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用于定制供水以增强水凝胶太阳能蒸发的水道曲折度工程

Tortuosity Engineering of Water Channels to Customized Water Supply for Enhancing Hydrogel Solar Evaporation.

作者信息

Zhao Zexiang, Wang Chengbing, Wei Dan, Hu Qinxue, Tan Puxin, Wang Fan, Xie Yunong, Zhang Wenhe, Zhang Jing

机构信息

School of Materials Science and Engineering, Shaanxi Key Laboratory of Green Preparation and Functionalization for Inorganic Materials, Shaanxi University of Science and Technology, Xi'an, Shaanxi, 710021, China.

出版信息

Small. 2024 Oct;20(42):e2402482. doi: 10.1002/smll.202402482. Epub 2024 Jun 10.

Abstract

Hydrogel as a solar evaporator shows great potential in freshwater production. However, hydrogels often lead to an imbalance between solar energy input and water supply management due to their excessively high saturated water content. Thus, achieving a stable water-energy-balance in hydrogel evaporators remains challenging. Here, by tortuosity engineering designed water transport channels, a seamless high-tortuosity/low-tortuosity/high-tortuosity structured hydrogel (SHLH structure hydrogel) evaporator is developed, which enables the hydrogel with customized water transport rate, leading to the controlled water supply at the evaporator interface. An excellent equilibrium between the photothermal conversion and water supply is established, and the maximum utilization of solar energy is realized, thereby achieving an excellent evaporation rate of 3.64 kg m h under one solar illumination. This tortuosity engineering controlled SHLH structured evaporator provides a novel strategy to attain water-energy-balance and expands new approaches for constructing hydrogel-based evaporators with tailored water transportation capacity.

摘要

水凝胶作为一种太阳能蒸发器在淡水生产中显示出巨大潜力。然而,由于水凝胶的饱和含水量过高,它们常常导致太阳能输入与供水管理之间的不平衡。因此,在水凝胶蒸发器中实现稳定的水能平衡仍然具有挑战性。在此,通过曲折度工程设计的输水通道,开发了一种无缝的高曲折度/低曲折度/高曲折度结构水凝胶(SHLH结构水凝胶)蒸发器,它能够使水凝胶具有定制的输水速率,从而在蒸发器界面实现可控供水。建立了光热转换与供水之间的良好平衡,实现了太阳能的最大利用,从而在一个太阳光照下实现了3.64 kg m² h⁻¹的优异蒸发速率。这种曲折度工程控制的SHLH结构蒸发器为实现水能平衡提供了一种新策略,并为构建具有定制输水能力的水凝胶基蒸发器拓展了新方法。

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