Flocculating-filtration-processed mesoporous structure in laminar ion-selective membrane for osmosis energy conversion and desalination

CHEMICAL ENGINEERING JOURNAL(2022)

引用 14|浏览21
暂无评分
摘要
Ion-selective membrane based technologies, such as electrodialysis and reverse electrodialysis technology, show great potential in addressing challenge of the water-energy nexus. However, the ion-selective membrane usually suffers from the trade-off between ionic selectivity and ion transport capacity. Here, we prove that mesoporous structure in lamellar ion-selective membrane can increase the transmembrane ionic transport with no loss of ionic selectivity. The mesoporous structure is constructed via adjusting the pH of graphene oxide/ionic polymer solution and self-assembly of flocculating solution. Negatively or positively charged graphene oxide based membrane with a thickness of 4 mu m was used in a three-compartment electrochemical cell for osmosis energy conversion and desalination. An output power density of 5.87 W m(-2) is achieved by mixing artificial seawater (0.5 M NaCl) and river water (0.01 M NaCl). The conductivity of seawater can quickly decrease from 12.3 mS cm(-1 )to 36 mu S cm(-1) in typical electrodialysis process, showing the excellent desalination ability. This work proves a new strategy of enhancing transmembrane ionic transport in ion-selective membrane and provides new opportunities for 2D nanomaterials.
更多
查看译文
关键词
Ion-selective membrane, Mesoporous structure, Osmotic energy, Power generation, Desalination
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要