Microplastics in dairy products: occurrence, characterization, contamination sources, detection methods, and future challenges

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Multidisciplinary Digital Publishing Institute (MDPI)

Erişim Hakkı

info:eu-repo/semantics/openAccess

Özet

In this study, data from 17 studies reporting the presence of microplastics in milk and dairy products in the literature were examined with a product-based systematic approach. In addition, geographical comparisons were made between different countries. In milk and dairy products, the concentration of microplastics has been reported to exhibit a broad range, extending from non-detectable levels to as high as 10,040 MPs per kilogram, contingent upon the specific product types. Milk powder (especially baby milk powder) stands out as the riskiest product group in terms of microplastic content. Although the sizes and colors of the detected microplastics vary significantly, the fiber form is generally predominant. While polyethylene, polypropylene, polyamide and polyester are among the polymers frequently detected, high-temperature-resistant industrial polymers such as polytetrafluoroethylene, polysulfone, polyurethane were also encountered. In addition, the presence of some polymers (such polyvinyl chloride, polyurethane) that are toxicologically risky for human health was reported in the studies. In addition, the study evaluated the chemical, enzymatic and physical methods used for the separation and identification of MPs; the advantages and limitations of FT-IR, Raman and other analysis techniques were revealed. This study reveals that MP contamination in milk and dairy products is a multidimensional problem. The findings show that milk and dairy products are highly susceptible to plastic contamination at every stage of production.

Açıklama

Anahtar Kelimeler

Cheese, Dairy products, FT-IR, Microplastic, Milk, Milk powder, Polymer, Raman, Yoghurt

Kaynak

Applied Sciences (Switzerland)

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Cilt

15

Sayı

17

Künye

Gürmeriç, H. E., & Basaran, B. (2025). Microplastics in Dairy Products: Occurrence, Characterization, Contamination Sources, Detection Methods, and Future Challenges. Applied Sciences, 15(17), 9411. https://doi.org/10.3390/app15179411

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