蒸发器
润湿
蒸发
超亲水性
碳纤维
化学工程
海水淡化
材料科学
活性炭
水蒸气
化学
环境工程
环境科学
复合材料
工程类
吸附
机械工程
有机化学
气象学
物理
生物化学
热交换器
膜
复合数
作者
Do Van Lam,Uyen Nhat Trieu Nguyen,Dao Thi Dung,Chan Kim,Mikyung Lim,Jae‐Hyun Kim,Seung‐Mo Lee
标识
DOI:10.1016/j.cej.2023.148475
摘要
• Air plasma rapidly transforms carbon cloth into shape-transformable solar evaporator . • The evaporator is doped with O and N which likely lowers the enthalpy for evaporation. • It shows long-term wettability & salt-rejection property for stable vapor generation. • The 5-cm high evaporator shows a high evaporation rate of 3.82 kg/m 2 h under one sun. Global water scarcity has spurred the quest for eco-friendly, cost-effective solar-based water desalination and purification methods. However, creating an efficient and durable solar evaporator still remains a formidable challenge. Here, we demonstrated that a rapid and straightforward air plasma activation process can transform a commercially available hydrophobic carbon cloth into a shape-transformable superhydrophilic solar evaporator enriched with nitrogen and oxygen dopants. The activated carbon cloth preserved the merits of the original material and exhibited long-term wettability and salt-rejection properties which are critical for the realization of stable solar vapor generation. Notably, the resulting activated carbon cloth achieved a remarkable vapor evaporation rate of 1.78 kg m - 2 h -1 under one-sun irradiation, likely thanks to the abundance of surface intermediate waters that reduce the enthalpy required for evaporation. Furthermore, the constructed column-like solar evaporator with a 5-cm height exhibited an impressive evaporation rate of 3.82 kg m - 2 h -1 under one-sun irradiation.
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