Critical review on airborne microplastics: An indoor air contaminant of emerging concern

微塑料 环境科学 人类健康 室内空气质量 稀缺 赫帕 环境规划 环境卫生 环境工程 计算机科学 环境化学 医学 滤波器(信号处理) 经济 微观经济学 化学 计算机视觉
作者
Hong Yee Kek,Huiyi Tan,Mohd Hafiz Dzarfan Othman,Bemgba Bevan Nyakuma,Wai Shin Ho,Desmond Daniel Chin Vui Sheng,Hooi-Siang Kang,Yoon Tung Chan,Nor Hasanah Abdul Shukor Lim,Pau Chung Leng,Nur Haliza Abdul Wahab,Keng Yinn Wong
出处
期刊:Environmental Research [Elsevier BV]
卷期号:245: 118055-118055 被引量:30
标识
DOI:10.1016/j.envres.2023.118055
摘要

Airborne Microplastics (MPs), an emerging environmental issue, have gained recent attention due to their newfound presence in indoor environments. Utilizing the Web of Science database for literature collection, the paper presents a comprehensive review of airborne MPs including emission sources, assessment methods, exposure risks, and mitigation strategies. This review delves into the diverse sources and mechanisms influencing indoor airborne MP pollution, underscoring the complex interplay between human activities, ventilation systems, and the characteristics of indoor environments. Major sources include the abrasion of synthetic textiles and the deterioration of flooring materials, with factors like carpeting, airflow, and ventilation significantly impacting MP levels. Human activities, such as increased movement in indoor spaces and the intensive use of plastic-based personal protective equipment (PPE) post-pandemic, notably elevate indoor MP concentrations. The potential health impacts of airborne MPs are increasingly concerning, with evidence suggesting their role in respiratory, immune, and nervous system diseases. Despite this, there is a scarcity of information on MPs in diverse indoor environments and the inhalation risks associated with the frequent use of PPE. This review also stresses the importance of developing effective strategies to reduce MP emissions, such as employing HEPA-filtered vacuums, minimizing the use of synthetic textiles, and enhancing indoor ventilation. Several future research directions were proposed, including detailed temporal analyses of indoor MP levels, interactions of MP with other atmospheric pollutants, the transport dynamics of inhalable MPs (≤10 μm), and comprehensive human exposure risk assessments.
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