Natural History Research Center, Shanghai Natural History Museum, Shanghai Science and Technology Museum, Shanghai 200127, PR China.
State Key Laboratory of Estuarine and Costal Research, East China Normal University, Shanghai 200062, PR China.
Chemosphere. 2018 Apr;197:142-151. doi: 10.1016/j.chemosphere.2018.01.052. Epub 2018 Jan 12.
The aggregation of nanoplastics (NPs) is a key issue in understanding the dynamic nature of NPs in the environment. The aggregation of NPs under various environmental conditions has not yet been studied. We investigated the influences of inorganic ions and natural organic matter (NOM) on polystyrene (PS) NPs aggregation in solutions. Results showed that PS NPs remained stable in wide ionic strength solutions of NaCl (1-100 mM) and CaCl (0.1-15 mM), and only in low ionic strength FeCl solutions (0.01 mM). However, obvious PS NPs aggregation was observed in FeCl solutions with an increase in ionic strength (0.1 and 1 mM). Moreover, NOM had a negligible effect on PS NPs aggregation in all ionic strengths of NaCl and CaCl solutions and in low ionic strength FeCl solutions (0.01 mM). However, NOM reduced PS NPs aggregation in an intermediate ionic strength FeCl (0.1 mM) solution and increased aggregation in a high ionic strength FeCl (1 mM) solution. Based on the theoretical analysis of interaction forces among PS NPs, the Derjaguin-Landau-Verwey-Overbeek force was a contributor governing PS NPs aggregation either in the absence or presence of NOM. In addition, other factors, including electrostatic heterogeneity of PS NPs surfaces, steric repulsion induced by NOM, and clusters formed via bridging effect in the presence of NOM also contributed to altered PS NPs aggregation under selected conditions. The PS NPs-NOM clusters were directly observed using a cryogenic scanning electron microscope.
纳米塑料(NPs)的聚集是理解 NPs 在环境中动态特性的关键问题。各种环境条件下 NPs 的聚集尚未得到研究。我们研究了无机离子和天然有机物(NOM)对聚苯乙烯(PS)NPs 在溶液中聚集的影响。结果表明,PS NPs 在 NaCl(1-100mM)和 CaCl(0.1-15mM)的宽离子强度溶液中保持稳定,而仅在低离子强度的 FeCl 溶液(0.01mM)中不稳定。然而,在离子强度增加的 FeCl 溶液(0.1 和 1mM)中,明显观察到 PS NPs 聚集。此外,NOM 对 NaCl 和 CaCl 溶液中所有离子强度以及低离子强度 FeCl 溶液(0.01mM)中的 PS NPs 聚集几乎没有影响。然而,NOM 降低了中间离子强度 FeCl(0.1mM)溶液中 PS NPs 的聚集,增加了高离子强度 FeCl(1mM)溶液中 PS NPs 的聚集。基于 PS NPs 之间相互作用力的理论分析,无论是在没有 NOM 存在的情况下还是在 NOM 存在的情况下,德加古因-朗道-范韦尔比克力都是控制 PS NPs 聚集的因素之一。此外,其他因素,包括 PS NPs 表面的静电非均质性、NOM 诱导的空间排斥和 NOM 存在时通过桥接效应形成的聚集体,也导致了在选定条件下 PS NPs 聚集的改变。通过低温扫描电子显微镜直接观察到 PS NPs-NOM 聚集体。