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Promoted photodegradation of cadmium pigment-embedded microplastics : Role of reactive microenvironment

DOI zum Zitieren der Version auf EPub Bayreuth: https://doi.org/10.15495/EPub_UBT_00009423
URN to cite this document: urn:nbn:de:bvb:703-epub-9423-4

Title data

Liu, Huiting ; Xu, Shijia ; He, Kexin ; Oberhofer, Harald ; Yao, Yuxuan ; Qu, Xiaolei:
Promoted photodegradation of cadmium pigment-embedded microplastics : Role of reactive microenvironment.
In: Journal of Hazardous Materials. Vol. 504 (2026) . - 141297.
ISSN 0304-3894
DOI der Verlagsversion: https://doi.org/10.1016/j.jhazmat.2026.141297

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Abstract

The environmental fate of microplastics, largely derived from plastic fragmentation, is strongly influenced by their photodegradation behavior. While polymer degradation has been widely studied, less attention has been paid to the role of additives, particularly pigments used in colored plastics, in modulating these processes. This study investigates microplastics colored with cadmium pigments in three representative host polymers—polystyrene (PS), polypropylene (PP), and polyethylene (PE). The reactive microenvironment generated by the pigment includes electrons, holes, and protons through photo-induced reactions. Under this environment, PS was the most affected and exhibited accelerated degradation, attributed to proton attack at benzylic positions facilitated by its conjugated aromatic structure. Furthermore, we propose an additional pathway, where the photo-induced electron reduces the proton-induced carbocation to a radical, which will subsequently undergo oxidation reactions. Photodegradation, promoted by the pigment, correlates with its photodissociation and the concurrent release of Cd²⁺. This effect is due to surface morphological changes that increase pigment exposure to irradiation. These findings demonstrate that pigment–polymer interactions significantly reshape degradation pathways. Notably, the accelerated degradation could increase the release of hazardous additives into water bodies, thus amplifying the environmental risks and revealing deficiencies in existing risk management strategies associated with microplastics.

Further data

Item Type: Article in a journal
Keywords: Microplastics; Photodegradation; Cadmium pigment; Acid catalysis; Plastic additives
DDC Subjects: 500 Science > 530 Physics
500 Science > 540 Chemistry
600 Technology, medicine, applied sciences > 620 Engineering
Institutions of the University: Faculties > Faculty of Mathematics, Physics und Computer Science > Department of Physics > Chair Theoretical Physics VII - Computational Materials Design (BayBatt) > Chair Theoretical Physics VII - Computational Materials Design (BayBatt) - Univ.-Prof. Dr. Harald Oberhofer
Research Institutions > Central research institutes > Bayerisches Zentrum für Batterietechnik - BayBatt
Faculties
Faculties > Faculty of Mathematics, Physics und Computer Science
Faculties > Faculty of Mathematics, Physics und Computer Science > Department of Physics
Faculties > Faculty of Mathematics, Physics und Computer Science > Department of Physics > Chair Theoretical Physics VII - Computational Materials Design (BayBatt)
Research Institutions
Research Institutions > Central research institutes
Language: English
Originates at UBT: Yes
URN: urn:nbn:de:bvb:703-epub-9423-4
Date Deposited: 16 Jun 2026 07:42
Last Modified: 16 Jun 2026 07:43
URI: https://epub.uni-bayreuth.de/id/eprint/9423

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