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阳光和海洋风化对聚甲醛的影响:物理化学性质的演变。

Sunlight and marine weathering of poly(oxymethylene): Evolution of the physico-chemical properties.

机构信息

Université Bretagne Sud, UMR CNRS 6027, IRDL, F-56100 Lorient, France.

Université Bretagne Sud, UMR CNRS 6027, IRDL, F-56100 Lorient, France.

出版信息

Mar Pollut Bull. 2023 Aug;193:115070. doi: 10.1016/j.marpolbul.2023.115070. Epub 2023 Jun 9.

Abstract

Plastic pollution is now an environmental problem that affects all environmental compartments. The study of plastic degradation in terrestrial, marine and other freshwater environments is emerging. Research is mainly focused on plastic fragmentation into microplastics. In this contribution, an engineering polymer, poly(oxymethylene) (POM), was studied under different weathering conditions using physico-chemical characterization techniques. A POM homopolymer and a POM copolymer were characterized by electron microscopy, tensile tests, DSC, infrared spectroscopy and rheometry tests after climatic and marine weathering or artificial UV/water spray cycles. Natural climatic conditions were the most favorable for POM degradation, especially under solar UV, as evidenced by the strong fragmentation into microplastics when subjected to artificial UV cycles. The evolution of properties with exposure time was found to be non-linear under natural conditions, in contrast to artificial conditions. Two main stages of degradation were evidenced by the correlation between strain at break and carbonyl indices.

摘要

塑料污染现在是一个影响所有环境的环境问题。对陆地、海洋和其他淡水环境中塑料降解的研究正在兴起。研究主要集中在塑料碎片化成为微塑料上。在本贡献中,使用物理化学特性描述技术,对工程聚合物聚甲醛(POM)在不同的风化条件下进行了研究。对 POM 均聚物和 POM 共聚物进行了电子显微镜、拉伸试验、差示扫描量热法、红外光谱和流变学测试,这些测试是在气候和海洋风化或人工紫外线/水喷雾循环之后进行的。自然气候条件对 POM 降解最为有利,尤其是在太阳紫外线的作用下,这从经过人工紫外线循环时强烈碎片化成为微塑料这一现象中得到了证实。与人工条件相比,在自然条件下,随着暴露时间的变化,性能的演变是非线性的。通过断裂伸长率和羰基指数之间的相关性,证明了降解存在两个主要阶段。

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