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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Biomimetic hybrid membranes with covalently anchored chitosan - Material design, transport and separation
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Biomimetic hybrid membranes with covalently anchored chitosan - Material design, transport and separation

机译:共价锚固壳聚糖材料设计,运输和分离的仿生杂交膜

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摘要

New hybrid membrane was inspired by biomimicking the water harvesting system in the back of fogstand beetle. Therefore, efficient hydrophobic material with hydrophilic chitosan (CS) islands was produced by the covalent attachment of chitosan to the hydrophobic surface of PVDF membranes. The attachment of CS molecules allows upgrading the membrane permeability and antifouling properties. Employing the "grafting to" approach, CS was anchored to pre-activated PVDF-membranes by urea linker via silanization. Materials were used for different separation processes, including membrane distillation (MD) for the removal of hazardous volatile organic compounds, desalination, and concentration of raw juices. Material physiochemical features, wettability, stability, tribology, and morphology, were assessed with respect to transport and separation. The hybrid-material possessed improved thermal stability and water resistance. The process separation index increased from similar to 6.8 kg m(-2) h(-1) to 90 kg m(-2) h(-1) for pristine and hybrid-material, respectively. During the juice concentration, the normalized flux decline for pristine was similar to 50%, whereas for hybrid material below 10%. On the pristine material, a visible layer of foulant was found after the separation, whereas the hybrid membrane shows a relatively clean surface. The developed strategy offers several distinct advantages for generating new materials having potential applications in water oil separation and wastewater treatment.
机译:通过生物剥削迷雾甲虫背面的水收集系统来启发新的混合膜。因此,通过壳聚糖的共价附着在PVDF膜的疏水表面的共价附着中,产生具有亲水壳聚糖(Cs)岛的高效疏水材料。 CS分子的附着允许提高膜渗透性和防污性能。采用“接枝到”方法,Cs通过硅烷化通过脲接头锚定以预活化的PVDF-膜。材料用于不同的分离过程,包括膜蒸馏(MD),用于去除有害挥发性有机化合物,脱盐和浓度的原汁。关于运输和分离评估材料的物质理化特征,润湿性,稳定性,摩擦学和形态学。杂化材料具有改善的热稳定性和耐水性。对于原始和杂化材料,过程分离指数分别从类似于6.8kg m(-2)h(-1)至90kg m(-2)h(-1)增加。在果汁浓度期间,原始的标准化通量下降类似于50%,而杂化材料低于10%。在原始材料上,分离后发现了一种可见的污垢层,而杂交膜显示出相对清洁的表面。开发的策略提供了几种不同的优点,可产生具有水性油分离和废水处理中具有潜在应用的新材料。

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