College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Hunan University, Ministry of Education, Changsha, 410082, PR China.
College of Environmental Science and Engineering, Key Laboratory of Environmental Biology and Pollution Control, Hunan University, Ministry of Education, Changsha, 410082, PR China.
Sci Total Environ. 2021 Jul 20;779:146528. doi: 10.1016/j.scitotenv.2021.146528. Epub 2021 Mar 18.
The content of (micro)plastics and heavy metals were investigated in the fly ash, bottom ash and surface soil samples from a municipal solid waste incinerate plant. The abundance of microplastics was 23, 171, and 86 particles/kg dw, respectively. The type of microplastics in fly ash was fiber, and the main type in bottom ash and soil samples was fragment (43.0% and 29.3%), followed by film (26.3% and 25.0%), foam (13.0% and 25.1%), and fiber (17.7% and 20.7%). Most of the microplastics had obvious tearing marks, with the protrusions and scratches on their surfaces. Several types of heavy metals such as Cr, Cu, Zn, Pb were adsorbed on the surface of microplastics. Additionally, the column test demonstrated that the microplastics and heavy metals in the bottom ash can be significantly dissolved out under the impact of external precipitation. Results also indicated that acid rain precipitation easily dissolved heavy metals into the water environment from the bottom ash without special treatment or protection. This paper investigated the combined migration of microplastics and heavy metals from the bottom ash, which can provide theoretical basis for further study of properly treating the bottom ash and exploring the environmental behavior.
对来自城市固体废物焚烧厂的飞灰、底灰和表层土壤样品中的(微)塑料和重金属含量进行了研究。微塑料的丰度分别为 23、171 和 86 个/千克干重。飞灰中的微塑料类型为纤维,而底灰和土壤样品中的主要类型为碎片(43.0%和 29.3%),其次是薄膜(26.3%和 25.0%)、泡沫(13.0%和 25.1%)和纤维(17.7%和 20.7%)。大多数微塑料表面都有明显的撕裂痕迹,表面有凸起和划痕。Cr、Cu、Zn、Pb 等几种重金属被吸附在微塑料表面。此外,柱试验表明,在外部降水的冲击下,底灰中的微塑料和重金属可以显著溶解出来。结果还表明,在没有特殊处理或保护的情况下,酸雨降水容易将重金属从底灰中溶解到水环境中。本文研究了底灰中微塑料和重金属的复合迁移,可为进一步研究底灰的妥善处理和探索环境行为提供理论依据。