Microbeads in personal care products sold in Pakistan: extraction, quantification, characterization, and buoyancy

Shumaila Hisam, Mehwish Taneez1, Muhammad Zahid Sagheer2

  • 1Sulaiman Bin Abdullah Aba Al-Khail-Center for Interdisciplinary Research in Basic Sciences (SA-CIRBS), International Islamic University, Islamabad, Pakistan. mehtaneez@gmail.com.

Insights

Plastic microbeads in personal care products (PCPs) are a significant source of microplastic pollution. This study analyzed PCPs, finding microbeads composed mainly of ethyl-vinyl acetate, highlighting the need for regulation and public awareness regarding their environmental impact.

Area of Science:

  • Environmental Science
  • Analytical Chemistry
  • Materials Science

Background:

  • Microbeads in personal care products (PCPs) are a primary source of microplastic pollution.
  • Their release into aquatic environments poses risks of ingestion by aquatic organisms.

Purpose of the Study:

  • To quantify microbead content, size, polymer type, and buoyancy in various PCPs.
  • To assess the environmental implications of microbeads found in consumer products.

Main Methods:

  • Analysis of twelve PCPs (5 face washes, 7 scrubs) for microbead quantification.
  • Characterization of microbead size, polymer composition (FTIR spectroscopy), and buoyant behavior in freshwater and seawater.

Main Results:

  • Microbead concentrations varied significantly across products, with some scrubs containing high levels (e.g., Cool and Cool at 57.08±14.15 mg/g).
  • Microbead sizes ranged from 3.14 to 747 μm, predominantly exhibiting negative buoyancy.
  • FTIR analysis identified ethyl-vinyl acetate as the main polymer (66.66%), followed by high-density polyethylene, polyethylene terephthalate, and nitrile.

Conclusions:

  • Personal care products are a significant reservoir of microplastics, contributing to environmental pollution.
  • The study underscores the urgent need for regulatory measures on microbead usage in PCPs.
  • Increased public awareness is crucial to mitigate the discharge of these persistent microplastic pollutants into ecosystems.

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