刘勇   Associate professor

研究方向:功能纳米材料的设计合成及其在海水淡化、杀菌、能量储存方面的应用。承担项目:国家自然科学基金青年项目(24万) 山东省自然科学基金青年项目(15万) 青岛市原创探索项目(20万) 无锡新吴区“飞凤人才”(100万) 无锡“太湖人才”(100万)获奖情况:中国石油和化工科技进步三等奖论文情况:以第一作者或通讯作者发表高水平SCI论文30余篇,包括Adv. Funct. Mater.、ACS Nano...Detials

Tactics for boosting the desalination stability of capacitive deionization

Release time:2024-12-24  Hits:

  • Key Words:POROUS CARBON NANOFIBERS; MESOPOROUS CARBON; FARADAIC REACTIONS; BRACKISH-WATER; PERFORMANCE; ELECTRODES; HYBRID; EFFICIENT; COMPOSITE; OXYGEN
  • Abstract:Capacitive deionization (CDI), as a burgeoning desalination technology, has gained significant attention due to its merit of simple operation, low cost, environmental friendliness, and ion selectivity. Despite advancements in the theoretical framework of CDI and the emergence of novel electrode materials, the persistent challenge of poor cycling stability remains a major obstacle, hindering the further development of CDI. Notably, improving the cycling stability of carbon-based CDI and faradic CDI (FDI) by optimizing CDI cells, operation modes and electrode materials holds great significance for realizing its commercial application. Herein, this review provides an overview of studies related to the desalination stability of carbon-based CDI and FDI. The research status of both carbon materials and faradic materials is comprehensively summarized, specifically on analyzing various side reactions that occur during long-term operation, the corresponding solutions are systematically outlined to improve desalination stability of carbon-based CDI and FDI, including operational condition optimizing, ion exchange membrane introducing, nitrogen doping, surface coating, yolk-shell confinement and "inside out" growth. The review further compares the efficacy of these tactics on boosting the desalination stability and finally expounds the development prospect of CDI for practical application.
  • Volume:496
  • Issue:
  • Translation or Not:no