College of Environment, Hohai University, 210098 Nanjing, China; Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, MOE, Hohai University, 210098 Nanjing, China.
College of Environment, Hohai University, 210098 Nanjing, China; Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, MOE, Hohai University, 210098 Nanjing, China.
J Hazard Mater. 2024 Sep 15;477:135273. doi: 10.1016/j.jhazmat.2024.135273. Epub 2024 Jul 20.
Algal blooms can produce substantial amounts of algal organic matter (AOM). Microplastics (MPs) in aquatic environments inevitably interact with AOM. Meanwhile, the aging and type of MPs may increase the uncertainty surrounding interaction. This study focused on polyethylene (PE) and polylactic acid (PLA) to investigate their interaction with AOM before and after aging. The results shw that PLA has a stronger adsorption capacity for AOM than PE. Meanwhile, aging enhanced and weakened the adsorption of PE and PLA for AOM. Compared to unaged PE (UPE) and aged PLA (APLA), aged PE (APE) and unaged PLA (UPLA) more significantly promote the humification of AOM and alter its functional groups. 2D-IR-COS analysis reveals that the sequence of functional group changes in AOM interacting with MPs is influenced by the type and aging of MPs. After interacting with AOM, surface roughness increased for all MPs. FTIR and XPS analyses show that the addition of AOM accelerated the oxidation of MPs surfaces, especially for UPE and APLA, with oxygen content increasing by 9.32 % and 1 %. Aging enhances the interaction between PE and AOM, while weakening the interaction between PLA and AOM. These findings provide new insights into understanding the interplay between AOM and MPs.
藻华可以产生大量的藻类有机质(AOM)。微塑料(MPs)在水生环境中不可避免地与 AOM 相互作用。同时,MPs 的老化和类型可能会增加相互作用的不确定性。本研究集中于聚乙烯(PE)和聚乳酸(PLA),以研究它们在老化前后与 AOM 的相互作用。结果表明,PLA 对 AOM 的吸附能力强于 PE。同时,老化增强和减弱了 PE 和 PLA 对 AOM 的吸附。与未老化的 PE(UPE)和老化的 PLA(APLA)相比,老化的 PE(APE)和未老化的 PLA(UPLA)更显著地促进了 AOM 的腐殖化,并改变了其官能团。2D-IR-COS 分析表明,与 MPs 相互作用的 AOM 中官能团变化的顺序受到 MPs 的类型和老化的影响。与 AOM 相互作用后,所有 MPs 的表面粗糙度都增加了。FTIR 和 XPS 分析表明,AOM 的添加加速了 MPs 表面的氧化,特别是对于 UPE 和 APLA,其氧含量分别增加了 9.32%和 1%。老化增强了 PE 与 AOM 的相互作用,而减弱了 PLA 与 AOM 的相互作用。这些发现为理解 AOM 和 MPs 之间的相互作用提供了新的见解。