Takács Dóra, Szabó Tamás, Jamnik Andrej, Tomšič Matija, Szilágyi István
MTA-SZTE Lendület Biocolloids Research Group, Interdisciplinary Excellence Centre, University of Szeged, Rerrich Bela ter 1, H-6720 Szeged, Hungary.
Department of Physical Chemistry and Materials Science, University of Szeged, Rerrich Bela ter 1, H-6720 Szeged, Hungary.
Langmuir. 2023 Sep 12;39(36):12835-12844. doi: 10.1021/acs.langmuir.3c01700. Epub 2023 Aug 30.
Homoaggregation of polystyrene microplastics (MPs) and heteroaggregation of MPs with anionic clay minerals, namely, layered double hydroxide (LDH), in different salt (NaCl, CaCl, and NaSO) solutions were systematically investigated using light scattering techniques. The salt type and ionic strength had significant effects on the stability of both MPs and LDH particles individually and the results could be explained by DLVO theory and the Schulze-Hardy rule. However, once stable colloidal dispersions of the individual particles were mixed, heteroaggregation occurred between the oppositely charged MPs and LDH, which was also confirmed by transmission electron microscopy and X-ray scattering. Adsorption of the LDH particles resulted in neutralization and reversal of MPs surface charge at appropriate LDH doses. Once LDH adsorption neutralized the negative charges of the MP spheres, rapid aggregation was observed in the dispersions, whereas stable samples formed at high and low LDH concentrations. The governing interparticle interactions included repulsive electrical double-layer forces, as well as van der Waals and patch-charge attractions, the strength of which depended on the mass ratio of the interacting particles and the composition of the aqueous solvent. Our results shed light on the colloidal behavior of MPs in a complex aquatic environment and, in the long term, are also useful for developing LDH-based approaches for water remediation to remove contamination with MP particles.
利用光散射技术,系统研究了聚苯乙烯微塑料(MPs)的自聚集以及MPs与阴离子粘土矿物(即层状双氢氧化物,LDH)在不同盐溶液(NaCl、CaCl和NaSO)中的异聚集。盐的类型和离子强度对MPs和LDH颗粒各自的稳定性都有显著影响,结果可以用DLVO理论和舒尔策 - 哈迪规则来解释。然而,一旦将单个颗粒的稳定胶体分散液混合,带相反电荷的MPs和LDH之间就会发生异聚集,这也通过透射电子显微镜和X射线散射得到了证实。在适当的LDH剂量下,LDH颗粒的吸附导致MPs表面电荷中和并反转。一旦LDH吸附中和了MP球的负电荷,在分散液中就会观察到快速聚集,而在高LDH浓度和低LDH浓度下会形成稳定的样品。主要的颗粒间相互作用包括排斥性的电双层力,以及范德华力和补丁电荷吸引力,其强度取决于相互作用颗粒的质量比和水性溶剂的组成。我们的研究结果揭示了MPs在复杂水生环境中的胶体行为,从长远来看,也有助于开发基于LDH的水修复方法以去除MP颗粒污染。