Department of Environmental Engineering and Earth Science, Clemson University, SC, USA; Department of Chemistry, Northwestern University, Evanston, IL 60208, USA.
Department of Automotive Engineering, Clemson University, SC, USA; Clemson Composites Center, Clemson University, SC, USA.
Sci Total Environ. 2020 Jun 10;720:137634. doi: 10.1016/j.scitotenv.2020.137634. Epub 2020 Feb 28.
Microplastics (MPs) have been recognized as transport vectors for micropollutants in the natural water environment and the food web; therefore, the sorption behavior of contaminant on MPs has recently gained an increased attention. However, a consensus has not yet been reached and information about the adsorption of water contaminants on real MPs remains elusive. Herein, we raise the question of "Should we continue using pure polymers as surrogates for real MPs?" This first systematic study compared the adsorption of multiple micropollutants (i.e. a pesticide, a pharmaceutical, and perfluoroalkyl substances (PFAS)) on a large set of MPs (i.e. 20 well-characterized MPs) and kaolin. Material characterizations results showed various physicochemical and compositional differences between real and pure MPs. Pure polymers had lower normalized uptake values than real MPs in most cases. This was attributed to the surface roughness and/or the presence of fillers (e.g. talc and glass fiber) in real samples. Further, preloaded MPs with natural organic matter (NOM) showed an increased uptake of micropollutants due to forming a complex with NOM and/or co-sorption. These findings indicate that employing real MPs in research studies is critical for obtaining environmentally meaningful results, and the evaluation of MPs sorption behavior without NOM preloading can result in a significant underestimation for their actual values. We also provided an outlook the key areas for further investigations.
微塑料 (MPs) 已被认为是自然水环境和食物网中污染物的传输载体;因此,污染物在 MPs 上的吸附行为最近受到了更多的关注。然而,目前尚未达成共识,有关水污染物在真实 MPs 上吸附的信息仍然难以捉摸。在此,我们提出了一个问题:“我们是否应该继续使用纯聚合物作为真实 MPs 的替代品?” 本研究首次系统地比较了多种污染物(即一种农药、一种药物和全氟烷基物质 (PFAS)) 在一大组 MPs(即 20 种经过充分表征的 MPs)和高岭土上的吸附情况。材料特性研究结果表明,真实 MPs 和纯聚合物之间存在各种物理化学和组成差异。在大多数情况下,纯聚合物的归一化摄取值低于真实 MPs。这归因于真实样品表面的粗糙度和/或存在填充剂(如滑石和玻璃纤维)。此外,由于与天然有机物 (NOM) 形成复合物和/或共吸附,预加载有 NOM 的 MPs 对污染物的吸收增加。这些发现表明,在研究中使用真实 MPs 对于获得具有环境意义的结果至关重要,如果不进行 NOM 预加载评估 MPs 的吸附行为,可能会导致对其实际值的严重低估。我们还提供了进一步研究的重点领域的展望。