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超声加湿器排放的颗粒物——化学成分及其对室内空气的影响。

Particulate matter emitted from ultrasonic humidifiers-Chemical composition and implication to indoor air.

机构信息

Department of Chemistry, University of Alberta, Edmonton, AB, Canada.

出版信息

Indoor Air. 2021 May;31(3):769-782. doi: 10.1111/ina.12765. Epub 2020 Nov 26.

Abstract

Household humidification is widely practiced to combat dry indoor air. While the benefits of household humidification are widely perceived, its implications to the indoor air have not been critically appraised. In particular, ultrasonic humidifiers are known to generate fine particulate matter (PM). In this study, we first conducted laboratory experiments to investigate the size, quantity, and chemical composition of PM generated by an ultrasonic humidifier. The mass of PM generated showed a correlation with the total alkalinity of charge water, suggesting that CaCO is likely making a major contribution to PM. Ion chromatography analysis revealed a large amount of SO in PM, representing a previously unrecognized indoor source. Preliminary results of organic compounds being present in humidifier PM are also presented. A whole-house experiment was further conducted at an actual residential house, with five low-cost sensors (AirBeam) monitoring PM in real time. Operation of a single ultrasonic humidifier resulted in PM concentrations up to hundreds of μg m , and its influence extended across the entire household. The transport and loss of PM depended on the rate of air circulation and ventilation. This study emphasizes the need to further investigate the impact of humidifier operation, both on human health and on the indoor atmospheric chemistry, for example, partitioning of acidic and basic compounds.

摘要

家庭加湿被广泛应用于对抗干燥的室内空气。虽然家庭加湿的好处被广泛认知,但它对室内空气的影响尚未得到批判性评估。特别是,超声波加湿器被认为会产生细颗粒物(PM)。在这项研究中,我们首先进行了实验室实验,以研究超声波加湿器产生的 PM 的大小、数量和化学成分。生成的 PM 质量与电荷水的总碱度呈相关性,表明 CaCO 可能是 PM 的主要贡献者。离子色谱分析显示 PM 中含有大量的 SO ,这代表了一个以前未被认识到的室内来源。我们还初步研究了存在于加湿器 PM 中的有机化合物。进一步在一个实际的住宅房屋中进行了全房屋实验,使用五个低成本传感器(AirBeam)实时监测 PM。单个超声波加湿器的运行导致 PM 浓度高达数百 μg/m³,其影响延伸到整个房屋。PM 的迁移和损失取决于空气循环和通风的速度。这项研究强调需要进一步研究加湿器运行对人类健康和室内大气化学的影响,例如,酸性和碱性化合物的分配。

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