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April 12, 2026Discover Chemistry.0 citationsOpen Access

Potential of micro glass/nano glass/fibreglass as pollutants species in environmental matrices

ADA. A. DaniyanSNS. K. O. NtwampeMAM. O. Ajiboye

Key Points

  • The review aims to consolidate knowledge about glass-derived particulates as environmental pollutants and identify knowledge gaps.
  • Review of literature on glass-derived particulates in environmental samples.
  • Evaluation of analytical techniques including microscopy and spectroscopy.
  • Assessment of physicochemical behaviour and toxicological implications.
  • Glass-derived particulates are prevalent in various environmental matrices.
  • Analytical methods for detection are inconsistent and often insufficient on their own.
  • Significant knowledge gaps exist in standardization and long-term toxicological data.

Abstract

Glass‑derived particulates, specifically micro-glass, nano-glass, and fibreglass fragments, are increasingly recognised as environmental co‑pollutants alongside other pollutants, such as microplastics, due to their widespread industrial use. Despite their growing prevalence in air, water, soil, and waste-stream samples, these particles remain significantly understudied relative to microplastics and engineered nanomaterials. Their detection is particularly challenging because their morphology and chemistry closely resemble those of naturally occurring silicates, leading to analytical uncertainty and inconsistent detection. This review consolidates current knowledge on the environmental occurrence, physicochemical behaviour, toxicological implications, and co‑pollutant interactions of glass‑based particulates. Focus is given to evaluating analytical methods, i.e., microscopy, spectroscopy, elemental analyses, and, among others, to assess their strengths, limitations, and suitability for detecting diverse particle types across complex environmental matrices. A general observation is that no single technique is sufficient for reliable quantification, and that an integrated, multifaceted approach is essential for accurate characterisation. Overall, the review identifies critical knowledge gaps, including the absence of standardised analytical protocols, limited environmental monitoring data, and minimal long-term toxicological studies. These gaps underscore the urgent need for harmonised methods and interdisciplinary research to enable risk assessment that supports the development of regulatory frameworks to address glass‑based particulate pollution.

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Cite This Study

Daniyan et al. (2026) studied this question.

synapsesocial.com/papers/69db37f94fe01fead37c61fchttps://doi.org/10.1007/s44371-026-00638-0
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