School of Resources, Environment and Materials, Guangxi University, Nanning 530004, China.
Int J Mol Sci. 2022 Aug 30;23(17):9860. doi: 10.3390/ijms23179860.
The influence of phosphates on the transport of plastic particles in porous media is environmentally relevant due to their ubiquitous coexistence in the subsurface environment. This study investigated the transport of plastic nanoparticles (PNPs) via column experiments, paired with Derjaguin-Landau-Verwey-Overbeek calculations and numerical simulations. The trends of PNP transport vary with increasing concentrations of NaHPO and NaHPO due to the coupled effects of increased electrostatic repulsion, the competition for retention sites, and the compression of the double layer. Higher pH tends to increase PNP transport due to the enhanced deprotonation of surfaces. The release of retained PNPs under reduced IS and increased pH is limited because most of the PNPs were irreversibly captured in deep primary minima. The presence of physicochemical heterogeneities on solid surfaces can reduce PNP transport and increase the sensitivity of the transport to IS. Furthermore, variations in the hydrogen bonding when the two phosphates act as proton donors will result in different influences on PNP transport at the same IS. This study highlights the sensitivity of PNP transport to phosphates associated with the solution chemistries (e.g., IS and pH) and is helpful for better understanding the fate of PNPs and other colloidal contaminants in the subsurface environment.
由于磷酸盐在地下环境中普遍共存,因此其对塑料颗粒在多孔介质中迁移的影响与环境有关。本研究通过柱实验,结合德热那广义方程(Derjaguin-Landau-Verwey-Overbeek,简称 DLV 方程)计算和数值模拟,研究了塑料纳米颗粒(PNP)的迁移。随着 NaHPO 和 NaHPO 浓度的增加,PNP 迁移的趋势因静电排斥增加、保留位点竞争和双电层压缩的耦合效应而发生变化。较高的 pH 值由于表面脱质子作用增强而更有利于 PNP 的迁移。由于大部分 PNP 被不可逆地捕获在深层初级势能最低点,因此在较低的离子强度(IS)和较高的 pH 值下,被保留的 PNP 的释放受到限制。固体表面上的物理化学非均质性会降低 PNP 的迁移率,并增加迁移对 IS 的敏感性。此外,当两种磷酸盐作为质子供体时氢键的变化会导致在相同 IS 下对 PNP 迁移产生不同的影响。本研究强调了 PNP 迁移对与溶液化学性质(如 IS 和 pH)相关的磷酸盐的敏感性,有助于更好地理解 PNPs 和其他胶体污染物在地下环境中的归宿。