multivariate modeling;

    机译:黑炭;细颗粒物;室内空气污染;工业排放;多元建模;

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