Air Quality Studies, Department of Civil and Environmental Engineering, Hong Kong Polytechnic University, Hong Kong, Hong Kong.
Indoor Air. 2022 Mar;32(3):e13017. doi: 10.1111/ina.13017.
A growing number of studies warn of the adverse health effects of indoor particulate matters (PM). However, little is known about the molecular compositions and emission characteristics of PM-bound organics (OM) indoors, a critical group of species with highest concentration and complexity in indoor PM. In a Hong Kong residence where prescribed activities were performed with normal frequency and intensity, we found that the activities significantly elevated not only the total concentration but also the fraction of OM in indoor PM. However, the concentration of the total PM-bound OM outdoors (10.3 ± 0.7 μg/m ) surpassed that for the indoor counterpart during the undisturbed period (8.2 ± 0.1 μg/m ), that is, period when there was no activity with high emission of PM but the residual effects of previous activities might remain. Emissions of indoor activities involving combustion or high-temperature processes significantly elevated the indoor-to-outdoor (I/O) ratios for a majority of organic species. In addition, gas-to-particle partitioning, secondary formation, carrying-over (residues of pollutants in the air), and re-emission also modulated the I/O ratios of some compounds. Chemically comprehensive emission profiles of speciated organics were obtained for 5 indoor activities in the residence. While the indoor contribution to PM-bound OM was estimated to be not higher than 13.1% during the undisturbed period, carrying-over and/or re-emission seemed to exist for certain compounds emitted from cigarette smoking and incense burning. This study enhances knowledge on emissions and airborne fate of speciated organics in indoor PM.
越来越多的研究警告称,室内颗粒物(PM)对健康有不良影响。然而,人们对室内 PM 中结合有机物质(OM)的分子组成和排放特征知之甚少,而这些结合有机物质是室内 PM 中浓度和复杂性最高的关键物质组之一。在香港的一个住宅中,正常频率和强度的规定活动进行时,我们发现这些活动不仅显著提高了室内 PM 的总浓度,还提高了 OM 的比例。然而,在不受干扰的时期(即没有高排放 PM 的活动,但之前活动的残留效应可能仍然存在的时期),室外的总 PM 结合 OM 浓度(10.3±0.7μg/m )超过了室内的浓度(8.2±0.1μg/m )。涉及燃烧或高温过程的室内活动排放显著提高了大多数有机物质的室内外(I/O)比值。此外,气粒分配、二次形成、携带(空气中污染物的残留)和再排放也调节了一些化合物的 I/O 比值。在住宅中进行了 5 种室内活动,获得了有机物质的化学综合排放特征。虽然在不受干扰的时期,室内对 PM 结合 OM 的贡献估计不高于 13.1%,但从吸烟和焚香中排放的某些化合物可能存在携带和/或再排放。本研究提高了对室内 PM 中特定有机物质排放和空气传播命运的认识。