School of Chemical Engineering, Changchun University of Technology, Changchun 130012, China; Engineering Research Center of Synthetic Resin and Special Fiber, Ministry of Education, Changchun University of Technology, Changchun 130012, China.
School of Chemical Engineering, Changchun University of Technology, Changchun 130012, China; Engineering Research Center of Synthetic Resin and Special Fiber, Ministry of Education, Changchun University of Technology, Changchun 130012, China.
Int J Biol Macromol. 2024 Aug;275(Pt 2):134230. doi: 10.1016/j.ijbiomac.2024.134230. Epub 2024 Jul 31.
Currently, the most effective way to improve the anti-fouling performance of water treatment separation membrane is to enhance the hydrophilicity of the membrane surface, but it can still cause contamination, leading to the occurrence of flux reduction. The construction of a strong hydration layer to resist wastewater contamination is still a challenging task. In this study, a defect-free hydration layer barrier was achieved by grafting chitosan polysaccharide derivatives (CS-SDAEM) on the membrane, which achieved in effective fouling prevention and low flux decline rate. A layer of tannic acid-coated carbon nanotubes (TA@CNTs) has been uniformly deposited on the commercial PVDF membrane so that the surface was rich in -COOH groups, providing sufficient reaction sites. These reactive groups facilitate the grafting of amphiphilic polymers onto the membrane. This modification strategy achieved in enhancing the antifouling performance. The modified membrane achieved low contamination rate with DR of 16.9 % for wastewater filtration, and the flux recovery rate was above 95 % with PWF of 1100 (L·m·h). The membrane had excellent anti-fouling performance, which provided a new route for the future development of water treatment membrane.
目前,提高水处理分离膜抗污染性能最有效的方法是提高膜表面的亲水性,但仍会造成污染,导致通量下降。构建强水化层来抵抗废水污染仍然是一项具有挑战性的任务。在这项研究中,通过在膜上接枝壳聚糖多糖衍生物(CS-SDAEM),形成无缺陷的水化层屏障,实现了有效的防污和低通量下降率。在商业 PVDF 膜上均匀沉积了一层单宁酸包覆的碳纳米管(TA@CNTs),使表面富含-COOH 基团,提供了充足的反应位点。这些反应性基团有利于将两亲聚合物接枝到膜上。这种改性策略提高了抗污染性能。改性后的膜对废水过滤的污染率低,DR 为 16.9%,通量恢复率高于 95%,PWF 为 1100(L·m·h)。该膜具有优异的抗污染性能,为水处理膜的未来发展提供了新途径。