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Updated: Nov 23, 2025

Proof-of-Concept for Gas-Entrapping Membranes Derived from Water-Loving SiO2/Si/SiO2 Wafers for Green Desalination
Published on: March 1, 2020
Superhydrophobic Surface-Constructed Membrane Contactor with Hierarchical Lotus-Leaf-Like Interfaces for Efficient
Qingping Xin1, Xu Li1, Hailong Hou2
1State Key Laboratory of Separation Membranes and Membrane Processes, School of Materials Science and Engineering, Tiangong University, Tianjin 300387, China.
A novel polyvinylidene fluoride/polyvinylidene fluoride-silica (PVDF/PVDF-SiO2) membrane contactor was developed using a hydrophobic modification. This enhanced membrane exhibits superhydrophobicity and improved SO2 absorption flux, reducing wetting phenomena.
Area of Science:
- Materials Science
- Chemical Engineering
- Environmental Science
Background:
- Membrane contactors are crucial for gas absorption processes.
- Wetting of membrane pores remains a significant challenge, reducing efficiency.
- Developing robust, hydrophobic membranes is essential for industrial applications.
Purpose of the Study:
- To fabricate a stable, superhydrophobic organic-inorganic mixed matrix membrane contactor.
- To enhance the performance of membrane contactors for gas absorption, specifically SO2 removal.
- To investigate the surface properties and mass transfer characteristics of the modified membrane.
Main Methods:
- Fabrication of PVDF/PVDF-SiO2 mixed matrix membrane via hydrophobic modification.
- Utilizing an in situ spin coating strategy with PVDF particles and SiO2 nanoparticles.
- Surface characterization including pore size analysis and water contact angle measurements.
- Evaluation of SO2 absorption flux using ethanolamine as a liquid absorbent.
Main Results:
- A stable PVDF-SiO2 core-shell layer was constructed on the PVDF substrate.
- The membrane exhibited hierarchical lotus-leaf-like interfaces with a pore size of ~420 nm.
- Achieved excellent hydrophobicity with a water contact angle of ~158°, significantly reducing wetting.
- Demonstrated high SO2 absorption flux (1.26 × 10-3 mol·m-2·s-1) and stable performance.
Conclusions:
- The facile hydrophobic modification method successfully created a superhydrophobic PVDF/PVDF-SiO2 membrane contactor.
- The developed membrane shows great potential for efficient and stable SO2 removal in gas absorption processes.
- The hierarchical interface structure and excellent hydrophobicity effectively prevent membrane wetting.
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