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Sustainable pathways for solar desalination using nanofluids: A critical review

纳米流体 海水淡化 太阳能 可再生能源 太阳能淡化 环境科学 工艺工程 太阳能蒸馏器 地热脱盐 微咸水 环境工程 材料科学 纳米技术 工程类 化学 生态学 生物化学 盐度 纳米颗粒 电气工程 生物
作者
Dhananjay Singh,Sunita Singh,Deepak Singh,Jyoti Kushwaha,Vinay Mishra,Suresh Kumar Patel,Sanjay Tewari,Balendu Shekher Giri
出处
期刊:Environmental Research [Elsevier]
卷期号:241: 117654-117654 被引量:9
标识
DOI:10.1016/j.envres.2023.117654
摘要

Water is a fundamental requirement for the survival of human beings. Although water is abundantly available across the globe, access to freshwater still remains a major concern. Most of the water available is saline or brackish, which is not fit for human consumption. Desalination is the optimum solution for production of potable water from saline water. A major shortcoming of conventional desalination technologies is their dependence on fossil fuel that results in environmental degradation, global warming, etc. Therefore, sustainable desalination technology has evolved as a need of hour. Among all renewable energy resources, solar energy is abundantly available and can be potentially harvested. Therefore, solar energy can be used to drive sustainable desalination technologies. A solar still converts saline water into freshwater in a single step using solar energy. But the major drawbacks of solar still are relatively lower efficiency and lower yield. Nanofluids are widely used to overcome these limitations due to their extraordinary and unique properties. This paper critically reviews the recent research performed on the application of nanofluids in solar desalination systems. Methods of nanofluid preparation, their types and properties are also discussed in detail. Application of nanofluids in solar desalination systems is discussed with special attention on performance enhancement of solar stills. Combinations of nanofluids with various other performance enhancement techniques are also considered. The effectiveness of nanofluids in solar stills is found to be dependent majorly on the nature and concentration of the nanofluid used.

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