海水淡化
材料科学
蒸发器
蒸发
菲涅耳透镜
化学工程
太阳能
太阳能淡化
纳米纤维
光热治疗
工艺工程
纳米技术
膜
热力学
化学
热交换器
光学
生物
生态学
生物化学
物理
镜头(地质)
工程类
作者
Bin‐Bin Ma,Deqi Fan,Guangyao Zhang,Yemei Liao,Ziyi Shen,Yi Lu
出处
期刊:Solar RRL
[Wiley]
日期:2023-08-11
卷期号:7 (20)
被引量:7
标识
DOI:10.1002/solr.202300484
摘要
Solar‐driven interfacial steam technology converts photons into heat energy directly and therefore realizes the effective removal of environmental pollutants, which presents huge potential in seawater desalination and freshwater production. To realize efficient and rapid solar‐driven water evaporation, developing and designing efficient photothermal conversion materials is of great significance. Herein, a high‐entropy alloy (HEA) fiber membrane with rapid heating and wide spectral response is synthesized via adjusting high‐entropy metals diffusion on the surface of carbon nanofibers by an electrospinning technology. Benefiting from the low equivalent evaporation enthalpy and high solar spectrum capacity of HEA fibers, the HEA (FeCoNiCuMn)‐carbon nanofiber‐5S2 achieves a rapid steam‐generation rate of 2.74 kg m −2 h −1 with a solar‐to‐vapor conversion efficiency of 99.4% under 1 sun illumination. In addition, the evaporator presented a stable seawater desalination and wastewater purification performance. Therefore, the HEA‐based solar evaporator can be an alternative photothermal material for efficient solar steam generation.
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