Chen Mingshuo, Sun Wei, Liu Hongtao, Luo Qiang, Wang Yining, Huan Jinmu, Hou Yongping, Zheng Yongmei
Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beihang University, Beijing, 100191, P. R. China.
Small. 2024 Nov;20(45):e2403260. doi: 10.1002/smll.202403260. Epub 2024 Jul 20.
Conventional fog collection efficiency is subject to the inherent inefficiencies of its three constituent steps: fog capture, coalescence, and transportation. This study presents a liquid bridge synergistic fog collection system (LSFCS) by synergistically utilizing a liquid bridge and interconnected porous superhydrophilic structures (IPHS). The results indicate that the introduction of liquid bridge not only greatly accelerates water droplet transportation, but also facilitates the IPHS in maintaining rough structures that realize stable and efficient fog capture. During fog collection, the lower section of the IPHS is covered by a water layer, however due to the effect of the liquid bridge, the upper section protrudes out, while covered by a connective thin water film that does not obscure the microstructures of the upper section. Under these conditions, a one-step fog collection mode is realized. Once captured by the IPHS, fog droplets immediately coalesce with the water film, and are simultaneously transported into a container under the effect of the liquid bridge. The LSFCS achieves a collection efficiency of 6.5 kg m h, 2.3 times that of a system without a liquid bridge. This study offers insight on improving fog collection efficiency, and holds promise for condensation water collection or droplet manipulation.
雾滴捕获、聚结和传输。本研究提出了一种液桥协同雾收集系统(LSFCS),通过协同利用液桥和相互连接的多孔超亲水结构(IPHS)。结果表明,液桥的引入不仅极大地加速了水滴的传输,还有助于IPHS保持粗糙结构,从而实现稳定高效的雾滴捕获。在雾收集过程中,IPHS的下部被一层水覆盖,然而由于液桥的作用,上部突出,同时被一层连接薄水膜覆盖,该水膜不会遮挡上部的微观结构。在这些条件下,实现了一步式雾收集模式。一旦被IPHS捕获,雾滴立即与水膜聚结,并在液桥的作用下同时被传输到下方的容器中。LSFCS的收集效率达到6.5 kg m h,是没有液桥的系统的2.3倍。本研究为提高雾收集效率提供了见解,并有望用于冷凝水收集或液滴操纵。