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用于太阳能驱动大气取水的可水合核壳聚合物网络

Hydratable Core-Shell Polymer Networks for Atmospheric Water Harvesting Powered by Sunlight.

作者信息

Maity Debasis, Teixeira Ana Palma, Fussenegger Martin

机构信息

Department of Biosystems Science and Engineering, ETH Zurich, Mattenstrasse 26, Basel, CH-4058, Switzerland.

Faculty of Science, University of Basel, Mattenstrasse 26, Basel, CH-4058, Switzerland.

出版信息

Small. 2023 Nov;19(47):e2301427. doi: 10.1002/smll.202301427. Epub 2023 Jul 31.

Abstract

The development of technologies to enable fresh water harvesting from atmospheric moisture could help overcome the problem of potable water scarcity. Here, an atmospheric water harvesting (AWH) device is assembled in a core-shell structure, with the core consisting of networks of alginate (Alg) and polyaniline (PANI) and the outer layer consisting of thermo-responsive poly(N-isopropylacrylamide) (PNIPAM) modified with sulfonic acid groups (SPNIPAM) to increase the water adsorption at low relative humidity. The resulting hydrogel, modified with lithium chloride (LiCl) for increased water storage capacity (SPNIPAM-Li-PANIAlg), displays a similar lower critical solution temperature to pristine PNIPAM (32 °C) while affording a 15-fold higher water capture ratio, and releases water upon exposure to sunlight at intensities less than 1 kW m . The developed AWH system is capable of harvesting 6.5 L of water per kilogram in a single daily absorption/desorption cycle under sunlight and can operate at relative humidity levels as low as 17% with no additional external energy input. The thermo-responsive hydrogel SPNIPAM-Li-PANIAlg exhibits excellent stability during natural sunlight-driven absorption/desorption cycles for at least 30 days, and allows sustainable harvesting of over 28.3 L kg from a moisture-rich environment by means of multiple absorption/desorption cycles.

摘要

开发从大气湿度中获取淡水的技术有助于解决饮用水短缺问题。在此,一种大气水收集(AWH)装置采用核壳结构组装,其核心由藻酸盐(Alg)和聚苯胺(PANI)网络组成,外层由用磺酸基团(SPNIPAM)改性的热响应性聚(N-异丙基丙烯酰胺)(PNIPAM)组成,以增加在低相对湿度下的水吸附。所得水凝胶用氯化锂(LiCl)改性以提高储水能力(SPNIPAM-Li-PANIAlg),其显示出与原始PNIPAM相似的较低临界溶液温度(32℃),同时提供高15倍的水捕获率,并在暴露于强度小于1kW m的阳光下时释放水。所开发的AWH系统在阳光下单个每日吸收/解吸循环中每千克能够收集6.5L水,并且在没有额外外部能量输入的情况下能够在低至17%的相对湿度水平下运行。热响应性水凝胶SPNIPAM-Li-PANIAlg在自然阳光驱动的吸收/解吸循环中至少30天表现出优异的稳定性,并通过多次吸收/解吸循环能够从富湿环境中可持续收集超过28.3L kg的水。

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