光老化
生物降解
微塑料
机制(生物学)
沉积物
环境化学
化学
环境科学
接口(物质)
过程(计算)
有机化学
地质学
计算机科学
吸附
生物
遗传学
古生物学
哲学
吉布斯等温线
认识论
操作系统
作者
Xin Su,Meng Liu,Jibo Dou,Yao Tang,Zhijiang Lu,Jianming Xu,Yan He
标识
DOI:10.1021/acs.est.4c06191
摘要
Microplastics (MPs) in coastal wetlands have been of great concern, but information on the aging behavior of MPs in the sediment–water interface is still lacking. In this study, the contribution of a typical abiotic (photoaging) and biotic (biodegradation) process and the underlying aging pathway of MPs with different degradabilities (including polypropylene, polyethylene terephthalate, and polylactic acid) were studied. With a quantified relative importance of photoaging (>55%) vs biodegradation, the crucial contribution of photoaging on MP aging was highlighted. This was likely attributed to more generation of reactive oxygen species (ROS) under sunlight irradiation conditions, containing O 2 •– and H 2 O 2 . By raising higher the level of malondialdehyde (0.5–3.5 times as high as that in the dark condition), these photochemically formed ROS caused oxidative stress and inhibited the selective attachment of plastic-degrading microbes on the MP surface, thereby weakening the effect of biodegradation. On this basis, the aging characteristics and potential pathway of different MPs were revealed. The functional group of nondegradable polypropylene tends to be broken by ROS first, while biodegradation (Arthrobacter oryzae and Bacillus sp.) played a relatively dominant role in biodegradable polylactic acid. This study provides a new sight for the understanding on the aging behaviors of MPs in the sediment–water interface.
科研通智能强力驱动
Strongly Powered by AbleSci AI