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The hidden burden of microplastics in soils: sources, impacts, and sustainable solutions – a review

Original title: The hidden burden of microplastics in soils: sources, impacts, and sustainable solutions – a review

Journal of Chemical Technology & Biotechnology 2026
Rafiqi Mohammed Abdul Rahman, Mustaffa Mohamed Roshan Abu Firnass, Gajendiren Manimaran, Selvaraj Ahash, Sundararaj Kaviya Sri, Natchimuthu Karmegam, Woong Kim, Muthusamy Govarthanan

Summary

This review pulls together existing research on how tiny plastic particles (microplastics) are building up in farm soils—coming from sources like plastic mulch, wastewater, and sewage sludge used as fertilizer. These particles can harm soil microbes and disrupt nutrient cycles that crops depend on, which matters because it ties directly to our food supply and the plastic content of the food we eat. The authors note that scientists still need better tools to detect microplastics and stronger policies to clean up and prevent this pollution before it becomes a bigger problem for food security.

Study Type Environmental

Abstract Microplastic (MP) contamination has emerged as a major environmental concern, with terrestrial ecosystems increasingly recognized as the primary long‐term sink for plastic debris. Agricultural activities, wastewater irrigation, biosolid application, atmospheric deposition, and the degradation of plastic mulching materials contribute substantially to MP accumulation in soils, where they persist and undergo continuous transformation. This review critically synthesizes current knowledge on the sources, occurrence, transport pathways, environmental fate, ecological impacts, detection technologies, remediation strategies, and policy interventions related to soil MPs. Particular emphasis is placed on the mechanisms governing vertical migration under different soil textures, interactions with soil physicochemical properties, nutrient cycling, microbial diversity, and ecosystem functioning. Recent advances in analytical techniques, including Fourier‐transform infrared spectroscopy (FTIR), Raman spectroscopy, laser direct infrared spectroscopy (LDIR), optical photothermal infrared spectroscopy (O‐PTIR), hyperspectral imaging, pyrolysis‐gas chromatography/mass spectrometry (Py‐GC/MS), and artificial intelligence‐assisted spectral analysis, are critically evaluated with respect to their applicability to complex soil matrices. Emerging remediation approaches, including microbial degradation, advanced oxidation processes, catalytic oxidation, biochar‐assisted treatments, and biodegradable alternatives, are also discussed together with their limitations and future prospects. The review highlights significant knowledge gaps, particularly regarding long‐term field‐scale investigations, standardized analytical methodologies, environmentally realistic exposure scenarios, and integrated remediation strategies. Strengthening interdisciplinary research, harmonized monitoring frameworks, sustainable agricultural practices, and evidence‐based environmental policies will be essential for mitigating soil MP pollution and safeguarding soil health, ecosystem services, and global food security. © 2026 Society of Chemical Industry (SCI).

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