海水淡化
化学
氯化物
水溶液
两亲性
碳纤维
海水
二氧化碳
氯化铵
化学工程
膜
有机化学
复合材料
工程类
材料科学
地质学
聚合物
海洋学
复合数
生物化学
共聚物
作者
Anand Sharadha-Ravi Ayyar,Desta Tesfay Aregawi,Allan R. Petersen,Jonas Merlin Ibsgaard Pedersen,Rasmus Refsgaard Kragh,Mohamed M. H. Desoky,Jonas Sundberg,Lars Vinum,Jiwoong Lee
摘要
Conventional desalination membrane technologies, although offer portable drinking water, are still energy-intensive processes. This paper proposes a potentially new approach for performing water desalination and purification by utilizing the reversible interaction of carbon dioxide (CO2) with nucleophilic amines─reminiscent of the Solvay process. Based on our model studies with small molecules, CO2-responsive amphiphilic insoluble diamines were prepared, characterized, and applied in the formation of soda and ammonium chloride upon exposure to ambient CO2 (1 atm), thus removing chloride ions from model and real seawater. This ion-exchange process and separation of chloride from the aqueous phase are spontaneous in the presence of CO2 without the need for external energy sources. We demonstrate a flow system to envisage energy-efficient CO2-mediated desalination and simultaneous carbon capture and sequestration.
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