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能源改造与居住者活动对瑞典出租公寓空气中颗粒物浓度的影响

Effect of energy renovation and occupants' activities on airborne particle concentrations in Swedish rental apartments.

作者信息

Omelekhina Yuliya, Nordquist Birgitta, Alce Günter, Caltenco Hector, Wallenten Petter, Borell Jonas, Wierzbicka Aneta

机构信息

Ergonomics and Aerosol Technology, Lund University, Sweden.

Dept. of Building and Environmental Technology, Lund University, Sweden.

出版信息

Sci Total Environ. 2022 Feb 1;806(Pt 1):149995. doi: 10.1016/j.scitotenv.2021.149995. Epub 2021 Sep 14.

Abstract

Exposure to airborne particles causes detrimental health effects, hence their assessment in indoor environments, where people spend most of the time, is important. The influence of energy renovation and occupants' activities on airborne particle concentrations was assessed in seven occupied Swedish residences. Ultrafine particle (UFP, <100 nm) number concentrations, PM2.5 (<2.5 μm) and black carbon (BC, <900 nm) mass concentrations were simultaneously measured inside and outside before, after renovation, and during follow-up. The average indoor UFP number concentrations increased from 6200 (±4070) cm before renovation to 12,700 (±6040) cm during the follow up, as the number of indoor activities doubled. Indoor UFP number concentrations depended mainly on frequency and type of occupants' activities in studied residences (e.g., cooking, candle burning). The average indoor PM2.5 concentration decreased from 8.6 (±5.8) μg m before renovation to 2.5 (±1.3) μg m during follow up, as the activities that generated PM2.5 decreased, and infiltration of outdoor particles could have been decreased due to renovation measures. However, the indication of infiltration decrease during the follow up, assessed on the basis of indoor to outdoor ratios during non-activity times (with no influence of occupants' activities), was not observed after the renovation and should be treated with caution. In this study indoor PM2.5 and BC were influenced by activities and outdoor concentrations. Reduction of exposure to indoor UFP, might be obtained by optimization of kitchen exhaust flows. An improved design of supply air inlets in mechanical exhaust ventilation systems may reduce PM2.5 infiltration. Occupants' logbook records, needed for identification of sources contributing to particle exposure, proved useful but not always accurate compared to technical measurements of activities and UFP concentrations. Development of simple and reliable activity detection systems is needed to complement logbooks and allow accurate assessment of source contribution to particle exposure in homes and associated health effects.

摘要

接触空气中的颗粒物会对健康产生有害影响,因此在人们大部分时间所处的室内环境中对其进行评估非常重要。在瑞典七所有人居住的住宅中,评估了能源改造和居住者活动对空气中颗粒物浓度的影响。在改造前、改造后及后续跟踪期间,同时对室内外的超细颗粒物(UFP,<100纳米)数量浓度、PM2.5(<2.5微米)和黑碳(BC,<900纳米)质量浓度进行了测量。随着室内活动量翻倍,室内UFP数量浓度的平均值从改造前的6200(±4070)个/立方厘米增加到后续跟踪期间的12700(±6040)个/立方厘米。在所研究的住宅中,室内UFP数量浓度主要取决于居住者活动的频率和类型(如烹饪、燃烧蜡烛)。随着产生PM2.5的活动减少,且由于改造措施可能减少了室外颗粒物的渗入,室内PM2.5浓度的平均值从改造前的8.6(±5.8)微克/立方米降至后续跟踪期间的2.5(±1.3)微克/立方米。然而,根据非活动时间(不受居住者活动影响)的室内外比例评估,在改造后未观察到后续跟踪期间渗入减少的迹象,对此应谨慎对待。在本研究中,室内PM2.5和BC受活动及室外浓度的影响。通过优化厨房排气流量,可能会减少室内UFP的暴露。改进机械排气通风系统中送风入口的设计可能会减少PM2.5的渗入。事实证明,用于识别导致颗粒物暴露的来源的居住者日志记录很有用,但与活动和UFP浓度的技术测量相比,并不总是准确的。需要开发简单可靠的活动检测系统,以补充日志记录,并准确评估家庭中颗粒物暴露的来源贡献及相关健康影响。

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