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Degradation of polyethylene microplastics in seawater: Insights into the environmental degradation of polymers

机译:海水中聚乙烯微塑料的降解:洞察聚合物在环境中的降解

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Microplastic contamination of aquatic environments has become an increasingly alarming problem. These, defined as particles 5 mm, are mostly formed due to the cracking and embrittlement of larger plastic particles. Recent reports show that the increasing presence of microplastics in the environment could have significant deleterious consequences over the health of marine organisms, but also across the food chain. Herein, we have studied the effects of artificial seawater on polyethylene (PE)-based beads by exposing them up to eight weeks to saltwater in stirred batch reactors in the dark and examined the structural and morphological changes these endured. Electron microscopy observations showed that artificial seawater induces severe microcracking of the pellets' surfaces. Additionally, Fourier transform infrared spectroscopy (FTIR) analyses evidenced the formation of oxidized groups whenever these particles were exposed to water and an increase in organic matter content of the waters in which the pellets were kept was evidenced by Raman spectroscopy. There were also noticeable consequences in the thermal stability of the polyethylene pellets, as determined by thermogravimetric studies (TGA). Furthermore, the parallel exposure of polyethylene pellets to UV radiation yielded less pronounced effects, thus underscoring its lower preponderance in the degradation of this material. These results highlight the importance of determining the mechanisms of degradation of microplastics in marine settings and what the implications may be for the environment. Overall, the herein presented results show that a relatively short period of time of accelerated exposure can yield quantifiable chemical and physical impacts on the structural and morphological characteristics of PE pellets.
机译:水生环境的微塑料污染已成为日益严重的问题。这些被定义为小于5毫米的颗粒,主要是由于较大的塑料颗粒的破裂和脆化而形成的。最近的报告表明,环境中微塑料的增加会给海洋生物的健康以及整个食物链带来严重的有害后果。本文中,我们通过在黑暗中在搅拌的分批反应器中将人造海水暴露于咸水中长达八周的时间,研究了人造海水对聚乙烯(PE)基微珠的影响,并研究了这些人造海水在结构和形态上的变化。电子显微镜观察表明,人造海水引起了颗粒表面的严重微裂纹。另外,傅立叶变换红外光谱法(FTIR)分析证明,只要这些颗粒暴露于水,就会形成氧化基团,而拉曼光谱法则证明了其中保留有沉淀物的水中有机物含量的增加。通过热重研究(TGA)测定,聚乙烯粒料的热稳定性也有明显的后果。此外,聚乙烯粒料平行暴露于紫外线辐射产生的效果不那么明显,因此突出了其在这种材料降解中的优势。这些结果凸显了确定海洋环境中微塑料降解机理的重要性,以及对环境的影响。总体而言,本文呈现的结果表明,加速暴露的相对较短时间可以对PE颗粒的结构和形态特征产生可量化的化学和物理影响。

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