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Investigation of Biodegradable and Non-Biodegradable Solvents for the Fabrication of Polylactic Acid Membranes via Nonsolvent Induced Phase Separation (NIPS) for Air Filtration Applications

  • Ebuka Ogbuoji
  • , Odianosen Ewah
  • , Anastasia Myers
  • , Corey Roberts
  • , Anastasia Shaverina
  • , Isabel C. Escobar

Producción científica: Articlerevisión exhaustiva

2 Citas (Scopus)

Resumen

The substitution of hazardous, environmentally persistent solvents (NMP and DMAc) with more sustainable alternatives (ETAc and GBL) in fabricating flat sheet polyactic acid (PLA) membranes via nonsolvent-induced phase separation for air filtration applications was the focus of this study. The polymer-solvent affinity was first evaluated using Hansen solubility parameters, confirming suitable Relative Energy Difference (RED) values (<1) for all solvent candidates. Dope solutions prepared with biodegradable solvents demonstrated higher viscosity compared to those prepared with environmentally persistent solvents. These biodegradable solvent systems also exhibited slower precipitation rates during membrane formation. This resulted in spongelike cross-sectional morphologies, contrasting with the combined fingerlike and spongelike structures observed in membranes fabricated with environmentally persistent NMP and DMAc. Thermal analysis revealed that membranes fabricated with biodegradable solvents exhibited superior thermal stability with higher glass transition temperatures (Tg = 54.39–55.34 °C) compared to those made with environmentally persistent solvents (Tg = 49.97–50.71 °C). Membranes fabricated with ethyl acetate (ETAc) showed the highest hydrophobicity (contact angle = 115.1 ± 9°), airflow rate (12.7 ± 0.28 LPM at 0.4 bar) and maintained filtration efficiency at values greater than 95% for 0.3 μm aerosols.

Idioma originalEnglish
Número de artículo34
Número de páginas20
PublicaciónSustainable Chemistry
Volumen6
N.º4
DOI
EstadoPublished - dic 2025

Nota bibliográfica

Publisher Copyright:
© 2025 by the authors.

Financiación

This research was funded by the National Science Foundation (NSF) under Cooperative Agreement (grant 577 number 1849213), by the NSF KY EPSCoR Program.

FinanciadoresNúmero del financiador
National Science Foundation Arctic Social Science Program1849213

    ASJC Scopus subject areas

    • Chemistry (miscellaneous)
    • Chemical Engineering (miscellaneous)

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