Surface Morphology of a Microplastic as an Indicator of Its Microscale Degradation

IF 0.6 Q4 ENGINEERING, CIVIL
Kamil Majewski, S. Myszograj, E. Płuciennik-Koropczuk
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引用次数: 0

Abstract

Abstract Most of the plastic produced, being one-use plastic packaging, is finally disposed of into the environment. Several agents such as solar radiation, mechanical forces, and microbial action may enable the degradation of these plastics. The purpose of this article is to present a method for studying the properties of a surface of a microplastic particle affected by erosion at the microscale level, which occurred with the help of destructive forces associated with the impact of the sea. The results of analysis of the morphology of the tested sample of microplastic (consisting of poly(propylene)) allowed observing how it was degraded. Examining the surface of a microplastic, one can analyze a number of factors as well as determine the possible path the material has traveled until it was collected as a sample. By determining the scale of the patterns, it is possible to estimate how long the sample and other microplastics present in marine environments have been there. The use of an Atomic Force Microscope not only allows the surface of the sample to be imaged in a non-destructive manner but also enables the degree of degradation to be calculated mathematically, provided a baseline is established from which erosion can be assumed to have originated.
微塑料的表面形貌及其微尺度降解指标
大部分生产出来的塑料,作为一次性塑料包装,最终被丢弃到环境中。太阳辐射、机械力和微生物作用等几种因素可能使这些塑料降解。本文的目的是提出一种方法来研究微塑料颗粒表面在微尺度上受侵蚀的特性,这种侵蚀是在与海洋冲击相关的破坏性力量的帮助下发生的。微塑料(由聚丙烯组成)测试样品的形貌分析结果可以观察到它是如何降解的。检查微塑料的表面,人们可以分析许多因素,并确定材料可能的路径,直到它被收集为样本。通过确定模式的规模,可以估计海洋环境中存在的样品和其他微塑料已经存在了多长时间。原子力显微镜的使用不仅可以以非破坏性的方式对样品表面进行成像,而且还可以在数学上计算降解程度,前提是建立一个可以假设侵蚀起源的基线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
14.30%
发文量
40
审稿时长
52 weeks
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