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Enhanced vapor transport in membrane distillation via functionalized carbon nanotubes anchored into electrospun nanofibres

机译:通过锚定在电纺纳米纤维中的功能化碳纳米管提高膜蒸馏中的蒸气传输

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摘要

To ascertain membrane distillation (MD) as an emerging desalination technology to meet the global water challenge, development of membranes with ideal material properties is crucial. Functionalized carbon nanotubes (CNTs) were anchored to nanofibres of electrospun membranes. Covalent modification and fluorination of CNTs improved their dispersibility and interfacial interaction with the polymer membrane, resulting in well-aligned CNTs inside crystalline fibres with superhydrophobicity. Consideration for the chemical/physical properties of the CNT composite membranes and calculation of their theoretical fluxes revealed the mechanism of MD: CNTs facilitated the repulsive force for Knudsen and molecular diffusions, reduced the boundary-layer effect in viscous flow, and assisted surface diffusion, allowing for fast vapor transport with anti-wetting. This study shows that the role of CNTs and an optimal composite ratio can be used to reduce the gap between theoretical and experimental approaches to desalination.
机译:为了确定膜蒸馏(MD)作为一种新兴的淡化技术来应对全球水资源挑战,开发具有理想材料性能的膜至关重要。功能化的碳纳米管(CNTs)固定在电纺膜的纳米纤维上。碳纳米管的共价改性和氟化改善了它们的分散性和与聚合物膜的界面相互作用,从而在具有超疏水性的​​结晶纤维内部形成了排列良好的碳纳米管。考虑到CNT复合膜的化学/物理性质并计算其理论通量,揭示了MD的机理:CNT促进了克努森的排斥力和分子扩散,减少了粘性流中的边界层效应,并辅助了表面扩散,允许快速蒸气传输并具有防湿性。这项研究表明,碳纳米管的作用和最佳的复合比例可用于减少脱盐的理论和实验方法之间的差距。

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