Department of Environmental Technology, Kaunas University of Technology, Radvilėnų Pl. 19, LT, 50254, Kaunas, Lithuania.
Department of Environmental Technology, Kaunas University of Technology, Radvilėnų Pl. 19, LT, 50254, Kaunas, Lithuania.
Environ Res. 2022 Nov;214(Pt 1):113815. doi: 10.1016/j.envres.2022.113815. Epub 2022 Jul 5.
Mechanical-biological treatment (MBT) is a popular solution for the processing of mixed municipal solid waste (MSW). However, it is assumed that the treatment processes can lead to the generation of microplastics in large quantities and their concentration in the organic output. Organic outputs from MBT as a source of microplastics are still poorly understood. The current article aims to fill this gap and investigate microplastics formation during MBT and their abundance in ready stabilized organic output. Seasonal samples were taken from the four stages of the possible microplastics pathway in MBT to study changes in microplastics numerical and mass concentration, shape and size. Large microplastics were identified by Fourier transform infrared spectroscopy, and small microplastics by Nile Red dye staining method. The results showed that both mechanical pre-treatment and aerobic treatment had a significant impact on microplastics formation, while mechanical post-treatment only resulted in the enrichment of the output with microplastics. Moreover, microplastics became finer during treatment. Microplastics abundance in ready organic output ranged from 8925 ± 1344 particles/kg in winter 2021 to 17407 ± 4319 particles/kg in summer 2020, and up to 160.5 t of microplastics were emitted from the Kaunas MBT treatment facility during the study year. In addition, a relationship between the microplastics abundance and plastic content of the incoming waste was found by a regression analysis. Therefore, to reduce the formation and emission of microplastics by MBT, the organic fraction of MSW should be collected and treated separately.
机械-生物处理(MBT)是处理混合城市固体废物(MSW)的一种流行方法。然而,据推测,处理过程会导致大量微塑料的产生,并使其在有机产物中浓缩。MBT 产生的有机产物作为微塑料的来源仍知之甚少。本文旨在填补这一空白,并研究 MBT 过程中微塑料的形成及其在已稳定化有机产物中的丰度。从 MBT 中可能的微塑料途径的四个阶段采集季节性样品,以研究微塑料数量和质量浓度、形状和大小的变化。通过傅里叶变换红外光谱法识别大微塑料,通过尼罗红染料染色法识别小微塑料。结果表明,机械预处理和有氧处理都对微塑料的形成有显著影响,而机械后处理仅导致微塑料在输出物中的富集。此外,微塑料在处理过程中变得更细。已稳定有机产物中的微塑料丰度范围从 2021 年冬季的 8925±1344 个/千克到 2020 年夏季的 17407±4319 个/千克,研究年期间,从考纳斯 MBT 处理设施排放了多达 160.5 吨的微塑料。此外,通过回归分析发现微塑料丰度与进入废物的塑料含量之间存在关系。因此,为了减少 MBT 形成和排放的微塑料,应将 MSW 的有机部分单独收集和处理。