School of Energy and Environment, MOE Key Laboratory of Environmental Medicine Engineering, Southeast University, Nanjing, 210096, PR China.
School of Energy and Environment, MOE Key Laboratory of Environmental Medicine Engineering, Southeast University, Nanjing, 210096, PR China.
Environ Res. 2023 Jan 1;216(Pt 2):114532. doi: 10.1016/j.envres.2022.114532. Epub 2022 Oct 13.
Microplastics' (MPs) aging process and environmental behavior have attracted extensive attention due to the potential long-term ecological impact. MPs enriched in sludge may accelerate aging during sludge treatment and the affecting environmental behavior, i.e., adsorption performance for pollutants. However, the related studies have not been well researched, especially for the biodegradable MPs. This study revealed the influences of hydrothermal treatment on the characteristics of polylactic acid microplastics (PLA-MPs) and the consequences on heavy metals adsorption. The changes in PLA-MPs' physiochemical properties were characterized and compared. PLA-MPs' surface became irregular, and the oxygen-containing functional groups increased through FTIR and XPS analysis. Meanwhile, the molecular weight and crystallinity of PLA-MPs decreased significantly with the rising in hydrothermal temperature. Accordingly, the adsorption capacity of PLA-MPs for Pb increased from 93.97 μg g for the raw PLA-MPs to 1058.03 μg g for the aged PLA-MPs. Multiple adsorption kinetics and isotherms were discussed for the Pb adsorption onto PLA-MPs with different aging of the PLA-MPs. The adsorption mechanisms of Pb relate to electrostatic interaction and complexation. The main difference is that the adsorption for raw PLA-MPs is dominated by physical and chemical adsorption, whereas the adsorption for the aged PLA-MPs prefers chemical adsorption. In addition, we carefully evaluated the influences of pH, dissolved organic matter, and ionic strength on the PLA-MPs adsorption. The present study highlighted the significance of hydrothermal treatment on the MPs aging and the adsorption performance.
由于微塑料(MPs)可能对生态环境造成长期影响,其老化过程和环境行为受到了广泛关注。富含 MPs 的污泥在处理过程中可能会加速 MPs 的老化,并影响其环境行为,例如对污染物的吸附性能。然而,相关研究尚未得到充分研究,特别是对于可生物降解的 MPs。本研究揭示了水热处理对聚乳酸微塑料(PLA-MPs)特性的影响及其对重金属吸附的后果。对 PLA-MPs 的理化性质变化进行了特征描述和比较。通过傅里叶变换红外光谱(FTIR)和 X 射线光电子能谱(XPS)分析发现,PLA-MPs 的表面变得不规则,含氧官能团增加。同时,随着水热处理温度的升高,PLA-MPs 的分子量和结晶度显著降低。相应地,PLA-MPs 对 Pb 的吸附容量从原始 PLA-MPs 的 93.97μg/g 增加到老化 PLA-MPs 的 1058.03μg/g。对不同老化程度的 PLA-MPs 吸附 Pb 的动力学和等温线进行了讨论。Pb 吸附到 PLA-MPs 的吸附机制与静电相互作用和络合有关。主要区别在于,原始 PLA-MPs 的吸附主要是物理和化学吸附,而老化 PLA-MPs 的吸附更倾向于化学吸附。此外,我们仔细评估了 pH、溶解有机物和离子强度对 PLA-MPs 吸附的影响。本研究强调了水热处理对 MPs 老化和吸附性能的重要性。