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Home » Study for CO2 separation with poly(ethylene oxide terephthalate)-poly(butylene terephthalate) multiblock copolymer membranes: Approaching a greener solvent preparation

Study for CO2 separation with poly(ethylene oxide terephthalate)-poly(butylene terephthalate) multiblock copolymer membranes: Approaching a greener solvent preparation

by INMAweb
09/05/2025
in Highlight
0
Study for CO2 separation with poly(ethylene oxide terephthalate)-poly(butylene terephthalate) multiblock copolymer membranes: Approaching a greener solvent preparation

Study for CO2 separation with poly(ethylene oxide terephthalate)-poly(butylene terephthalate) multiblock copolymer membranes: Approaching a greener solvent preparation

DOI: 10.1016/j.jece.2025.116893

Íñigo Martínez-Visus, Carlos Téllez, Joaquín Coronas

Journal of Environmental Chemical Engineering, Volume 13, Issue 3, June 2025, 116893

Abstract:
Green solvent alternatives for the multiblock copolymer PolyActive™ were selected to test their effectiveness in membrane fabrication for gas separation. Solubility tests were conducted to assess the solvent-polymer compatibility, followed by membrane fabrication using a drop casting-solution method. Ethyl lactate was identified as a potential greener solvent, compared to more commonly used solvents like chloroform and tetrahydrofuran, as it maintained the membrane conformation, thermal and chemical stability, and thermal degradation characteristics as demonstrated by membrane characterization using SEM, FTIR, TGA and DSC. Single gas transport parameters (permeability, diffusivity and solubility) for N2, H2, CH4, He and CO2 were obtained via the time-lag method for the prepared membranes. A temperature dependence study was conducted in the 25–70 °C range, calculating activation energies for gas transport properties and ideal selectivities. Mixed gas measurements were also performed, comparing separation selectivities to those (ideal selectivities) obtained in single gas, indicating a potential competitive adsorption effect between less permeable species, leading to more selective separation in gas mixture. Membranes prepared with different polymer concentrations (1, 2 and 5 wt%) in ethyl lactate achieve a CO2/N2 ideal selectivity of up to 50.4 at a CO2 permeability of 179 Barrer. This enhanced performance was attributed to ethyl lactate higher boiling point, resulting in a more densely packed polymer structure as reflected by the higher crystallinity and lower fractional free volume measured through XRD, DSC and pycnometry analyses.

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Últimas noticias destacadas

  • 7 predoctoral contracts for doctoral training at INMA
  • Participation in ‘public hearing’ on the periodic evaluation of the INMA
  • The INMA researcher Rosa I. Merino has received the Épsilon de Oro award

Últimas publicaciones científicas destacadas

  • Aragonese researchers design nanoparticles that evolve in the tumour environment, generating two different therapies in succession
  • New step towards safer vaccines against bluetongue virus in sheep
  • Multifunctional polyoxomolybdate ionic liquid coatings for mitigating microbiologically influenced corrosion

Últimas novedades

  • Presentation of the Severo Ochoa and María de Maeztu scientific accreditations, organised at the Paraninfo of the University of Zaragoza
  • The INMA researcher Reyes Mallada receives the Award for Best Oral Communication at the XXXVIII National Conference on Chemical Engineering
  • GREENE Consortium advances sustainable magnet technology in Zaragoza

Últimas noticias de divulgación

  • FenanoMENOS celebrates its tenth anniversary awakening scientific vocations in schoolchildren all over Spain
  • Exhibition ‘NanoAsalto Evolution’, on the occasion of the celebration of the Day of Women and Girls in Science
  • The Aragon Nanoscience and Materials Institute celebrates in 2025 the tenth edition of the educational project ‘FEnanoMENOS’

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  • Dr Cristina Momblona
  • Dr. Thomas S. van Zanten
  • Dr Cristina Bran

    Campus San Francisco, Facultad de Ciencias
    C/ Pedro Cerbuna, 12 – 50009 Zaragoza (España)

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    • THE INSTITUTE
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        • Scientific Committee
        • Annual Reports
        • Welcome Handbook
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    • RESEARCH
      • Research Areas
        • Area 1: Materials for energy
          and environment (MEM)
        • Area 2: Materials for biomedicine (BIO)
        • Area 3: Materials for information
          technology (MTI)
        • Area 4: New phenomena at the
          nanoscale (NFN)
        • Area 5: Synthesis, processing and scaling
          of advanced functional materials (SPE)
        • Area 6: Singular experimental
          technologies (TES)
      • Research Groups
      • Scientific publications
      • International projects
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      • Microdevices Engineering Technical Unit (UTIM)
        • Structure UTIM
        • Catalog UTIM
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      • Research career path in Spain
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