Ternary hierarchical structure based solar‐driven evaporator for long‐lasting concentrated brine treatment

Author:

He Wen1,Zhou Lei2,Wang Yilan1,Yu Lejian1,Hou Yaqi3,Bi Shaoyang4ORCID,Wang Miao5,Hou Xu1267ORCID

Affiliation:

1. State Key Laboratory of Physical Chemistry of Solid Surfaces, Engineering Research Center of Electrochemical Technologies of Ministry of Education College of Chemistry and Chemical Engineering, Xiamen University Xiamen China

2. Research Institute for Biomimetics and Soft Matter, Fujian Provincial Key Laboratory for Soft Functional Materials Research, Jiujiang Research Institute, College of Physical Science and Technology Xiamen University Xiamen China

3. The Institute of Flexible Electronics (IFE, Future Technologies) Xiamen University Xiamen China

4. Department of Mechanics Tianjin University Tianjin China

5. The Higher Educational Key Laboratory for Biomedical Engineering of Fujian Province, Department of Biomaterials, Research Center of Biomedical Engineering of Xiamen College of Materials, Xiamen University Xiamen China

6. Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province (IKKEM) Xiamen China

7. Institute of Artificial Intelligence Xiamen University Xiamen China

Abstract

AbstractSolar‐driven evaporation has been a promising desalination method for treating concentrated seawater, since it is cost‐effectiveness, simplicity, and environmentally friendly. However, this method faces an unavoidable long‐term problem that the salt generated in the evaporation processes would affect and hinder its evaporation efficiency. Because the salt inevitably crystallizes on the surface of photothermal evaporation materials, and this crystallization process increases with time to impair the material area of the sunlight absorption and evaporation. Here, we show a ternary hierarchical structure based solar‐driven evaporator that reduces the evaporation material surface coverage of the salt to get long‐lasting concentrated brine treatment capacity. This evaporator is constructed by plugging vertically arranged hollow tube arrays across a porous plate. The top, middle, and bottom of the evaporator respectively serve as the salt crystallization site, the evaporation site, and the light absorption site. Meanwhile, the self‐cleaning of the evaporator can be achieved by back diffusion of the crystallized salts. As a result, this efficient and durable evaporator exhibits freshwater production of 10.21 kg/(m2·day) in outdoor experiment in the treatment of the concentrated natural seawater (21.3 wt%).image

Funder

Higher Education Discipline Innovation Project

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Fujian Province

Publisher

Wiley

Subject

Materials Science (miscellaneous),Physical and Theoretical Chemistry,Chemistry (miscellaneous)

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