Wang Jinhu, Cao Xiqian, Cui Xinyue, Wang Haijian, Zhang Haoran, Wang Kaiwen, Li Xibao, Li Zhengtong, Zhou Yingtang
National Engineering Research Center for Marine Aquaculture, Marine Science and Technology College, Zhejiang Ocean University, Zhoushan, 316004, China.
ICFO - Institut de Ciències Fotòniques, The Barcelona Institute of Science and Technology, Castelldefels, Barcelona, 08860, Spain.
Adv Mater. 2024 Apr;36(16):e2311151. doi: 10.1002/adma.202311151. Epub 2024 Jan 10.
Solar-driven interfacial evaporation (SDIE) has played a pivotal role in optimizing water-energy utilization, reducing conventional power costs, and mitigating environmental impacts. The increasing emphasis on the synergistic cogeneration of water and green electricity through SDIE is particularly noteworthy. However, there is a gap of existing reviews that have focused on the mechanistic understanding of green power from water-electricity cogeneration (WEC) systems, the structure-activity relationship between efficiency of green energy utilization in WEC and material design in SDIE. Particularly, it lacks a comprehensive discussion to address the challenges faced in these areas along with potential solutions. Therefore, this review aims to comprehensively assess the progress and future perspective of green electricity from WEC systems by investigating the potential expansion of SDIE. First, it provides a comprehensive overview about material rational design, thermal management, and water transportation tunnels in SDIE. Then, it summarizes diverse energy sources utilized in the SDIE process, including steaming generation, photovoltaics, salinity gradient effect, temperature gradient effect, and piezoelectric effect. Subsequently, it explores factors that affect generated green electricity efficiency in WEC. Finally, this review proposes challenges and possible solution in the development of WEC.
太阳能驱动界面蒸发(SDIE)在优化水能利用、降低传统电力成本和减轻环境影响方面发挥了关键作用。通过SDIE实现水和绿色电力的协同联产日益受到关注,这一点尤为值得注意。然而,现有的综述存在空白,它们侧重于对水电联产(WEC)系统绿色电力的机理理解、WEC中绿色能源利用效率与SDIE材料设计之间的构效关系。特别是,它缺乏对这些领域所面临挑战及潜在解决方案的全面讨论。因此,本综述旨在通过研究SDIE的潜在扩展,全面评估WEC系统绿色电力的进展和未来前景。首先,它全面概述了SDIE中的材料合理设计、热管理和水传输通道。然后,它总结了SDIE过程中利用的各种能源,包括蒸汽产生、光伏发电、盐度梯度效应、温度梯度效应和压电效应。随后,它探讨了影响WEC中绿色电力产生效率的因素。最后,本综述提出了WEC发展中的挑战和可能的解决方案。