海水淡化
膜
聚酰胺
反渗透
材料科学
渗透力
正渗透
薄膜复合膜
化学工程
渗透
海水
化学
工程类
复合材料
海洋学
地质学
生物化学
作者
Maria Di Vincenzo,Alberto Tiraferri,Valentina Musteaţa,Ştefan Chişcă,Rachid Sougrat,Li‐Bo Huang,Suzana P. Nunes,Mihail Bãrboiu
标识
DOI:10.1038/s41565-020-00796-x
摘要
Inspired by biological proteins, artificial water channels (AWCs) can be used to overcome the performances of traditional desalination membranes. Their rational incorporation in composite polyamide provides an example of biomimetic membranes applied under representative reverse osmosis desalination conditions with an intrinsically high water-to-salt permeability ratio. The hybrid polyamide presents larger voids and seamlessly incorporates I-quartet AWCs for highly selective transport of water. These biomimetic membranes can be easily scaled for industrial standards (>m2), provide 99.5% rejection of NaCl or 91.4% rejection of boron, with a water flux of 75 l m-2 h-1 at 65 bar and 35,000 ppm NaCl feed solution, representative of seawater desalination. This flux is more than 75% higher than that observed with current state-of-the-art membranes with equivalent solute rejection, translating into an equivalent reduction of the membrane area for the same water output and a roughly 12% reduction of the required energy for desalination.
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