Spectroscopic evidence for adsorption of natural organic matter on microplastics

Andrea Paul, Michelle Reese, Tobias Goldhammer, Claudia Schmalsch, Jens Weber, Claus G. Bannick
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Abstract

The interaction of microcroplastics (MP) with dissolved organic matter, especially humic substances, is of great importance in understanding the behavior of microplastics in aquatic ecosystems. Surface modification by humic substances plays an essential role in transport and interaction of MP with abiotic and biotic components. Previous studies on the interaction between MP and humic substances were largely based on a model compound, humic acid (Sigma-Aldrich). In our work, we therefore investigated the interaction of natural organic matter (NOM) sampled from a German surface water with low-density polyethylene particles (LDPE). High-pressure size exclusion chromatography (HPSEC) and UV/vis absorption and fluorescence spectroscopy were used to characterize the incubation solutions after modifications due to the presence of LDPE, and Raman spectroscopy was used to characterize the incubated microplastics. While the studies of the solutions generally showed only very small effects, Raman spectroscopic studies allowed clear evidence of the binding of humic fractions to MP. The comparison of the incubation of NOM and a lignite fulvic acid which also was tested further showed that specific signatures of the humic substances used could be detected by Raman spectroscopy. This provides an elegant opportunity to conduct broader studies on this issue in the future.

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微塑料吸附天然有机物的光谱学证据
微塑料(MP)与溶解有机物(尤其是腐殖质)之间的相互作用对于了解微塑料在水生生态系统中的行为具有重要意义。腐殖质的表面改性对微塑料的迁移以及与非生物和生物成分的相互作用起着至关重要的作用。以往有关 MP 与腐殖质之间相互作用的研究主要基于一种模型化合物--腐植酸(Sigma-Aldrich)。因此,我们研究了从德国地表水中采样的天然有机物(NOM)与低密度聚乙烯颗粒(LDPE)之间的相互作用。我们使用高压尺寸排阻色谱法(HPSEC)和紫外/可见吸收及荧光光谱法来表征因低密度聚乙烯的存在而改变后的培养溶液,并使用拉曼光谱来表征培养后的微塑料。虽然对溶液的研究一般只显示出非常小的影响,但拉曼光谱研究则清楚地证明了腐殖质成分与 MP 的结合。对 NOM 和褐煤富酸(也进行了测试)的培养进行的比较进一步表明,拉曼光谱可以检测到所用腐殖质的特定特征。这为今后就此问题开展更广泛的研究提供了一个良好的机会。
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