School of Energy and Environment, MOE Key Laboratory of Environmental Medicine Engineering, Southeast University, Nanjing, 210096, China.
School of Energy and Environment, MOE Key Laboratory of Environmental Medicine Engineering, Southeast University, Nanjing, 210096, China.
Environ Res. 2024 Jan 1;240(Pt 1):117471. doi: 10.1016/j.envres.2023.117471. Epub 2023 Oct 21.
In this research, we examined the combined effects of hydrothermal treatment and different dewatering agents on the morphological, molecular, and functional properties of Polylactic Acid Microplastics (PLA-MPs). Under hydrothermal treatments, the presence of dewatering agents leads to pronounced alterations in PLA-MPs as evidenced by SEM, showing the compound effects of both treatments. In detail, PFS (polyferric sulfate) results in an enhanced porosity on the surface, PAC (polyaluminum chloride) imparts a distinct roughness, while Fe/PMS (iron/peroxymonosulfate) leads to surface deterioration with the emergence of larger pores. Fe/PMS exhibits the most significant difference in its impact on microplastics in both water and sludge, significantly reducing molecular weight in water, while its effect becomes minimal in sludge. The carbonyl index (CI) predominantly increases across agents in water treatments, with PAC standing out with a CI of 17.50. Conversely, in sludge environments, the CI displays a decreasing trend, especially with Fe/PMS which shows a CI of 15.00. Additionally, employing FTIR and XPS analyses, this study validates the rise in oxygen-centric functional groups on PLA-MPs post hydrothermal treatments, particularly a marked enhancement in C=O and C-O groups due to Fe/PMS. Two-dimensional correlation spectroscopy revealed a distinct sequence of spectral changes in PLA-MPs. The hydrothermal samples in water showed the earliest structural alterations, whereas the presence of iron and persulfate in sludge led to the most pronounced molecular transitions, emphasizing the intricate interactions of the microplastics with different chemicals. This study highlights the impact of hydrothermal treatment and dewatering agents on the properties of the microplastics.
在这项研究中,我们研究了水热处理和不同脱水剂对聚乳酸微塑料(PLA-MPs)形态、分子和功能特性的综合影响。在水热处理下,脱水剂的存在导致 PLA-MPs 发生明显变化,这可以从 SEM 中得到证明,这表明了两种处理的复合效应。具体而言,PFS(聚硫酸铁)在表面上产生增强的多孔性,PAC(聚合氯化铝)赋予明显的粗糙度,而 Fe/PMS(铁/过一硫酸盐)导致表面劣化,出现更大的孔。Fe/PMS 在水和污泥中对微塑料的影响最为显著,在水中显著降低分子量,而在污泥中的影响则最小。羰基指数(CI)在水相处理中主要在各试剂中增加,PAC 尤为突出,CI 值为 17.50。相反,在污泥环境中,CI 呈下降趋势,特别是 Fe/PMS,CI 值为 15.00。此外,通过傅里叶变换红外光谱(FTIR)和 X 射线光电子能谱(XPS)分析,本研究验证了水热处理后 PLA-MPs 上含氧官能团的增加,特别是由于 Fe/PMS 的存在,C=O 和 C-O 基团显著增强。二维相关光谱揭示了 PLA-MPs 中光谱变化的明显顺序。水相中的水热样品显示出最早的结构变化,而污泥中存在铁和过硫酸盐导致最显著的分子转变,强调了微塑料与不同化学物质的复杂相互作用。本研究强调了水热处理和脱水剂对微塑料性质的影响。