Recent Studies on Chemical Degradation of Microplastics: A Review

Authors

  • Madhu Dubey Swarnkar Assistant Professor ( Chemistry) Govt MH College of HSc & Sci for women ( Autonomous) Jabalpur, MP

DOI:

https://doi.org/10.69968/ijisem.2026v5i3218-225

Keywords:

Microplastics, Chemical degradation, Advanced oxidation processes, Photocatalysis, Mineralisation

Abstract

The microplastic (MP) is a persistent contaminant that is commonly found in water, soil, sediments and air, and is less than 5 mm in size. This review aims to present the summary of recent studies concerning their chemical degradation, which include oxidative, photochemical, hydrolysis, advanced oxidation processes and free-radical. It also discusses the factors that determine the degradation efficiency: polymer composition, pH, crystallinity, catalysts, UV intensity and dose of oxidants. Recent technologies such as Fenton and photo-Fenton oxidation, ozonation, hydrogen peroxide treatment, persulfate activation, photocatalysis and electrochemical oxidation are discussed and compared on the basis of species generated, applicable polymers, advantages, and disadvantages. These methods can speed up the chain scission and partial mineralisation, but some challenges are still left unsolved: incomplete degradation, toxicity of intermediates, recovery of catalysts, energy demand and scale-up. The use of recyclable catalysts, real-environment validation, standardised assessment methods, and integration with biological treatment to realize sustainable microplastic remediation at practical scales with minimal secondary pollution should be emphasised in future research.

References

[1] Y. S. Muniv and S. P. Supanekar, “Microplastics: Classification, Sources, Characterisation, Fate, and Control Measures,” Uttar Pradesh J. Zool., vol. 45, no. 5, pp. 136–144, 2024, doi: 10.56557/UPJOZ/2024/v45i53939.

[2] J. Song, C. Wang, and G. Li, “Defining Primary and Secondary Microplastics: A Connotation Analysis,” ACS ES&T, 2024, doi: 10.1021/acsestwater.4c00316.

[3] T. Luo, Y. Hu, M. Zhang, P. Jia, and Y. Zhou, “Recent advances of sustainable and recyclable polymer materials from renewable resources,” Resour. Chem. Mater., vol. 4, no. 2, p. 100085, 2025, doi: 10.1016/j.recm.2024.10.004.

[4] M. A. Pérez-méndez, G. S. Fraga-cruz, S. Domínguez-garcía, M. L. Pérez-méndez, C. I. Bocanegra-díaz, and F. Nápoles-rivera, “Microplastic Pollution in Soil and Water and the Potential Effects on Human Health: A Review,” Processes, vol. 13, no. 502, 2025.

[5] M. Sutradhar, “A review of microplastics pollution and its remediation methods: Current scenario and future aspects Manish,” Arch. Agric. Environ. Sci., vol. 7, no. 2, pp. 288–293, 2022.

[6] K. A. Sanoja-Lopez, C. Suarez, O. Navia-Pesantes, K. A. Quiroz-Suarez, and R. Luque, “Advanced strategies for the detection, Removal, and degradation of microplastics: Bridging science and sustainable technologies,” Results Eng., vol. 29, 2026, doi: 10.1016/j.rineng.2026.109743.

[7] N. Ibrahim, A. M. N. A. A. Rahman, M. D. Shafiq, Z. Lockman, M. Jaafar, and Y. Kameda, “Microplastic Pollution: Sources, Degradation Mechanisms, Analytical Advances, and Mitigation Strategies for Environmental Sustainability,” Rev. Environ. Contam. Toxicol., vol. 263, no. 27, 2025.

[8] V. Pathak, “Photocatalytic Degradation of Emerging Contaminants in Water,” Int. J. Innov. Sci. Eng. Manag., vol. 3, no. 3, 2024, doi: 10.69968/ijisem.2024v3i3101-106.

[9] W. Yuan, Y. Hibi, R. Tamura, M. Sumita, Y. Nakamura, and M. Naito, “Revealing factors influencing polymer degradation with rank-based machine learning,” Patterns, vol. 4, no. 12, p. 100846, 2023, doi: 10.1016/j.patter.2023.100846.

[10] N. A. Sacco, F. M. Zoppas, A. Devard, M. del P. G. Muñoz, G. García, and F. A. Marchesini, “Recent Advances in Microplastics Removal from Water with Special Attention Given to Photocatalytic Degradation: Review of Scientific Research,” Microplastics, pp. 278–303, 2023.

[11] D. S. K. Nathsharma, “A Comprehensive Review on Green Synthesis of ZnO Nano Particles and its Applications in Photocatalysis,” Int. J. Innov. Sci. Eng. Manag., vol. 4, no. 2, 2025, doi: 10.69968/ijisem.2025v4i2359-367.

[12] H. Sharma, D. Sharma, R. Sehgal, and R. Gupta, “Challenges and Strategies for Degradation of Microplastics in Environment,” 2024, pp. 101–133. doi: 10.1201/9781003335757-5.

[13] C. Wechselberger, T. Lang, S. Popadi, and A. Lipp, “Environmental Impacts of Plastic Degradation: Toxic Byproducts, Environmental Risks, and Eco-Friendly Alternatives,” Microplastics, vol. 5, no. 40, pp. 1–22, 2026.

[14] M. A. A. Amparán, A. Palacios, G. M. Flores, and P. M. C. Olivera, “Review and future outlook for the removal of microplastics by physical, biological and chemical methods in water bodies and wastewaters,” Env. Monit Assess, vol. 197, no. 429, 2025, doi: 10.1007/s10661-025-13883-0.

[15] M. A. Hossen et al., “Recent advances in degradation of micro/nanoplastics by sustainable photo-driven processes: A comprehensive review,” Next Sustain., vol. 7, p. 100248, 2026, doi: 10.1016/j.nxsust.2026.100248.

[16] K. Kamalasekaran and A. K. Sundramoorthy, “A review on microplastics: sources, environmental fate, degradation pathways, and analytical identification methods,” RSC Adv., vol. 16, pp. 13851–13874, 2026, doi: 10.1039/D5RA09062H.

[17] P. Yadav, A. Kumar, K. Ram, A. Kumar, R. K. Gupta, and L. Dufoss, “Microbial degradation of microplastics: Effectiveness, challenges, and sustainable solutions,” Curr. Res. Microb. Sci., vol. 9, 2025, doi: 10.1016/j.crmicr.2025.100495.

[18] S. Yousafzai et al., “Detection and degradation of microplastics in the environment: a review,” Environ. Sci. Adv., vol. 4, pp. 1142–1165, 2025, doi: 10.1039/D5VA00064E.

[19] M. Zandieh et al., “Catalytic and biocatalytic degradation ofmicroplastics,” Exploration, vol. 4, 2024, doi: 10.1002/EXP.20230018.

[20] P. R. Sutkar, R. D. Gadewar, and V. P. Dhulap, “Recent trends in degradation of microplastics in the environment: A state-of-the-art review,” J. Hazard. Mater. Adv., vol. 11, p. 100343, 2023, doi: 10.1016/j.hazadv.2023.100343.

[21] E. M. Kinyua, G. W. A. Nyakairu, E. Tebandeke, and O. N. Odume, “Photocatalytic Degradation of Microplastics: Parameters Affecting Degradation,” Adv. Environ. Eng. Res. Rev., 2023, doi: 10.21926/aeer.2303039.

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Published

31-07-2026

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Articles

How to Cite

[1]
Madhu Dubey Swarnkar 2026. Recent Studies on Chemical Degradation of Microplastics: A Review. International Journal of Innovations in Science, Engineering And Management. 5, 3 (Jul. 2026), 218–225. DOI:https://doi.org/10.69968/ijisem.2026v5i3218-225.