蒸发
蒸发器
环境科学
资源(消歧)
工艺工程
材料科学
纳米技术
计算机科学
机械工程
工程类
气象学
物理
计算机网络
热交换器
作者
Hyeon Tae Kim,Ligy Philip,Andrew M. McDonagh,Md Abu Hasan Johir,Jiawei Ren,Ho Kyong Shon,Leonard D. Tijing
标识
DOI:10.1002/advs.202401322
摘要
Abstract Recent advances in solar‐driven interfacial evaporation (SDIE) have led to high evaporation rates that open promising avenues for practical utilization in freshwater production and industrial application for pollutant and nutrient concentration, and resource recovery. Breakthroughs in overcoming the theoretical limitation of 2D interfacial evaporation have allowed for developing systems with high evaporation rates. This study presents a comprehensive review of various evaporator designs that have achieved pure evaporation rates beyond 4 kg m −2 h −1 , including structural and material designs allowing for rapid evaporation, passive 3D designs, and systems coupled with alternative energy sources of wind and joule heating. The operational mechanisms for each design are outlined together with discussion on the current benefits and areas for improvement. The overarching challenges encountered by SDIE concerning the feasibility of direct integration into contemporary practical settings are assessed, and issues relating to sustaining elevated evaporation rates under diverse environmental conditions are addressed.
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