[Characteristics of Microplastic-derived Dissolved Organic Matter(MPDOM) and the Complexation Between MPDOM and Sulfadiazine/Cu].

Huan Jing Ke Xue

Key Laboratory of Poyang Lake Wetland and Watershed Research, Ministry of Education, School of Geography and Environment, Jiangxi Normal University, Nanchang 330022, China.

Published: November 2023

AI Article Synopsis

  • Microplastic-derived dissolved organic matter (MPDOM) can bind with organic pollutants and heavy metals, influencing their behavior in the environment during aging.
  • The study focused on polyethylene terephthalate (PET) and polystyrene (PS) microplastics, using spectroscopic methods to examine how they interact with the antibiotic sulfadiazine (SDZ) and copper ions (Cu).
  • Findings showed that aging increased the complexity of MPDOM, with a similar reduction in molecular weight and increased aromatic properties for both microplastics while revealing preferential interactions between MPDOM and SDZ over Cu.

Article Abstract

Microplastic-derived dissolved organic matter(MPDOM) during the aging process could be complexed with organic pollutants, heavy metals, and other contaminants and thus affect their migration and transformation. In this study, two types of microplastics, polyethylene terephthalate(PET) and polystyrene(PS), were selected to investigate the spectral properties of MPDOM and their effect on the complexation between MPDOM and sulfadiazine(SDZ)/copper ion(Cu) using the fluorescence quenching method, various spectroscopic analysis techniques, and the Ryan-Weber quenching model. The results of UV-vis absorption spectroscopy analysis showed that the molecular weight of the two MPDOMs decreased; the aromaticity and humification increased; and the carboxyl, carbonyl, hydroxyl, and ester substituents on aromatic rings increased after aging. The fluorescence quenching process between MPDOM and SDZ/Cu was static quenching. After quenching, the aromaticity and humification of the two MPDOMs were similar, and the molecular weights were comparable. Combined with three-dimensional fluorescence spectra and parallel factor analysis, two humic-like components and one protein-like component were identified. In addition, the protein-like components of MPDOM reacted preferentially with SDZ and were more sensitive to Cu. The results of the Ryan-Weber quenching model revealed that the binding ability of humic-like components to PET-DOM was higher in both SDZ and Cu quenching systems, but the binding ability of MPDOM in the SDZ quenching system was generally stronger than that in the Cu system.

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Source
http://dx.doi.org/10.13227/j.hjkx.202212127DOI Listing

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