College of Agricultural Science and Engineering, Hohai University, Nanjing 210098, China.
College of Agricultural Science and Engineering, Hohai University, Nanjing 210098, China.
Water Res. 2024 Nov 1;265:122254. doi: 10.1016/j.watres.2024.122254. Epub 2024 Aug 12.
The environmental fate and risks of microplastics (MPs) and their associated contaminants have attracted increasing concern in recent years. In this study, the cotransport of six kinds of pristine and aged MPs and the antiager ozonation product N-(1,3-dimethylbutyl)-N'-phenyl-p-phenylenediamine-quinone (6PPD-Q) were investigated via a series of batch and transport experiments, and characteristic analysis (e.g., SEM, FTIR and XPS). Generally, pristine MPs exhibit higher adsorption ability than aged MPs due to the hydrophobic interaction. The 6PPD-Q usually exhibited both free moving and bond-MPs moving during transport process in presence of MPs, but none free 6PPD-Q was detected in presence of pristine PP MPs. The mobility of 6PPD-Q was generally facilitated in presence of MPs by bond-MPs moving due to the hydrogen bonding, halogen bonding, π-π interaction (the maximum total mass recovery of 84.11%), which efficiency was influenced with the combined effect of adsorption ability and mobility of MPs. The pristine PVC MPs showed highest facilitation on 6PPD-Q transport. The retained 6PPD-Q in porous media also was released by various MPs with different mass recovery ranged from 15.72% to 56.26% via surface moving of MPs around porous media. Both the dissolved and retained 6PPD-Q decreased the MPs mobility with the minimum mass recovery of 34.02%. Findings from this study contribute to the prediction and assessment of the combined risks of MPs and 6PPD-Q.
近年来,微塑料(MPs)及其相关污染物的环境归宿和风险引起了越来越多的关注。在这项研究中,通过一系列批处理和传输实验以及特征分析(例如 SEM、FTIR 和 XPS),研究了六种原始和老化的 MPs 以及抗老化臭氧氧化产物 N-(1,3-二甲基丁基)-N'-苯基-p-亚苯基二胺-醌(6PPD-Q)的共输运。一般来说,由于疏水性相互作用,原始 MPs 表现出比老化 MPs 更高的吸附能力。在存在 MPs 的情况下,6PPD-Q 通常在传输过程中表现为自由移动和键合 MPs 移动,但在存在原始 PP MPs 的情况下未检测到游离的 6PPD-Q。由于氢键、卤键、π-π 相互作用(最大总质量回收率为 84.11%),6PPD-Q 的迁移率通常在 MPs 的键合 MPs 移动的作用下得到促进,这种效率受到 MPs 的吸附能力和迁移率的综合影响。原始 PVC MPs 对 6PPD-Q 传输的促进作用最大。通过 MPs 围绕多孔介质的表面移动,多孔介质中保留的 6PPD-Q 也会被各种 MPs 释放出来,其质量回收率从 15.72%到 56.26%不等。溶解和保留的 6PPD-Q 都会降低 MPs 的迁移率,最低质量回收率为 34.02%。本研究的结果有助于预测和评估 MPs 和 6PPD-Q 的综合风险。