Lievens Siebe, Vervoort Evelynn, Poma Giulia, Covaci Adrian, Van Der Borght Mik
Research Group for Insect Production and Processing, Faculty of Engineering Technology, Department of Microbial and Molecular Systems (M2S), KU Leuven Campus Geel, Kleinhoefstraat 4, 2440 Geel, Belgium.
Toxicological Centre, Faculty of Pharmaceutical, Biomedical and Veterinary Sciences, University of Antwerp, Campus Drie Eiken, Universiteitsplein 1, 2610 Antwerp, Belgium.
Methods Protoc. 2023 Jan 31;6(1):15. doi: 10.3390/mps6010015.
Concerns about the presence of microplastics in the environment has increased in recent years, prompting more attention from scientists. Thorough exposure studies using artificially produced microplastics containing additives are required to assess their potentially hazardous effects. Therefore, an efficient microplastic production and fractionation protocol was established using a cryogenic grinding and wet-sieving approach. The developed cryogenic grinding method was able to produce (20-40 g/h) polyvinyl chloride (PVC) microplastics having a volume-weighted mean particle size of 391 µm and a span of 2.12. Performing a second grinding cycle on the same particles resulted in microplastics which were smaller (volume-weighted mean size = 219 μm) and had a narrower particle size distribution (span = 1.59). In addition, the microplastics were also fractionated into different particle size ranges using a vibrating wet-sieving tower. The latter technique allowed separating 10 g of PVC microplastics into seven different fractions using six sieves (Ø 200 mm) for 30 min while shaking. By using the developed method, PVC microplastics could easily be made and fractionated into desired particle-size ranges. The proposed protocol could also be adjusted to produce and fractionate microplastics of other plastics.
近年来,人们对环境中微塑料的存在愈发关注,这促使科学家们给予更多关注。需要使用含添加剂的人工生产微塑料进行全面的暴露研究,以评估其潜在的有害影响。因此,采用低温研磨和湿筛法建立了一种高效的微塑料生产和分级方案。所开发的低温研磨方法能够生产(20 - 40克/小时)体积加权平均粒径为391微米、跨度为2.12的聚氯乙烯(PVC)微塑料。对相同颗粒进行第二次研磨循环后,得到的微塑料更小(体积加权平均尺寸 = 219微米),且粒径分布更窄(跨度 = 1.59)。此外,还使用振动湿筛塔将微塑料分级到不同的粒径范围。后一种技术能够在摇晃的同时,使用六个筛子(直径200毫米)在30分钟内将10克PVC微塑料分离成七个不同的级分。通过使用所开发的方法,可以轻松制备PVC微塑料并将其分级到所需的粒径范围。所提出的方案也可以进行调整,以生产和分级其他塑料的微塑料。