Expanding interfacial polymerization for gas separation beyond water purification

  • An, Heseong; 
  • Shin, Min Gyu; 
  • Yoo, Cheol Hun; 
  • Lee, Jung-Hyun; 
  • Lee, Jong Suk
Citations

WEB OF SCIENCE

20
Citations

SCOPUS

19

초록

Extending interfacial polymerization (IP) to gas separation is challenging due to microdefects in dry conditions, despite its attractive and straightforward processability. This study presents a systematic defect-tailoring approach for highly reproducible polyamide (PA) thin film composite (TFC) membranes with precise size-sieving ability. The approach combines highly porous polyethylene support, extended IP reaction time (60 min), and post-thermal/solvent treatments, resulting in a homogeneous PA selective layer. Particularly, isopropanol treatment removes less-reacted amine-rich monomers/oligomers and promotes PA network chain relaxation, enhancing molecular-sieving capability. The resulting PA TFC membrane exhibits a remarkable H-2/CO2 selectivity of 24.8 (+/- 3.1) and an H-2 permeance of 13.6 (+/- 1.8) gas permeation unit, surpassing the polymeric upper bound. It also ensures mechanical stability under high feed pressure and resistance to physical aging, highlighting its robustness. Additionally, universality is validated using different amine monomers. This systematic method provides a valuable framework for producing reproducible PA TFC membranes with exceptional gas separation performance, enabling practical implementation across industrial sectors.

키워드

Polyamide membrane; Thin-film composite; Interfacial polymerization; H-2 separation; REVERSE-OSMOSIS MEMBRANES; HOLLOW-FIBER MEMBRANES; MIXED MATRIX MEMBRANES; INTRINSIC MICROPOROSITY; PERMEATION PROPERTIES; COMPOSITE MEMBRANES; ENERGY; TRANSPORT; HYDROGEN; TECHNOLOGY
제목
Expanding interfacial polymerization for gas separation beyond water purification
저자
An, Heseong; Shin, Min Gyu; Yoo, Cheol Hun; Lee, Jung-Hyun; Lee, Jong Suk
DOI
10.1016/j.memsci.2024.123331
발행일
2025-01
유형
Article
저널명
Journal of Membrane Science
권
713