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一种用于太阳能水净化的具有可调节蒸发面积的自适应可再生水凝胶界面蒸发器。

A Self-Adaptive and Regenerable Hydrogel Interfacial Evaporator with Adjustable Evaporation Area for Solar Water Purification.

作者信息

Liu Yue, Tian Ye, Liu Na, Zhao Shuaiheng, Zhai Huajun, Ji Jiujiang, Cao Wenqing, Tao Lei, Wei Yen, Feng Lin

机构信息

Engineering Research Center of Advanced Rare Earth Materials (Ministry of Education), Department of Chemistry, Tsinghua University, Beijing, 100084, P. R. China.

出版信息

Small. 2024 Jan;20(4):e2305903. doi: 10.1002/smll.202305903. Epub 2023 Sep 15.

Abstract

Solar-driven interfacial evaporation is a potential water purification solution. Here, a novel regenerable hydrogel interfacial evaporator is designed with tunable water production. Such an evaporator is fabricated by readily mixing hydroxypropyl chitosan (HPCS) and dibenzaldehyde-functional poly(ethylene glycol) (DF-PEG) at ambient conditions. Dynamic Schiff base bonds bestow on the HPCS/DF-PEG hydrogel (HDH) evaporator self-adaptivity and pH responsiveness. The as-prepared HDH is enabled to spontaneously change shape to adapt to different molds, endowing the evaporator with adjustable evaporation area. The water production performance of the intelligent evaporator is first evaluated using tunable evaporation index (TEI, the tunable evaporated water mass per hour), which can be altered from 0 kg h to 3.21 kg h under one sun. Besides, the large-scale evaporator can be expediently fabricated by virtue of the self-adaptivity. Benefiting from the pH responsiveness, the HDH evaporator is successfully regenerated with the removal of organic dye by the liquefaction-dialysis-regeneration operations. Meanwhile, the re-created evaporator maintains the self-adaptive characteristic and almost constant water evaporation rate compared to that of the initial evaporator. Therefore, this distinctive concept provides a facile strategy to develop smart and recyclable solar-driven interfacial evaporators for flexible water purification.

摘要

太阳能驱动的界面蒸发是一种潜在的水净化解决方案。在此,设计了一种具有可调产水量的新型可再生水凝胶界面蒸发器。这种蒸发器是通过在环境条件下将羟丙基壳聚糖(HPCS)和二苯甲醛功能化聚乙二醇(DF-PEG)轻松混合制成的。动态席夫碱键赋予HPCS/DF-PEG水凝胶(HDH)蒸发器自适应性和pH响应性。所制备的HDH能够自发改变形状以适应不同模具,使蒸发器具有可调节的蒸发面积。首先使用可调蒸发指数(TEI,即每小时可调蒸发水量)评估智能蒸发器的产水性能,在一个太阳光照下,该指数可从0 kg/h变化到3.21 kg/h。此外,借助自适应性可以方便地制造大规模蒸发器。受益于pH响应性,通过液化-透析-再生操作去除有机染料后,HDH蒸发器成功再生。同时,重新制备的蒸发器保持了自适应性特征,与初始蒸发器相比,水蒸发速率几乎恒定。因此,这一独特概念为开发用于灵活水净化的智能且可回收的太阳能驱动界面蒸发器提供了一种简便策略。

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