Skip to main content
Journal cover image

Enhancing water permeability with super-hydrophilic metal-organic frameworks and hydrophobic straight pores

Publication ,  Journal Article
Habibollahzadeh, M; Noh, J; Feng, L; Zhou, HC; Abdel-Wahab, A; Yu, C
Published in: Environmental Science: Water Research and Technology
June 1, 2021

High water flux and salt selectivity have been the most demanding goals for osmosis-based membranes. Osmotic pressure differences across membranes are particularly important in emerging forward osmosis and pressure retarded osmosis applications, and they are strongly dependent on internal concentration polarization (ICP) and water permeability. Here, we have studied the influence of hydrophobic straight pores perpendicular to the membrane plane and super-hydrophilic metal-organic frameworks (MOFs) on membrane performance. We found that straightening the pores in the supporting layer significantly reduced flow resistance. While water can pass through the hydrophobic supporting layer with minimal interaction, the hydrophilic MOF in the active layer effectively attracts water to the membrane, synergistically augmenting water permeability without considerable reduction of salt rejection. The low tortuosity by straightening the pores in the supporting layer clearly shows the benefit of increasing water permeability compared with a membrane whose pores are more tortuous. We also corroborated the effectiveness of MOF inclusion by varying its concentration, showing outstanding performance in water permeability compared with those of conventional and advanced thin-film composite membranes with high salt selectivity. This work presents a promising membrane configuration for further improving osmotic pressure by increasing the water flux. This journal is

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Environmental Science: Water Research and Technology

DOI

EISSN

2053-1419

ISSN

2053-1400

Publication Date

June 1, 2021

Volume

7

Issue

6

Start / End Page

1137 / 1145

Related Subject Headings

  • 0907 Environmental Engineering
  • 0905 Civil Engineering
  • 0399 Other Chemical Sciences
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Habibollahzadeh, M., Noh, J., Feng, L., Zhou, H. C., Abdel-Wahab, A., & Yu, C. (2021). Enhancing water permeability with super-hydrophilic metal-organic frameworks and hydrophobic straight pores. Environmental Science: Water Research and Technology, 7(6), 1137–1145. https://doi.org/10.1039/d1ew00036e
Habibollahzadeh, M., J. Noh, L. Feng, H. C. Zhou, A. Abdel-Wahab, and C. Yu. “Enhancing water permeability with super-hydrophilic metal-organic frameworks and hydrophobic straight pores.” Environmental Science: Water Research and Technology 7, no. 6 (June 1, 2021): 1137–45. https://doi.org/10.1039/d1ew00036e.
Habibollahzadeh M, Noh J, Feng L, Zhou HC, Abdel-Wahab A, Yu C. Enhancing water permeability with super-hydrophilic metal-organic frameworks and hydrophobic straight pores. Environmental Science: Water Research and Technology. 2021 Jun 1;7(6):1137–45.
Habibollahzadeh, M., et al. “Enhancing water permeability with super-hydrophilic metal-organic frameworks and hydrophobic straight pores.” Environmental Science: Water Research and Technology, vol. 7, no. 6, June 2021, pp. 1137–45. Scopus, doi:10.1039/d1ew00036e.
Habibollahzadeh M, Noh J, Feng L, Zhou HC, Abdel-Wahab A, Yu C. Enhancing water permeability with super-hydrophilic metal-organic frameworks and hydrophobic straight pores. Environmental Science: Water Research and Technology. 2021 Jun 1;7(6):1137–1145.
Journal cover image

Published In

Environmental Science: Water Research and Technology

DOI

EISSN

2053-1419

ISSN

2053-1400

Publication Date

June 1, 2021

Volume

7

Issue

6

Start / End Page

1137 / 1145

Related Subject Headings

  • 0907 Environmental Engineering
  • 0905 Civil Engineering
  • 0399 Other Chemical Sciences