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- W4229367085 endingPage "100714" @default.
- W4229367085 startingPage "100714" @default.
- W4229367085 abstract "Because of certain limitations in the use of conventional hydrophobic membranes in membrane distillation (MD), many studies have attempted to find alternatives to these membranes. There are many criteria for replacement membranes but the main criteria such as stability, cost, and environmental friendliness are the most important properties. When these criteria are met, one property that must be guaranteed in MD is the hydrophobicity of the membrane surface. Therefore, many studies have modified the surface of less hydrophobic or hydrophilic membranes into super-hydrophobic membranes. However, the use of agents derived from fluoroalkyl silane, although providing high performance, is expensive and not environmentally friendly. This study mainly reviews hydrophobic membrane surface modifications using non-fluoroalkyl agents applied in MD processes. In addition, other contents such as basic membrane requirements for use in MD, limitations of conventional hydrophobic membranes, some traditional fluoroalkyl functionalized hydrophobic surface modifications, and challenges and prospects were also discussed. • Membrane parameters desired for membrane distillation was fully discussed and reviewed. • The limitations of conventional membranes used in membrane distillation were explored. • The non-expensive and non-toxic membrane modifications applied in membrane distillation were fully reviewed and discussed. • The prospect of fluorocarbon-free membranes used in membrane distillation is completely bright." @default.
- W4229367085 created "2022-05-10" @default.
- W4229367085 creator A5039032720 @default.
- W4229367085 creator A5047513179 @default.
- W4229367085 creator A5063778529 @default.
- W4229367085 creator A5068781596 @default.
- W4229367085 date "2022-09-01" @default.
- W4229367085 modified "2023-10-16" @default.
- W4229367085 title "Non-fluoroalkyl functionalized hydrophobic surface modifications used in membrane distillation for cheaper and more environmentally friendly applications: A mini-review" @default.
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