Delgado-Gallardo J, Sullivan G L, Tokaryk M, Russell J E, Davies G R, Johns K V, Hunter A P, Watson T M, Sarp S
SPEC, College of Engineering, Swansea University, Swansea SA2 8PP, U.K.
SPECIFIC, College of Engineering, Swansea University, Swansea SA2 8PP, U.K.
ACS ES T Water. 2022 Apr 8;2(4):527-538. doi: 10.1021/acsestwater.1c00319. Epub 2022 Mar 23.
The COVID-19 pandemic has increased the worldwide production and use of disposable plastic face masks (DPFMs). The release of micro- and nanopollutants into the environment is one of the impacts derived from regulated and unregulated disposal of DPFMs. This study focuses on the emission of pollutants from medical-grade DPFMs when submerged in deionized water, simulating regulated and unregulated disposal of these masks. Three brands of FFP2 and three brands of Type IIR medical masks, produced in various countries (UK, EU, and non-EU), were investigated. Field emission gun scanning electron microscopy (FEG-SEM) was used to obtain high-resolution images of the micro- and nanoparticles, and 0.02 μm pore size inorganic membranes were used to retain and subsequently analyze smaller particle size nanoparticles (>20 nm) released from the DPFMs. Particles and fibers in the micro- and nanoscale were found in all six DPFM brands. SEM with energy-dispersive spectroscopy analysis revealed the presence of particles containing different heavy metals like lead, mercury, and arsenic. Inductively coupled plasma mass spectrometry analysis confirmed the leaching of trace heavy metals to water (antimony up to 2.41 μg/L and copper up to 4.68 μg/L). Liquid chromatography-mass spectrometry analysis identified polar organic species related to plastic additives and contaminants such as polyamide-66 monomers and oligomers.
新冠疫情增加了一次性塑料口罩(DPFM)在全球的产量和使用量。微污染物和纳米污染物释放到环境中是DPFM规范和不规范处置所产生的影响之一。本研究聚焦于医用级DPFM浸泡在去离子水中时的污染物排放情况,以此模拟这些口罩的规范和不规范处置。研究了不同国家(英国、欧盟和非欧盟国家)生产的三个品牌的FFP2口罩和三个品牌的IIR型医用口罩。使用场发射枪扫描电子显微镜(FEG-SEM)获取微颗粒和纳米颗粒的高分辨率图像,并使用孔径为0.02μm的无机膜截留并随后分析DPFM释放出的更小粒径的纳米颗粒(>20nm)。在所有六个DPFM品牌中均发现了微米级和纳米级的颗粒和纤维。带有能量色散光谱分析的扫描电子显微镜显示存在含有铅、汞和砷等不同重金属的颗粒。电感耦合等离子体质谱分析证实了痕量重金属向水中的浸出(锑高达2.41μg/L,铜高达4.68μg/L)。液相色谱-质谱分析鉴定出了与塑料添加剂和污染物相关的极性有机物质,如聚酰胺-66单体和低聚物。