Hu Xiaoyun, Yang Jianfang, Tu Yufei, Su Zhen, Guan Qingqing, Ma Zhiwei
Key Laboratory of Oil and Gas Fine Chemicals Ministry of Education, College of Chemical Engineering, Xinjiang University, Urumqi 830017, China.
School of Telecommunications and Intelligent Manufacturing, Sias University, Xinzheng 451150, China.
Gels. 2024 May 27;10(6):371. doi: 10.3390/gels10060371.
Hydrogel-based interfacial solar-driven evaporation (ISDE) gives full play to the highly adjustable physical and chemical properties of hydrogel, which endows ISDE systems with excellent evaporation performance, anti-pollution properties, and mechanical behavior, making it more promising for applications in seawater desalination and wastewater treatment. This review systematically introduces the latest advances in hydrogel-based ISDE systems from three aspects: the required properties, the preparation methods, and the role played in application scenarios of hydrogels used in ISDE. Additionally, we also discuss the remaining challenges and potential opportunities in hydrogel-based ISDE systems. By summarizing the latest research progress, we hope that researchers in related fields have some insight into the unique advantages of hydrogels in the ISDE field and contribute our efforts so that ISDE technology reaches the finishing line of practical application on the hydrogel track.
基于水凝胶的界面太阳能驱动蒸发(ISDE)充分发挥了水凝胶高度可调节的物理和化学性质,这赋予了ISDE系统优异的蒸发性能、抗污染性能和机械性能,使其在海水淡化和废水处理应用中更具前景。本文综述从三个方面系统介绍了基于水凝胶的ISDE系统的最新进展:所需特性、制备方法以及ISDE中使用的水凝胶在应用场景中所起的作用。此外,我们还讨论了基于水凝胶的ISDE系统中仍然存在的挑战和潜在机遇。通过总结最新研究进展,我们希望相关领域的研究人员能够深入了解水凝胶在ISDE领域的独特优势,并贡献我们的力量,以使ISDE技术在水凝胶轨道上迈向实际应用的终点。