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Portable SERS platform for electrocoagulation and quantitative analysis of microplastics in aquatic environments.

Created on 11 Aug 2026

Authors

Qihang Xu, Yuwei Pan, Zhewen Duan, Yang Lan, Pablo Campo Moreno, Zhugen Yang

Published in

Water research. Volume 306. Pages 126598. Jul 30, 2026. Epub Jul 30, 2026.

Abstract

Microplastics are emerging pollutants in aquatic systems that cause environmental and health threats and the detection methods are significantly important to guide the proper removal and degradation. However, rapid, sensitive and field-adaptable methods for microplastics analysis remain challenging. In this study, an electrocoagulation-assisted portable surface-enhanced Raman scattering (SERS) workflow was developed for the enrichment and detection of microplastics in aquatic matrices. Electrocoagulation was employed as a pre-concentration to recover microplastics from complex matrices, and the detection conditions, including pH, current density, and processing time were optimised for sensitive detection. Under the optimised calibration conditions, we can detect as low as 0.16-0.62 μg/mL, depending on the type of microplastics and nanoparticle substrates. The spiked lake and river water samples were used to evaluate the recovery. Because microplastics can act as carriers for co-existing organic contaminants, caffeine was selected as a representative co-contaminant to assess microplastic-contaminant interactions, showing that oxidative ageing increased caffeine adsorption onto microplastic surfaces. Experimental results demonstrate the integration of electrocoagulation enrichment and portable SERS detection for near-site microplastic analysis, while also highlighting the influence of co-contaminant interactions on microplastic-associated signal interpretation.

PMID:
42574795
Bibliographic data and abstract were imported from PubMed on 11 Aug 2026.

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