材料科学
海水淡化
润湿
纤维素
盐(化学)
太阳能淡化
断层摄影术
化学工程
纳米技术
复合材料
光学
有机化学
化学
遗传学
物理
膜
工程类
生物
作者
Xu Yang,Haosong Zhong,Xupeng Lu,Miao Tang,Siyu Chen,Cuiyun Yang,Yi Chen,Minseong Kim,Yan Liu,Guijun Li
标识
DOI:10.1002/adfm.202425052
摘要
Abstract The scarcity of clean water has become a growing problem worldwide. Solar‐driven desalination based on evaporation has become a promising green technology for obtaining drinking water from saline water for the welfare of human society. However, the accumulation of salt precipitated from the saline at the evaporator surface remains a severe problem in improving evaporation efficiency. To overcome this problem, it is crucial to investigate the transportation mechanism of salt in the saline during the evaporation process. Herein, an in situ monitoring strategy with the electrical impedance tomography (EIT) method is proposed to characterize the salt transportation and accumulation process inside the nano‐crystal cellulose (NCC)‐MnO 2 nanoparticle solar evaporator. The coating of laser‐induced graphene (LIG) with tunable water wettability shows that the hydrophobic structures can suppress salt accumulation during evaporation. The collected condensation water generated from the bacteria‐polluted saline proves to be clean. It is hoped that this work can further inspire research on the salt‐resistive evaporator design.
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