| [1] |
Alva PP, Thomas TA. 2025. Microplastics: a global threat to life and living. |
| [2] |
Li J, Zhao Y. 2025. Bioeffects of nanoplastics: DNA damage and mechanism. |
| [3] |
Du H, Peng C, Li Y, Shi X, Liu C, et al. 2025. Absorption of microplastics by terrestrial plants and their ecological risk. |
| [4] |
Zhao B, Richardson RE, You F. 2024. Microplastics monitoring in freshwater systems: a review of global efforts, knowledge gaps, and research priorities. |
| [5] |
Feng F, Ye W, Xiang S, Fan X, Liu X, et al. 2025. Factors influencing the migration and distribution of microplastics in the environment. |
| [6] |
Chouchene K, da Costa JP, Chamkha M, Ksibi M, Sayadi S. 2023. Effects of microplastics' physical and chemical properties on aquatic organisms: state-of-the-art and future research trends. |
| [7] |
Pal D, Prabhakar R, Barua VB, Zekker I, Burlakovs J, et al. 2025. Microplastics in aquatic systems: a comprehensive review of its distribution, environmental interactions, and health risks. |
| [8] |
Sun Y, Zhang Q, Deng Q, Bai N, Chen H. 2026. The damaging effects of polyethylene microplastics exposure on juvenile carp and the ameliorative role of Opuntia Milpa alta extract. |
| [9] |
Koelmans AA, Bakir A, Burton GA, Janssen CR. 2016. Microplastic as a vector for chemicals in the aquatic environment: critical review and model-supported reinterpretation of empirical studies. |
| [10] |
Sun Y, Ji J, Tao J, Yang Y, Wu D, et al. 2023. Current advances in interactions between microplastics and dissolved organic matters in aquatic and terrestrial ecosystems. |
| [11] |
Tan MM, Feng LJ, Bian SZ, Duan JL, Li XH, et al. 2024. Interaction of dissolved organic matters and microplastics regulates the transport of microplastics in saturated porous media. |
| [12] |
Müller ND, Kirtane A, Schefer RB, Mitrano DM. 2024. eDNA adsorption onto microplastics: impacts of water chemistry and polymer physiochemical properties. |
| [13] |
He L, Zhuang WE, Hur J, Yang L. 2026. Interactions of microplastics, dissolved organic matter, and coexisting pollutants: mechanisms, environmental implications, and knowledge gaps. |
| [14] |
Zhang J, Zhan S, Zhong LB, Wang X, Qiu Z, et al. 2023. Adsorption of typical natural organic matter on microplastics in aqueous solution: kinetics, isotherm, influence factors and mechanism. |
| [15] |
Abdurahman A, Cui K, Wu J, Li S, Gao R, et al. 2020. Adsorption of dissolved organic matter (DOM) on polystyrene microplastics in aquatic environments: kinetic, isotherm and site energy distribution analysis. |
| [16] |
Wang X, Wang X, Zhu W, Ding L, Liang X, et al. 2024. Insight into interactions between microplastics and fulvic acid: mechanisms affected by microplastics type. |
| [17] |
Schefer RB, Armanious A, Mitrano DM. 2023. Eco-corona formation on plastics: adsorption of dissolved organic matter to pristine and photochemically weathered polymer surfaces. |
| [18] |
Shahi NK, Kim JY, Dockko S. 2023. Process analysis of microplastic aging during the photochemical oxidation process and its effect on the adsorption behavior of dissolved organic matter. |
| [19] |
Song Y, Zhao J, Zheng L, Zhu W, Xue X, et al. 2022. Adsorption behaviors and mechanisms of humic acid on virgin and aging microplastics. |
| [20] |
Gao R, Cui K, Liang W, Wang H, Wei S, et al. 2022. Molecular weight-dependent adsorption heterogeneities of humic acid on microplastics in aquatic environments: further insights from fluorescence spectra combined with two-dimensional correlation spectroscopy and site energy distribution analysis. |
| [21] |
Li J, Ma S, Li X, Wei W. 2022. Adsorption of tannic acid and macromolecular humic/fulvic acid onto polystyrene microplastics: a comparison study. |
| [22] |
Yang H, Chen Z, Kong L, Xing H, Yang Q, et al. 2025. A review of eco-corona formation on micro/nanoplastics and its effects on stability, bioavailability, and toxicity. |
| [23] |
Yousif E, Haddad R. 2013. Photodegradation and photostabilization of polymers, especially polystyrene: review. |
| [24] |
Xu Y, Ou Q, van der Hoek JP, Liu G, Lompe KM. 2024. Photo-oxidation of micro- and nanoplastics: physical, chemical, and biological effects in environments. |
| [25] |
Hu J, Lim FY, Hu J. 2023. Ozonation facilitates the aging and mineralization of polyethylene microplastics from water: behavior, mechanisms, and pathways. |
| [26] |
McColley CJ, Nason JA. 2024. Eco-corona formation on photooxidized plastics exposed to mixed organic matter. |
| [27] |
Ritchie JD, Perdue EM. 2003. Proton-binding study of standard and reference fulvic acids, humic acids, and natural organic matter. |
| [28] |
Sun Y, Yuan J, Zhou T, Zhao Y, Yu F, et al. 2020. Laboratory simulation of microplastics weathering and its adsorption behaviors in an aqueous environment: a systematic review. |
| [29] |
Cao T, Zhao M, Zhang T, Chen W. 2025. Weathering pathways differentially affect colloidal stability of nanoplastics. |
| [30] |
Gewert B, Plassmann M, Sandblom O, MacLeod M. 2018. Identification of chain scission products released to water by plastic exposed to ultraviolet light. |
| [31] |
Kowalczuk P, Durako MJ, Young H, Kahn AE, Cooper WJ, et al. 2009. Characterization of dissolved organic matter fluorescence in the South Atlantic Bight with use of PARAFAC model: interannual variability. |
| [32] |
Nguyen HV, Lee MH, Hur J, Schlautman MA. 2013. Variations in spectroscopic characteristics and disinfection byproduct formation potentials of dissolved organic matter for two contrasting storm events. |
| [33] |
Stedmon CA, Bro R. 2008. Characterizing dissolved organic matter fluorescence with parallel factor analysis: a tutorial. |
| [34] |
Liu X, Gharasoo M, Shi Y, Sigmund G, Hüffer T, et al. 2020. Key physicochemical properties dictating gastrointestinal bioaccessibility of microplastics-associated organic xenobiotics: insights from a deep learning approach. |
| [35] |
Navaneetha Pandiyaraj K, Selvarajan V, Deshmukh RR, Gao C. 2008. Adhesive properties of polypropylene (PP) and polyethylene terephthalate (PET) film surfaces treated by DC glow discharge plasma. |
| [36] |
Bîrleanu E, Mihăilă I, Topală I, Borcia C, Borcia G. 2023. Adhesion properties and stability of non-polar polymers treated by air atmospheric-pressure plasma. |
| [37] |
Tomaszewska J, Sterzyński T, Woźniak-Braszak A, Banaszak M. 2021. Review of recent developments of glass transition in PVC nanocomposites. |
| [38] |
Gradinaru LM, Vlad S, Spiridon I, Petrescu M. 2019. Durability of polyurethane membranes in artificial weathering environment. |
| [39] |
Pan Y, Yang M, Han S, Gao W, Dan Y. 2012. Study on the changing regularity of structure and properties of PC aged outdoor in western areas of China. |
| [40] |
Thorn KA, Folan DW, MacCarthy P. 1989. Characterization of the International Humic Substances Society standard and reference fulvic and humic acids by solution state carbon-13 (13C) and hydrogen-1 (1H) nuclear magnetic resonance spectrometry. Water-Resources Investigations Report 89-4196. US Dept. of the Interior, US Geological Survey: Books and Open-File Reports. doi: 10.3133/wri894196 |
| [41] |
Wu QY, Zhou TH, Du Y, Ye B, Wang WL, et al. 2020. Characterizing the molecular weight distribution of dissolved organic matter by measuring the contents of electron-donating moieties, UV absorbance, and fluorescence intensity. |
| [42] |
Ding L, Luo Y, Yu X, Ouyang Z, Liu P, et al. 2022. Insight into interactions of polystyrene microplastics with different types and compositions of dissolved organic matter. |
| [43] |
Ishii SKL, Boyer TH. 2012. Behavior of reoccurring PARAFAC components in fluorescent dissolved organic matter in natural and engineered systems: a critical review. |
| [44] |
Truong HB, Huy BT, Ly QV, Lee YI, Hur J. 2019. Visible light-activated degradation of natural organic matter (NOM) using zinc-bismuth oxides-graphitic carbon nitride (ZBO-CN) photocatalyst: mechanistic insights from EEM-PARAFAC. |
| [45] |
Tan Y, Kilduff JE. 2007. Factors affecting selectivity during dissolved organic matter removal by anion-exchange resins. |
| [46] |
Hao L, Ma H, Xing B. 2024. Surface characteristics and adsorption properties of polypropylene microplastics by ultraviolet irradiation and natural aging. |