工艺工程
商业化
材料科学
海水淡化
太阳能
环境友好型
高效能源利用
太阳能淡化
零能耗建筑
能量转换
热的
工程物理
纳米技术
工程类
气象学
热力学
物理
电气工程
生物
法学
遗传学
膜
生态学
政治学
作者
Jianhua Zhou,Yufei Gu,Liu Pengfei,Pengfei Wang,Lei Miao,Jing Liu,Anyun Wei,Xiaojiang Mu,Jinlei Li,Jia Zhu
标识
DOI:10.1002/adfm.201903255
摘要
Abstract Direct solar steam generation (DSSG) offers a promising, sustainable, and environmentally friendly solution to the energy and water crisis. In the past decades, DSSG has gained tremendous attention due to its potential applications for clean water production, desalination, wastewater treatment, and electric energy harvesting. Even though the solar–thermal conversion efficiency has approached 100% under 1 sun illumination (1 kW m −2 ) using various photothermal materials and systems, the optimization of the materials and system structure remains unclear because of the lack of evaluation methods in unity for the output efficiency. In this review, a few key concerns about different dimensional materials and systems that determine the characteristics of DSSG are explored. Quantitative analysis, including calculations and methods for the solar–thermal conversion efficiency, evaporation rate, and energy loss, is employed to evaluate the materials and systems from the point of view of ultimate utilization. This article focuses on the relationship between the system dimension and energy efficiency and notes opportunities for future system design and commercialization of DSSG.
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