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使用热绝缘黑纸在非聚光照明下实现极具成本效益和高效的太阳能蒸汽产生。

Extremely Cost-Effective and Efficient Solar Vapor Generation under Nonconcentrated Illumination Using Thermally Isolated Black Paper.

作者信息

Liu Zhejun, Song Haomin, Ji Dengxin, Li Chenyu, Cheney Alec, Liu Youhai, Zhang Nan, Zeng Xie, Chen Borui, Gao Jun, Li Yuesheng, Liu Xiang, Aga Diana, Jiang Suhua, Yu Zongfu, Gan Qiaoqiang

机构信息

Department of Electrical EngineeringThe State University of New York at BuffaloBuffaloNY14260USA.

Department of Materials ScienceFudan UniversityShanghai200433China.

出版信息

Glob Chall. 2017 Feb 27;1(2):1600003. doi: 10.1002/gch2.201600003. Epub 2017 Jan 30.

DOI:10.1002/gch2.201600003
PMID:28616256
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5445597/
Abstract

Passive solar vapor generation represents a promising and environmentally benign method of water purification/desalination. However, conventional solar steam generation techniques usually rely on costly and cumbersome optical concentration systems and have relatively low efficiency due to bulk heating of the entire liquid volume. Here, an efficient strategy using extremely low-cost materials, i.e., carbon black (powder), hydrophilic porous paper, and expanded polystyrene foam is reported. Due to the excellent thermal insulation between the surface liquid and the bulk volume of the water and the suppressed radiative and convective losses from the absorber surface to the adjacent heated vapor, a record thermal efficiency of ≈88% is obtained under 1 sun without concentration, corresponding to the evaporation rate of 1.28 kg (m h). When scaled up to a 100 cm array in a portable solar water still system and placed in an outdoor environment, the freshwater generation rate is 2.4 times of that of a leading commercial product. By simultaneously addressing both the need for high-efficiency operation as well as production cost limitations, this system can provide an approach for individuals to purify water for personal needs, which is particularly suitable for undeveloped regions with limited/no access to electricity.

摘要

被动式太阳能蒸汽发生是一种很有前景且环境友好的水净化/海水淡化方法。然而,传统的太阳能蒸汽发生技术通常依赖于昂贵且笨重的光学聚光系统,并且由于对整个液体体积进行整体加热,效率相对较低。在此,报道了一种使用极低成本材料的高效策略,即炭黑(粉末)、亲水性多孔纸和发泡聚苯乙烯泡沫。由于表面液体与水体之间具有出色的隔热性能,以及抑制了吸收器表面向相邻加热蒸汽的辐射和对流损失,在1个太阳光照强度且无聚光的条件下,获得了创纪录的约88%的热效率,对应蒸发速率为1.28 kg/(m²·h)。当在便携式太阳能蒸馏系统中扩大到100平方厘米的阵列并放置在户外环境中时,淡水生成速率是领先商业产品的2.4倍。通过同时满足高效运行的需求以及生产成本限制,该系统可为个人提供一种满足个人用水需求的水净化方法,特别适用于电力供应有限/无法供电的欠发达地区。

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