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A First Pilot Study on the Sorption of Environmental Pollutants on VariousMicroplastic Materials

机译:各种微塑料材料吸附环境污染物的初步研究

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With the drastic increase in plastic production, the input of plastic particles into the environment has become a recognised problem. Xenobiotics are able to sorb to polymer materials, and this process is further enhanced where they encounter microplastics (plastic fragments <5 mm). In this work we studied the sorption of metformin, a type-2 diabetes drug, and difenoconazole, a fungicide, onto the virgin polymer materials polyamide (PA), polypropylene (PP), and polystyrene (PS). Additionally, PP was cryo-milled and PA was treated with acid to investigate the influence of an increase in surface area and chemical modification. The material properties were also studied by dynamic scanning calorimetry (DSC), gel permeation chromatography (GPC) and Fourier transform infrared spectroscopy (FTIR). Sorption experiments were performed on the basis of a full factorial design examining the effect of agitation, pH value, and salinity. Experimental results showed that difenoconazole sorbs readily to all microplastics, whereas the more polar analyte metformin did not show any affinity to the materials used. For difenoconazole the governing factor in all cases is agitation, while both pH and salinity exhibited only a slight influence. The modification of polymers leads to enhanced sorption, indicating that an increase in surface area (cryo-milled PP) or inner volume (acid-treated PA) strongly favours adsorption. Moreover, long-term experiments demonstrated that the time until equilibrium is reached depends strongly on the particle size.
机译:随着塑料产量的急剧增加,将塑料颗粒输入环境已成为公认的问题。异源生物能够吸附到聚合物材料上,并且在遇到微塑料(塑料碎片<5毫米)时会进一步增强该过程。在这项工作中,我们研究了二甲双胍(一种2型糖尿病药物)和二苯并康唑(一种杀菌剂)在纯聚合物材料聚酰胺(PA),聚丙烯(PP)和聚苯乙烯(PS)上的吸附。此外,将PP冷冻研磨,并用酸处理PA,以研究表面积增加和化学改性的影响。还通过动态扫描量热法(DSC),凝胶渗透色谱法(GPC)和傅里叶变换红外光谱(FTIR)研究了材料性能。在全因子设计的基础上进行了吸附实验,检查了搅拌,pH值和盐度的影响。实验结果表明,二苯并呋喃唑容易吸附到所有微塑料中,而极性更大的分析物二甲双胍对所用材料没有任何亲和力。对于苯芬康唑,在所有情况下,控制因素都是搅动,而pH和盐度均仅显示轻微影响。聚合物的改性导致吸附作用增强,表明表面积(低温研磨的PP)或内部体积(酸处理的PA)的增加强烈有利于吸附。此外,长期实验表明,达到平衡的时间在很大程度上取决于粒径。

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