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April 30, 2026Water Practice & Technology0 citationsOpen Access

Analytical methods for identifying microplastics in environment: a critical review

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MSMd. Shakilur Zaman ShakilMMM. G. Mostafa

Key Points

  • The review aims to summarize analytical methods for identifying microplastics in environmental samples.
  • Comprehensive review of data from journals, books, and reports published in the last 22 years.
  • Identification methods include digestion, density separation, filtration, and spectroscopic analysis.
  • Vacuum filtration and fluorescence microscopy used for visual analysis and identification.
  • Microplastics are pervasive environmental pollutants found in water, soil, air, and organisms.
  • Common methods include using H2O2 for digestion and Raman spectroscopy for polymer identification.

Abstract

ABSTRACT The graphical abstract illustrates the process of microplastic analysis, including digestion, density separation, vacuum filtration, visual analysis, and spectroscopic analysis. Microplastics (MPs) are widespread environmental pollutants found in water, soil, air, and living organisms. This review aimed to represent the analytical methods for identifying MPs in the environment. The study considered available data from journals, books, and reports published within the last 22 years on the topic. Their analysis involves several key steps: sample collection, preparation, density separation, digestion, filtration, identification, and quantification. Common floating agents for density separation include NaCl, NaI, ZnCl2, and Na6H2W12O40, with NaCl favored for its cost-effectiveness and low environmental impact. For organic matter digestion, 30% H2O2 is widely used, while 1 M NaOH is effective and safer for digesting fish tissues. Vacuum filtration using glass fiber or cellulose nitrate filters captures MPs, which are then analyzed under a stereomicroscope to assess color, shape, size, and abundance. Nile Red staining enhances visibility under fluorescence microscopy. Polymer identification is performed using Fourier transform infrared spectroscopy or Raman spectroscopy, with Raman being more sensitive to particles 10 μm. Scanning electron microscopy–energy dispersive X-ray spectroscopy helps analyze surface morphology and elemental composition. Standardizing MP analysis methods is crucial for ensuring consistent, comparable data across global studies.

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Cite This Study

Shakil et al. (2026) studied this question.

synapsesocial.com/papers/69f2a42a8c0f03fd67763358https://doi.org/10.2166/wpt.2026.254
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Advanced analytical techniques for assessing and detecting microplastic pollution in water and wastewater systems2024 · 26 citations
  2. 2Separation and Detection of Microplastics in Human Exposure Pathways: Challenges, Analytical Techniques, and Emerging Solutions2025
  3. 3From Microplastics to Nanoplastics: Critical Advances and Persistent Challenges in Detection and Quantification2026
  4. 4[Research Progress on the Extraction, Qualitative, and Quantitative Methods of Microplastics in Biological Samples].2025
  5. 5Extraction Methods of Microplastics in Environmental Matrices: A Comparative Review2025