| Literature DB >> 34091337 |
Maocai Shen1, Zhuotong Zeng2, Biao Song1, Huan Yi1, Tong Hu1, Yaxin Zhang1, Guangming Zeng3, Rong Xiao4.
Abstract
There have been many studies on the microplastic pollution, influence and control mechanisms of different plastic products. The potential harm of microplastic pollution to the environment has been confirmed. With the outbreak and spread of the COVID-19 in the world, disposable surgical masks as effective and cheap protective medical equipment have been widely used by the public. Disposable masks have been a new social norm, but they must have a sense of environmental responsibilities. The random disposal of masks may result in new and greater microplastic pollution, because masks made of polymer materials would release microplastics after entering the environment. Current results showed that masks are a potential and easily overlooked source of environmental microplastics. The release amount of microplastics in the static water by one mask was 360 items, and with the increase of vibration rate, the release amount also increased. The addition of organic solvents (detergent and alcohol) in water would increase the release of microplastics from masks. When the mask became fragments, the ability to release microplastic fibers into the environment was greatly improved due to the increase of exposure area. After two months of natural weathering, the masks become very fragile pieces and microplastics. A fully weathered mask could release several billions of microplastic fibers into the aquatic environment once these fragile fragments enter the water without reservation. The rapid growth of mask production and consumption and improper disposable is worrying. It is urgent to understand the potential environmental risks and significance of masks.Entities:
Keywords: COVID-19; Disposable surgical masks; Microplastics; Natural aging; Plastic pollution; Potential source
Year: 2021 PMID: 34091337 DOI: 10.1016/j.scitotenv.2021.148130
Source DB: PubMed Journal: Sci Total Environ ISSN: 0048-9697 Impact factor: 7.963