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Thin film nanocomposite nanofiltration hollow fiber membrane fabrication and characterization by electrochemical impedance spectroscopy

Publication ,  Journal Article
Urper-Bayram, GM; Sayinli, B; Bossa, N; Ngaboyamahina, E; Sengur-Tasdemir, R; Ates-Genceli, E; Wiesner, M; Koyuncu, I
Published in: Polymer Bulletin
July 1, 2020

Nano-TiO2 nanoparticles were incorporated into thin film nanocomposites (TFN) formed on hollow fiber support membranes composed of a blend of polysulfone and multi-walled carbon nanotubes. Three different TiO2 nanoparticles (0.01%, 0.05% and 0.2% w/v) in the thin film composite were investigated. Formation of the nanocomposite polyamide layer was confirmed by the results of FTIR and scanning electron microscopy. Double-layer capacitance values obtained from electrochemical impedance spectroscopy results showed that effective surface area of the membranes was enhance by the incorporation of nano-TiO2. Nanofiltration membrane performance was examined using solutions of MgSO4 and NaCl under cross-flow system with hollow fiber nanofiltration modules. Fouling of the membrane was evaluated with solutions of humic and tannic acids. The permeate flux of TFN 0.05 composite membranes was improved nearly 12 times with the incorporation of TiO2 with rejections of MgSO4 and NaCl salts of 22% and 5%, respectively. The rejections of the NF membranes for HA and TA were 84% and 74%, respectively, with improved antifouling properties compared to the thin film composite membrane without TiO2, the latter being attributed to increased hydrophilicity of membrane surface.

Duke Scholars

Published In

Polymer Bulletin

DOI

EISSN

1436-2449

ISSN

0170-0839

Publication Date

July 1, 2020

Volume

77

Issue

7

Start / End Page

3411 / 3427

Related Subject Headings

  • Polymers
  • 3403 Macromolecular and materials chemistry
  • 0912 Materials Engineering
  • 0303 Macromolecular and Materials Chemistry
 

Citation

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Urper-Bayram, G. M., Sayinli, B., Bossa, N., Ngaboyamahina, E., Sengur-Tasdemir, R., Ates-Genceli, E., … Koyuncu, I. (2020). Thin film nanocomposite nanofiltration hollow fiber membrane fabrication and characterization by electrochemical impedance spectroscopy. Polymer Bulletin, 77(7), 3411–3427. https://doi.org/10.1007/s00289-019-02905-w
Urper-Bayram, G. M., B. Sayinli, N. Bossa, E. Ngaboyamahina, R. Sengur-Tasdemir, E. Ates-Genceli, M. Wiesner, and I. Koyuncu. “Thin film nanocomposite nanofiltration hollow fiber membrane fabrication and characterization by electrochemical impedance spectroscopy.” Polymer Bulletin 77, no. 7 (July 1, 2020): 3411–27. https://doi.org/10.1007/s00289-019-02905-w.
Urper-Bayram GM, Sayinli B, Bossa N, Ngaboyamahina E, Sengur-Tasdemir R, Ates-Genceli E, et al. Thin film nanocomposite nanofiltration hollow fiber membrane fabrication and characterization by electrochemical impedance spectroscopy. Polymer Bulletin. 2020 Jul 1;77(7):3411–27.
Urper-Bayram, G. M., et al. “Thin film nanocomposite nanofiltration hollow fiber membrane fabrication and characterization by electrochemical impedance spectroscopy.” Polymer Bulletin, vol. 77, no. 7, July 2020, pp. 3411–27. Scopus, doi:10.1007/s00289-019-02905-w.
Urper-Bayram GM, Sayinli B, Bossa N, Ngaboyamahina E, Sengur-Tasdemir R, Ates-Genceli E, Wiesner M, Koyuncu I. Thin film nanocomposite nanofiltration hollow fiber membrane fabrication and characterization by electrochemical impedance spectroscopy. Polymer Bulletin. 2020 Jul 1;77(7):3411–3427.
Journal cover image

Published In

Polymer Bulletin

DOI

EISSN

1436-2449

ISSN

0170-0839

Publication Date

July 1, 2020

Volume

77

Issue

7

Start / End Page

3411 / 3427

Related Subject Headings

  • Polymers
  • 3403 Macromolecular and materials chemistry
  • 0912 Materials Engineering
  • 0303 Macromolecular and Materials Chemistry