4.7 Article

Formation of defect-free 6FDA-DAM asymmetric hollow fiber membranes for gas separations

Journal

JOURNAL OF MEMBRANE SCIENCE
Volume 459, Issue -, Pages 223-232

Publisher

ELSEVIER
DOI: 10.1016/j.memsci.2014.02.023

Keywords

Hollow fiber; Defect-free; 6FDA-DAM; Polyimide; Gas separations

Funding

  1. Dow Chemical Company
  2. King Abdullah University of Science and Technology (KAUST)

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This paper reports the formation of defect-free 6FDA-DAM asymmetric hollow fiber membranes. 6FDA-polyimides are of great interest for advanced gas separation membranes, and 6FDA-DAM polyimide is a representative polymer in this family with attractive dense film properties for several potential applications. The work reported here for the 6FDA-DAM polyimide provides insight for the challenging fabrication of defect-free asymmetric hollow fiber membranes for this class of 6FDA-polyimides, which behave rather different from lower free volume polymers. Specifically, the 6FDA based materials show relatively slow phase separation rate in water quench baths, which presents a challenge for fiber spinning. For convenience, we refer to the behavior as more non-solvent resistant in comparison to other lower free volume polymers, since the binodal phase boundary is displaced further from the conventional position near the pure polymer-solvent axis on a ternary phase diagram in conventional polymers like Matrimid (R) and Ultem (R). The addition of lithium nitrate to promote phase separation has a useful impact on 6FDA-DAM asymmetric hollow fiber formation. UT/A-DAM phase diagrams using ethanol and water as non-solvent are reported, and it was found that water is less desirable as a non-solvent dope additive for defect-free fiber spinning. Phase diagrams are also reported for 6FDA-DAM dope formulation with and without the addition of lithium nitrate, and defect-free asymmetric hollow fiber membranes are reported for both cases. The effect of polymer molecular weight on defect-free fiber spinning was also investigated. Gas transport properties and morphology of hollow fibers were characterized. With several thorough case studies, this work provides a systematic guideline for defect free fiber formation from 6FDA-polymers. (C) 2014 Elsevier B.V. All rights reserved

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