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Solar interfacial evaporation devices for desalination and water treatment: Perspective and future.

Authors :
Misra, Utkarsh
Barbhuiya, Najmul Haque
Rather, Zakir Hussain
Singh, Swatantra P.
Source :
Advances in Colloid & Interface Science. May2024, Vol. 327, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Water is an essential commodity for society, and alternate resources such as seawater and wastewater are vital for the future. There are various desalination technologies that can provide sufficient and sustainable water sources. Renewable energy-based desalination technologies like solar-based interfacial evaporation are very efficient and sustainable desalination methods. Solar-based interfacial evaporation has been a focus due to its efficient and easy-to-use methods. Still, research is needed for fouling resistance, scalable and low-cost materials, and devices for solar interfacial evaporation. Recent research focuses on the materials for evaporation devices, but various other aspects of device design and fabrication methods are also necessary to improve device performance. In this article, all the evaporator device configurations and strategies for efficient evaporator devices are compiled and summarized. The evaporator devices have been classified into eight main categories: monolayer, bilayer, tree-like design, low-temperature designs, 3D-Origami-based designs, latent heat recovery design, design with storage/batch process, and contactless design. It was found that a good absorber, well-engineered air-water interface, and bottom-layer insulation are necessary for the best systems. The current research focuses on the vapor production output of the devices but not on the water production from devices. So, the focus on device-based water production and the associated cost of the water produced is essential. This article articulates the strategies and various scalable and efficient devices for evaporation-based solar-driven desalination. This article will be helpful for the researchers in improving devices output and coming up with a sustainable desalination and water treatment. [Display omitted] • The paper discusses the outlook and challenges for Solar driven interfacial evaporation devices. • The article lays the path for efficiency improvement for interfacial evaporation Devices. • Floatable devices with tree-like designs have better performance. • The absorber and condenser designs are equally essential for ISDE water production devices. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00018686
Volume :
327
Database :
Academic Search Index
Journal :
Advances in Colloid & Interface Science
Publication Type :
Academic Journal
Accession number :
177032716
Full Text :
https://doi.org/10.1016/j.cis.2024.103154