Microporous Engelhard titanosilicate based polyamide membrane for water vapor dehumidification with excellent chemical resistance to toluene

  • Shirke, Yogita M.; 
  • Cho, Seong-Jun; 
  • Abou-Elanwar, Ali M.; 
  • Lee, Ho Jun; 
  • Kwon, Soon Jin; 
  • ... Lee, Jong Suk; 
  • 외 3명
Citations

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SCOPUS

3

초록

Herein, we describe microporous Engelhard titanosilicate-4 (ETS-4) based polyamide membranes for water vapor dehumidification. ETS-4 particles have unique properties such as good water affinity, excellent chemical resistance, and size selective or molecular sieve properties (effective pore diameter of ETS-4: 3-4 angstrom, kinetic diameter of H2O: 2.65 angstrom, toluene: 5.85 angstrom). ETS-4 particles were fabricated by a hydrothermal method and ground to obtain a smaller size. The ground particles were dispersed in diethylenetriamine (DETA) solution, followed by interfacial polymerization with trimesoyl chloride (TMC), resulting in thin film nanocomposite (TFN) membranes. The addition of ETS-4 particles on the outer surface of polysulfone (PSf) hollow fibers resulted in improvement of the hydrophilicity and surface roughness of the membrane. The ETS(0.2) membrane with 0.2 wt% ETS-4 concentration showed the highest selectivity (413) and the highest water vapor permeance (1544 GPU) at 25 degrees C and relative humidity 60 %. In addition, the toluene removal performance of the best ETS(0.2) membrane was tested and demonstrated a rejection efficiency of ca. 94.7 %. The long term stability of the ETS(0.2) membrane was also measured under toluene gas flow for one month and it was confirmed that the ETS-4 based membrane had excellent chemical stability against toluene.

키워드

Thin film nanocomposite; Engelhard titanosilicate (ETS-4); Water vapor dehumidification; Volatile organic compounds; COMPOSITE MEMBRANES; GAS-TRANSPORT; ETS-4; ADSORPTION; SIZE; CRYSTALLIZATION; REDUCTION; HUMIDITY; POLYMERS; CHARGE
제목
Microporous Engelhard titanosilicate based polyamide membrane for water vapor dehumidification with excellent chemical resistance to toluene
저자
Shirke, Yogita M.; Cho, Seong-Jun; Abou-Elanwar, Ali M.; Lee, Ho Jun; Kwon, Soon Jin; Hong, Seong Uk; Lee, Jong Suk; Park, Hyun-Seol; Jeon, Jae-Deok
DOI
10.1016/j.jece.2023.109533
발행일
2023-04
유형
Article
저널명
Journal of Environmental Chemical Engineering
권
11
호
2