State Environmental Protection Key Laboratory of Environmental Pollution Health Risk Assessment, South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou, 510655, China.
Department of Toxicology, School of Public Health, Anhui Medical University, Hefei, 230032, China.
Environ Pollut. 2022 May 15;301:118991. doi: 10.1016/j.envpol.2022.118991. Epub 2022 Feb 11.
The presence of microplastics (MPs) and the associated organic pollutants in the aquatic environment has attracted growing concern in recent years. MPs could compete with chemicals for adsorption sites on the surface of sediment, affecting the sorption processes of pollutants on sediment. However, few studies focused on the binary system of microplastics-sediment (MPs-S), which appear much common in aquatic environment. Herein, we investigated the interactions between a continuously used flame retardant tetrabromobisphenol A (TBBPA) and four MPs-S complexes (PVC-S, PE-S, PP-S and PS-S). The equilibrium adsorption capacities were 17.1, 15.6, 15.4, and 14.0 mg/kg for PVC-S, PS-S, PE-S, and PP-S, respectively. Kinetics suggest that adsorption behavior of TBBPA was fitted by pseudo-second-order model. Co-adsorption of TBBPA in binary systems were much lower than the sum of each simple system, which may be due to the mutually occupied adsorption sites. Higher ionic strength and lower dissolved organic matter strengthened the sorption of TBBPA onto MPs-S complexes. The enhanced sorption capacities for TBBPA were observed with elevated proportion and small particle size of MPs in the MPs-S complexes. This study contributes to the knowledge on the impact of MPs in partitioning of organic pollutants in-between solid and aqueous phases in the aquatic environment.
近年来,微塑料(MPs)及其相关有机污染物在水环境中的存在引起了越来越多的关注。MPs 可能会与化学物质竞争吸附在沉积物表面的吸附位点,从而影响污染物在沉积物上的吸附过程。然而,很少有研究关注 MPs-沉积物(MPs-S)的二元体系,而这种体系在水环境中更为常见。在此,我们研究了一种常用阻燃剂四溴双酚 A(TBBPA)与四种 MPs-S 复合物(PVC-S、PE-S、PP-S 和 PS-S)之间的相互作用。对于 PVC-S、PS-S、PE-S 和 PP-S,其平衡吸附容量分别为 17.1、15.6、15.4 和 14.0 mg/kg。动力学研究表明,TBBPA 的吸附行为符合拟二级动力学模型。在二元体系中,TBBPA 的共吸附量远低于每个简单体系的总和,这可能是由于吸附位点的相互占据。较高的离子强度和较低的溶解有机质增强了 TBBPA 向 MPs-S 复合物的吸附。在 MPs-S 复合物中,随着 MPs 比例的增加和颗粒尺寸的减小,TBBPA 的吸附容量也有所增加。本研究有助于了解 MPs 在水环境污染中有机污染物在固-液相间分配的影响。