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首页> 外文期刊>Journal of the Air & Waste Management Association >Characterization of indoor air quality and resident health in an Arizona senior housing apartment building
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Characterization of indoor air quality and resident health in an Arizona senior housing apartment building

机译:亚利桑那州高级住房公寓楼中室内空气质量和居民健康的特征

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A survey of key indoor air quality (IAQ) parameters and resident health was carried out in 72 apartments within a single low-income senior housing building in Phoenix, Arizona. Air sampling was carried out simultaneously with a questionnaire on personal habits and general health of residents. Mean PM_(10) concentrations are 66±16, 58±13, and 24±3 μg/m~3 and mean PM_(2.5) concentrations are 62±16, 53±13, and 20±2 μg/m~3 for the living room, kitchen, and outdoor balcony, respectively. Median PM_(10) concentrations are 17, 18 and 17 μg/m~3 and median PM_(2.5) concentrations are 13, 14, and 13 μg/m~3, respectively. The initial results indicate that increased indoor particle concentrations coincide with residents who report smoking cigarettes. Indoor formaldehyde concentrations revealed median levels of 36.9, 38.8, and 4.3 ppb in the living room, kitchen, and balcony, respectively. Results show that 36% of living room samples and 44% of kitchen samples exceeded the Health Canada REL for chronic exposure to formaldehyde (40 ppb). Associations between occupants' behavior, self-reported health conditions, and IAQ are evaluated.
机译:在亚利桑那州凤凰城的一栋低收入高级住房建筑内的72套公寓中,对关键室内空气质量(IAQ)参数和居民健康状况进行了调查。空气采样与居民个人习惯和总体健康状况调查表同时进行。 PM_(10)的平均浓度为66±16、58±13和24±3μg/ m〜3,PM_(2.5)的平均浓度为62±16、53±13和20±2μg/ m〜3分别是客厅,厨房和室外阳台。 PM_(10)的中位数浓度分别为17、18和17μg/ m〜3,PM_(2.5)的中位数浓度分别为13、14和13μg/ m〜3。初步结果表明,室内颗粒物浓度升高与报告吸烟的居民相​​吻合。室内甲醛浓度显示,起居室,厨房和阳台的中值分别为36.9、38.8和4.3 ppb。结果显示,由于长期暴露于甲醛(40 ppb)中,有36%的客厅样品和44%的厨房样品超出了加拿大卫生部的REL。评估了乘员的行为,自我报告的健康状况和室内空气质量之间的关联。

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  • 来源
    《Journal of the Air & Waste Management Association 》 |2014年第11期| 1251-1259| 共9页
  • 作者单位

    Department of Chemistry and Biochemistry, Arizona State University, Tempe, AZ, USA;

    Indoor Environment Group, Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA;

    Indoor Environment Group, Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA;

    Rinker School of Construction Management, University of Florida, Gainesville, FL, USA;

    School of Sustainable Engineering and Built Environment, Arizona State University, P.O. Box 875306, Tempe, AZ 85287, USA;

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