Harnessing overlapped temperature-salinity gradient in solar-driven interfacial seawater evaporation for efficient steam and electricity generation

被引:0
|
作者
Peida Li [1 ]
Dongtong He [1 ]
Jingchang Sun [2 ]
Jieshan Qiu [3 ]
Zhiyu Wang [1 ]
机构
[1] State Key Lab of Fine Chemicals, Liaoning Key Lab for Energy Materials and Chemical Engineering, Dalian University of Technology
[2] School of Physics and Electronic Technology, Liaoning Normal University
[3] College of Chemical Engineering, Beijing University of Chemical Technology
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
P747 [海水淡化]; TM61 [各种发电];
学科分类号
080802 ; 0824 ;
摘要
Solar-driven interfacial water evaporation(SIWE) offers a superb way to leverage concentrated solar heat to minimize energy dissipation during seawater desalination. It also engenders overlapped temperaturesalinity gradient(TSG) between water-air interface and adjacent seawater, affording opportunities of harnessing electricity. However, the efficiency of conventional SIWE technologies is limited by significant challenges, including salt passivation to hinder evaporation and difficulties in exploiting overlapped TSG simultaneously. Herein, we report self-sustaining hybrid SIWE for not only sustainable seawater desalination but also efficient electricity generation from TSG. It enables spontaneous circulation of salt flux upon seawater evaporation, inducing a self-cleaning evaporative interface without salt passivation for stable steam generation. Meanwhile, this design enables spatial separation and simultaneous utilization of overlapped TSG to enhance electricity generation. These benefits render a remarkable efficiency of90.8% in solar energy utilization, manifesting in co-generation of solar steam at a fast rate of 2.01 kg m-2-h-1and electricity power of 1.91 W m-2with high voltage. Directly interfacing the hybrid SIWE with seawater electrolyzer constructs a system for water-electricity-hydrogen co-generation without external electricity supply. It produces hydrogen at a rapid rate of 1.29 L h-1m-2and freshwater with 22 times lower Na+concentration than the World Health Organization(WHO) threshold.
引用
收藏
页码:694 / 700
页数:7
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