Department of The Built Environment, Aalborg University, 9220, Aalborg, Denmark.
Department of The Built Environment, Aalborg University, 9220, Aalborg, Denmark.
Chemosphere. 2024 Aug;361:142553. doi: 10.1016/j.chemosphere.2024.142553. Epub 2024 Jun 6.
The widespread presence of microplastics (MPs) in the air and their potential impact on human health underscore the pressing need to develop robust methods for quantifying their presence, particularly in the breathable fraction (<5 μm). In this study, Raman micro-spectroscopy (μRaman) was employed to assess the concentration of indoor airborne MPs >1 μm in four indoor environments (a meeting room, a workshop, and two apartments) under different levels of human activity. The indoor airborne MP concentration spanned between 58 and 684 MPs per cubic meter (MP m) (median 212 MP m, MPs/non-plastic ratio 0-1.6%), depending not only on the type and level of human activity, but also on the surface area and air circulation of the investigated locations. Additionally, we assessed in the same environments the filtration performance of a type IIR surgical facemask, which could overall retain 85.4 ± 3.9% of the MPs. We furthermore estimated a human MP intake from indoor air of 3415 ± 2881 MPs day (mostly poly-amide MPs), which could be decreased to 283 ± 317 MPs day using the surgical facemask. However, for the breathable fraction of MPs (1-5 μm), the efficiency of the surgical mask was reduced to 57.6%.
空气中广泛存在微塑料(MPs),它们可能对人类健康造成影响,这凸显了开发强大方法来定量检测其存在的迫切需求,尤其是在可吸入部分(<5μm)。在这项研究中,拉曼微光谱(μRaman)被用于评估四个室内环境(会议室、车间和两个公寓)在不同人类活动水平下空气中>1μm 的室内可吸入 MPs 的浓度。室内可吸入 MPs 的浓度范围为 58 至 684 MPs m(中位数为 212 MPs m,MPs/非塑料比为 0-1.6%),这不仅取决于人类活动的类型和水平,还取决于所研究地点的表面积和空气流通情况。此外,我们还在相同的环境中评估了 IIR 型手术口罩的过滤性能,该口罩总体上可以保留 85.4±3.9%的 MPs。我们还估计了人类从室内空气中摄入的 MPs 为 3415±2881 MPs day(主要是聚酰胺 MPs),使用手术口罩可以将其减少至 283±317 MPs day。然而,对于 MPs 的可吸入部分(1-5μm),手术口罩的效率降低至 57.6%。