Hydrobiogeochemistry and Pollution Control Laboratory, Department of Environmental Sciences, Jahangirnagar University, Dhaka, Bangladesh.
Water Environ Res. 2024 May;96(5):e11041. doi: 10.1002/wer.11041.
The aim of the study is to investigate the leaching of fluorescent dissolved organic matter (fDOM) from microplastics. In addition, this study identifies the connection between fDOM and microplastics in the aquatic environment. Three-dimensional excitation-emission matrix identified five fluorophores, that is, peak A, M, T, T, and W, and the parallel factor analysis modeling identified five components, that is, tryptophan-like, p-hydroxy acetophenone, humic acid (C-like), detergent-like, and fulvic acid (M-like) in the urban surface water. Mimic experiments using commonly used synthetic plastic (like microplastics) in Mili-Q water under solar radiation and dark environments demonstrate the release of fDOM from plastic. Two fluorophore peaks were observed at Ex/Em = 250/302 nm and Ex/Em = 260/333 nm for the expanded polystyrene plastic polymer and one fluorophore peak at Ex/Em = 260/333 nm for the low-density polyethylene. Fluorophore and component intensity exhibited notable associations with microplastics in the aquatic environment. These findings indicated that the characteristics and dynamics of fDOM in urban surface water are influenced by microplastics. PRACTITIONER POINTS: Fluorescent dissolved organic matters were identified in urban surface waters. Expanded polystyrene (EPS) had shown two fluorophores at Em/Ex = 250/302 and Em/Ex = 260/333. Low-density polyethylene (LDPE) had one fluorophore at Em/Ex = 260/333. Fluorophore and component intensity in the aquatic settings exhibited associations with microplastics.
本研究旨在探讨荧光溶解有机质(fDOM)从微塑料中的浸出情况。此外,本研究还确定了水生环境中 fDOM 与微塑料之间的联系。三维激发-发射矩阵鉴定出了五种荧光团,即峰 A、M、T、T 和 W,平行因子分析模型鉴定出了五种成分,即色氨酸样、对羟基苯乙酮、腐殖酸(C 样)、洗涤剂样和富里酸(M 样)在城市地表水中。在模拟实验中,使用常用的合成塑料(如微塑料)在 Mili-Q 水中,在太阳辐射和黑暗环境下,证明了塑料中 fDOM 的释放。在膨胀聚苯乙烯塑料聚合物中观察到两个荧光峰,Ex/Em = 250/302nm 和 Ex/Em = 260/333nm,在低密度聚乙烯中观察到一个荧光峰,Ex/Em = 260/333nm。荧光团和组分强度与水中的微塑料有显著关联。这些发现表明,城市地表水中 fDOM 的特征和动态受到微塑料的影响。
在城市地表水中鉴定出荧光溶解有机物。
膨胀聚苯乙烯(EPS)在 Em/Ex = 250/302 和 Em/Ex = 260/333 处显示出两个荧光团。
低密度聚乙烯(LDPE)在 Em/Ex = 260/333 处有一个荧光团。
在水生环境中,荧光团和组分强度与微塑料之间存在关联。