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Updated: Jun 21, 2026

Sampling, Sorting, and Characterizing Microplastics in Aquatic Environments with High Suspended Sediment Loads and Large Floating Debris
Published on: July 28, 2018
Unraveling microplastics release in bottled water under in-vehicle conditions using carbon quantum dots
Jinyuan Hu1, Yihua Wu1, Jiale Wang1
1State Key Laboratory of Hydraulics and Mountain River Engineering, College of Architecture and Environment, Sichuan University, Chengdu, Sichuan 610065, PR China; Yibin Institute of Industrial Technology, Sichuan University Yibin Park, Yibin, Sichuan 644000, PR China.
Abstract:
Exposure of plastic cups/bottles to high temperature and sunlight results in the release of microplastics (MPs), raising significant health and environmental concerns. This study established a novel, quantitative detection framework of MPs from bottled water with polyethylene terephthalate (PET) packaging stored under in-vehicle thermal and sunlight stress. Leveraging ethylene glycol-derived carbon quantum dots (EG-CQDs) as fluorescent probes, the study addressed limitations in traditional MPs detection by achieving high sensitivity (LOD: 0.15 ppm), operational simplicity, and compatibility with ionic matrices. Our findings confirmed that EG-CQDs exhibit size-independent stability and sensitivity for PET detection, with fluorescence intensity correlating linearly (R2 >0.9) across two concentration ranges: 0-0.5 ppm and 0.5-50 ppm. By combining controlled vehicle exposure simulations with optical, chemical, and morphological analyses, this study revealed that prolonged sunlight and heat accelerated PET degradation, producing up to 10.03 ppm MPs within 28 days. Findings provide mechanistic insight into CQDs-PET interactions, validate the dual role of photothermal degradation, and contextualize environmental risks of bottled water misuse in transport scenarios.
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