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用于稳定高效太阳能海水淡化的柔性防霉木质气凝胶

Flexible and Mildew-Resistant Wood-Derived Aerogel for Stable and Efficient Solar Desalination.

作者信息

Zhang Qian, Li Lin, Jiang Bo, Zhang Haotian, He Nan, Yang Sen, Tang Dawei, Song Yongchen

机构信息

School of Energy and Power Engineering, Key Laboratory of Ocean Energy Utilization and Energy Conservation of Ministry of Education, Dalian University of Technology, 116024 Dalian, China.

出版信息

ACS Appl Mater Interfaces. 2020 Jun 24;12(25):28179-28187. doi: 10.1021/acsami.0c05806. Epub 2020 Jun 15.

Abstract

Interfacial solar-driven evaporation is an effective and sustainable approach to convert solar energy to heat for desalination. However, maintaining a rapid evaporation rate and long-term stability is a critical challenge that needs to be addressed urgently to facilitate practical applications of this technology. Here, taking advantage of the inherent porosity, wettability, and low thermal conductivity of wood, we develop a flexible and mildew-resistant aerogel derived from natural wood as the substrate of evaporators for stable and efficient solar desalination. The wood-derived aerogel not only possesses good hydrophilicity, low thermal conductivity, and light weight, which are favorable to realize heat localization and efficient water evaporation, but also avoids fragility and mildew problems that seriously restricted long-term stability of wood-based evaporators. With high absorbance (>95%) of Au-rGO coating, the evaporator showed a high solar to vapor efficiency of 90.1% and an evaporation rate of 1.394 kg m h under 1 sun. During 120 h desalination, the evaporator transports brine for evaporation in the day and achieves dissolution of salt residues in the night, exhibiting a repetitive self-cleaning behavior, which enables the recovery of desalination stability. The multiple functionalities of the wood-derived aerogel make the evaporator promising as an attractive device for stable and continuous solar desalination.

摘要

界面太阳能驱动蒸发是一种将太阳能转化为热量用于海水淡化的有效且可持续的方法。然而,保持快速蒸发速率和长期稳定性是一个迫切需要解决的关键挑战,以促进该技术的实际应用。在此,利用木材固有的孔隙率、润湿性和低导热性,我们开发了一种由天然木材衍生的柔性且防霉的气凝胶作为蒸发器的基材,用于稳定高效的太阳能海水淡化。这种木材衍生的气凝胶不仅具有良好的亲水性、低导热性和轻质特性,有利于实现热量局部化和高效水蒸发,还避免了严重限制木质蒸发器长期稳定性的易碎性和发霉问题。由于金 - 还原氧化石墨烯涂层具有高吸收率(>95%),该蒸发器在1个太阳光照下显示出90.1%的高太阳能到蒸汽效率和1.394 kg m⁻² h⁻¹的蒸发速率。在120小时的海水淡化过程中,该蒸发器白天输送盐水进行蒸发,夜间实现盐渣溶解,呈现出重复的自清洁行为,从而实现了海水淡化稳定性的恢复。木材衍生气凝胶的多种功能使该蒸发器有望成为一种用于稳定连续太阳能海水淡化的有吸引力的装置。

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