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Adsorption-assisted transport of water vapour in super-hydrophobic membranes filled with multilayer graphene platelets

机译:Adsorption-assisted运输的水蒸气super-hydrophobic膜充满多层石墨烯血小板

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摘要

The effects of confinement of multilayer graphene platelets in hydrophobic microporous polymeric membranes are here examined. Intermolecular interactions between water vapour molecules and nanocomposite membranes are envisaged to originate assisted transport of water vapour in membrane distillation processes when a suitable filler-polymer ratio is reached. Mass transport coefficients are estimated under different working conditions, suggesting a strong dependence of the transport on molecular interactions. Remarkably, no thermal polarization is observed, although the filler exhibits ultrahigh thermal conductivity. In contrast, enhanced resistance to wetting as well as outstanding mechanical and chemical stability meets the basic requirements of water purification via membrane distillation. As a result, a significant improvement of the productivity-efficiency trade-off is achieved with respect to the pristine polymeric membrane when low amounts of platelets are confined in spherulitic-like PVDF networks.
机译:约束的多层石墨烯的影响血小板在疏水性微孔聚合物膜在这里检查。水蒸气分子之间的相互作用纳米复合膜的设想产生辅助运输的水蒸气当一个合适的膜蒸馏过程filler-polymer比率。系数估计在不同工作条件,表明一个强大的运输的分子的依赖交互。观察到,尽管填料展览吗超高导热系数。增强抵抗润湿以及杰出的机械和化学稳定性符合基本要求的水通过膜蒸馏净化。因此,一个重大的改善productivity-efficiency权衡实现对原始聚合物膜当低血小板数量的限制spherulitic-like PVDF网络。

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