60 Years of the Loeb-Sourirajan Membrane

60 Years of the Loeb-Sourirajan Membrane

Principles, New Materials, Modelling, Characterization, and Applications

An, Liang; Tseng, Hui-Hsin; Lau, Woei Jye; Al-Ghouti, Mohammad A.

Elsevier - Health Sciences Division

04/2022

694

Mole

Inglês

9780323899772

15 a 20 dias

1380

Descrição não disponível.
Section 1: Green/Advanced Polymeric Materials
1. Ionic liquid-based membrane
2. Zwitterionic polymers in biofouling and organic fouling mechanisms
3. Recent advances in 3D printed membranes for water applications
4. Recent advances of TFC membrane fabrication
5. Recent Advances in High-Performance Membrane for Vanadium Redox Flow Battery
6. Membranes for vanadium air flow batteries

Section 2: Advanced Inorganic Materials
7. Carbon membrane for water/gas separation
8. MOF membranes for gas separation and pervaporation
9. Advanced ceramic membrane design for separation and energy application
10. Recent Advances on Lithium-ion Battery Separators with Enhanced Safety
11. Ion exchange membranes for low-temperature polymer exchange membrane fuel cells: current status and future prospective

Section 3: Advanced Hybrid Materials
12. Organosilica membrane for gas separation
13. Hybrid Materials for Membrane Distillation
14. Metal Organic Frameworks for Membrane Fabrication
15. Mixed Matrix Membranes for Ultrafiltration Applications
16. Zwitterion-modified Membranes for Water Reclamation

Section 4: Computational Modelling and Simulation
17. Modeling/simulation on spiral wound membrane
18. Computational Fluid Dynamics (CFD) modelling of reverse osmosis membrane systems
19. Prediction of Membrane Filtration Based on Transport Model
20. Molecular dynamics simulation

Section 5: Characterization Methods
21. Advanced Characterization of Membrane Surface Fouling
22. Analysis of membrane fouling: physical, chemical and biological characterization techniques

Section 6: Emerging & Industrial Applications
23. Current status of ion exchange membranes for ED/RED and MCDI/CapMix
24. Scaling Issue of RO Membrane
25. Ceramic membrane for fuel cell application
26. Membrane for gas separation
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?1D model; 2D model; 3D model; 3D printing; Additive manufacturing; Amorphous structure; Antifouling; Antifouling mechanisms; Antiscalant; Biofouling; Biogas; Brackish groundwater; CFD; CO2 absorbability; CO2 diffusivity; CO2 separation membrane; Capacitive mixing; Carbon membrane; Ceramic fuel cells; Ceramic membranes; Characterization techniques; Clean energy generation; Commercial application; Electrodialysis; Electrolyte; Energy; Energy storage; Fabrication material; Fabrication method; Facilitated-transport membrane; Flow batteries; Flow battery; Flux; Forward osmosis; Fouling; Fouling mechanism; Gas separation; Hollow-fiber membrane; Inorganic fouling; Instrumental characterization; Ion exchange membrane; Ion exchange membranes; Ion gels; Ionic liquids; Lithium-ion batteries; MOF membrane; Mathematical model; Mechanical strength; Membrane; Membrane capacitive deionization; Membrane formation; Membrane foulants; Membrane fouling; Membrane modification; Membranes; Metal; Metal-organic framework; Micromonolithic design; Microscopy; Microstructure characterization; Mineral scaling; Mixed matrix membranes; Modeling; Module; Molecular modeling; Molecular simulation; Monomer; Nanofiltration; Nanomaterials; Nonflammability; Novel spacer geometries; O-ring; Organic frameworks (MOFs); Organic solvent nanofiltration; Organic solvent reverse osmosis; Organosilica; Oxygen separation; Performance-enhancing strategies; Permeate flux; Pervaporation; Plasma-enhanced chemical vapor deposition; Polyamide; Polymeric membranes; Polymerized ionic liquid; Polymers; Pore tailoring technique; Reverse electrodialysis; Reverse osmosis; Safety; Scale-up; Scaling; Scaling control; Scaling mechanisms; Sensor; Separator; Silicon carbide; Silicon-based membranes; Solid oxide fuel cell; Spectroscopy; Spiral-wound membrane