Saeed Haroon A M, Kazimoto Veronica Valerian, Xu Weilin, Yang Hongjun
Key Laboratory of Green Processing and Functional New Textile Materials of Ministry of Education, Wuhan Textile University, Wuhan 430200, China.
Textile Engineering Department, Faculty of Industries Engineering &Technology, University of Gezira, Wad Madani P.O. Box 20, Sudan.
Polymers (Basel). 2024 Mar 13;16(6):793. doi: 10.3390/polym16060793.
The global increase in population, the phenomenon of climate change, the issue of water pollution and contamination, and the inadequate management of water resources all exert heightened strain on freshwater reserves. The potential utilization of the interfacial solar steam generation (ISSG) system, which utilizes photothermal conversion to generate heat on material surfaces for wastewater purification and desalination purposes, has been successfully demonstrated. Textile-material-based ISSG devices, including (woven, nonwoven, and knitted) fabrics and electrospinning membranes, exhibit distinct properties such as a rough surface texture, high porosity, significant surface area, exceptional flexibility, and robust mechanical strength. These characteristics, combined with their affordability, accessibility, and economic viability for widespread implementation, make them extremely attractive for applications in SSG. In this review, a comprehensive analysis of the emerging concepts, advancements, and applications of textile materials, such as woven, nonwoven, and knitted fabrics and electrospun membranes, in ISSG for wastewater purification and desalination is presented. We also emphasize significant obstacles and potential prospects in both theoretical investigations and real-world implementations, aiming to contribute to future advancements in the domain of textile-material-based interfacial evaporation in wastewater purification and desalination. Furthermore, the drawbacks and the challenges of ISSG systems are also highlighted.
全球人口增长、气候变化现象、水污染和污染问题以及水资源管理不善,都给淡水储备带来了更大压力。界面太阳能蒸汽发生(ISSG)系统利用光热转换在材料表面产生热量用于废水净化和海水淡化,其潜在用途已得到成功验证。基于纺织材料的ISSG装置,包括(机织、非织造和针织)织物以及电纺膜,具有诸如粗糙的表面纹理、高孔隙率、大表面积、出色的柔韧性和强大的机械强度等独特特性。这些特性,再加上它们的可承受性、易获取性以及广泛应用的经济可行性,使其在太阳能蒸汽发生应用中极具吸引力。在本综述中,对机织、非织造和针织织物以及电纺膜等纺织材料在用于废水净化和海水淡化的ISSG中的新兴概念、进展和应用进行了全面分析。我们还强调了理论研究和实际应用中的重大障碍和潜在前景,旨在为基于纺织材料的界面蒸发在废水净化和海水淡化领域的未来进展做出贡献。此外,还突出了ISSG系统的缺点和挑战。