Zha Fugeng, Dai Jiamin, Han Yinxuan, Liu Peng, Wang Mingjun, Liu Haiyong, Guo Xuetao
School of Earth and Environment, Anhui University of Science & Technology, Huainan, Anhui Province 232001, China.
School of Earth and Environment, Anhui University of Science & Technology, Huainan, Anhui Province 232001, China; College of Natural Resources and Environment, Northwest A & F University, Yangling 712100, China.
Sci Total Environ. 2023 Feb 1;858(Pt 3):160044. doi: 10.1016/j.scitotenv.2022.160044. Epub 2022 Nov 8.
The widespread use of disposable plastic boxes is exacerbating the dangers of microplastics (MPs); however, little is known about the fragmentation behavior of MPs during aging. In this study, the dynamic evolution on the release of micro(nano)plastics and photoaging properties of two disposable plastic boxes (polypropylene (PP) and polystyrene (PS)) were investigated under light irradiation and mechanical abrasion. Results showed that the weight of PP and PS was decreased by 53 % and 100 %, respectively after 60 d of ultraviolet irradiation (UV60). Moreover, a large number of fragmented particles were produced from the combined light irradiation and abrasion, with 0.142 ± 0.006 and 0.141 ± 0.013 million micro(nano)plastics/mL particles from PP and PS boxes, respectively, and the nanometer range (<100 nm) accounted for 70.8 % and 46.8 %. The correlation model of the average size or alteration time versus carbonyl index (CI) was developed, which indicated that the fragmentation behavior was mainly related to the photooxidation, though mechanical abrasion also played a certain enhancing role. Additionally, PS was susceptible to the fragmentation and photooxidation compared to PP possibly since the phenyl ring of PS was more vulnerable to UV attack than the methyl of PP. The findings of this study clarify the dynamic fragmentation process of micro(nano)plastics of disposable plastic boxes and provide useful information to access environmental fate of MPs more holistically.
一次性塑料盒的广泛使用正在加剧微塑料(MPs)的危害;然而,关于MPs在老化过程中的破碎行为却知之甚少。在本研究中,研究了两种一次性塑料盒(聚丙烯(PP)和聚苯乙烯(PS))在光照和机械磨损下微(纳)塑料释放的动态演变及其光老化特性。结果表明,经过60天紫外线照射(UV60)后,PP和PS的重量分别下降了53%和100%。此外,光照和磨损共同作用产生了大量破碎颗粒,PP盒和PS盒分别产生了0.142±0.006和0.141±0.013百万个微(纳)塑料/毫升颗粒,纳米范围(<100nm)分别占70.8%和46.8%。建立了平均尺寸或变化时间与羰基指数(CI)的相关模型,结果表明破碎行为主要与光氧化有关,尽管机械磨损也起到了一定的促进作用。此外,与PP相比,PS更容易发生破碎和光氧化,这可能是因为PS的苯环比PP的甲基更容易受到紫外线攻击。本研究结果阐明了一次性塑料盒微(纳)塑料的动态破碎过程,并为更全面地了解MPs的环境归宿提供了有用信息。