Simulated experimental investigation of microplastic weathering in marine environment

Sonali Yadav, S. Rout, M. Tiwari, S. Mhatre, R. Karpe, V. Pulhani, A. Kumar
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引用次数: 2

Abstract

Abstract Microplastics act as a potential vector for a wide range of contaminants, which have emerged as a major environmental hazard in the modern world. Considering the seriousness of the problem, a simulated laboratory and field experiment were conducted to study the weathering of pristine microplastics following long-term exposure to natural background radiation and the marine environment after being disposed of in the open environment. For the study, polyethylene-originating (HDPE and LDPE) microplastics were chosen. The study revealed that radiation exposure causes surface roughness and cracks, leading to an increased surface area, which can invite a wide spectrum of pollutants to sorb on their surface. Furthermore, we report that the radiation-induced morphological changes favor microbial colonization on the microplastic surface when exposed to the marine environment. The growth of biofilms on the surface of microplastics reduces their hydrophobicity, which may attract a wide variety of polar contaminants. The study led to an interesting finding: that the HDPE microplastic surface is more conducive for biofilm growth in comparison to the LDPE surface.
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海洋环境中微塑性风化模拟实验研究
微塑料是多种污染物的潜在载体,已成为现代世界的主要环境危害。考虑到问题的严重性,通过模拟实验室和现场试验,研究了原始微塑料在开放环境中弃置后长期暴露于自然本底辐射和海洋环境下的风化过程。在研究中,选择了聚乙烯(HDPE和LDPE)微塑料。研究表明,辐射暴露会导致表面粗糙度和裂缝,导致表面积增加,这可能会导致各种污染物在其表面吸收。此外,我们报告说,当暴露于海洋环境时,辐射引起的形态变化有利于微生物在微塑料表面的定植。微塑料表面生物膜的生长降低了其疏水性,从而可能吸引各种极性污染物。这项研究得出了一个有趣的发现:与LDPE表面相比,HDPE微塑料表面更有利于生物膜的生长。
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