Australian Centre for Research on Separation Science, School of Natural Sciences, University of Tasmania, Private Bag 75, Hobart, Tasmania 7001, Australia.
Anal Chem. 2022 Jun 28;94(25):9033-9039. doi: 10.1021/acs.analchem.2c01094. Epub 2022 May 17.
Microplastics have the potential to adsorb organic pollutants due to their lipophilic nature. Evaluating the distribution of multiple organic pollutants in different types of microplastics coexisting in a sample is a strenuous and challenging analytical task. Here, we report position-dependent microplastic trapping in a biphasic medium comprising a paramagnetic aqueous donor phase containing the mixed microplastics and a diamagnetic organic acceptor phase. Depending on the relative height of the sample container positioned in a magnetic field, the selective density-dependent trapping of microplastics is achieved. Concurrently, the organic pollutants adsorbed on the microplastics are desorbed in the organic acceptor phase, which is easily solidified, separated, and transferred for organic pollutant determination by high-performance liquid chromatography. This facilitates analytical studies involving multiple organic pollutants distributed in solid heterogeneous mixtures.
由于亲脂性,微塑料有可能吸附有机污染物。评估共存于样品中的不同类型微塑料中多种有机污染物的分布是一项艰巨而具有挑战性的分析任务。在这里,我们报告了在包含混合微塑料的顺磁性水性供体相和抗磁性有机受体相的两相介质中,位置依赖性微塑料捕获。根据置于磁场中的样品容器的相对高度,实现了选择性的、密度依赖性的微塑料捕获。同时,吸附在微塑料上的有机污染物在有机受体相中解吸,该相易于凝固、分离,并转移用于通过高效液相色谱法测定有机污染物。这有利于涉及分布在固体多相混合物中的多种有机污染物的分析研究。