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具有高水蒸气收集能力的聚氨酯海绵接枝海藻酸钙与碳墨水气凝胶的绿色合成用于太阳能驱动的全天候大气水收集

Green Synthesis of Polyurethane Sponge-Grafted Calcium Alginate with Carbon Ink Aerogel with High Water Vapor Harvesting Capacity for Solar-Driven All-Weather Atmospheric Water Harvesting.

作者信息

Liu Cai-Hua, Xu Lei, Wang Zhen-Yu, Han Sheng-Jie, Fu Ming-Lai, Yuan Baoling

机构信息

Xiamen Key Laboratory of Municipal and Industrial Solid Waste Utilization and Pollution Control, College of Civil Engineering, Huaqiao University, Xiamen, Fujian 361021, P. R. China.

Key Laboratory of Songliao Aquatic Environment, Ministry of Education, Jilin Jianzhu University, Changchun 130118, P. R. China.

出版信息

Langmuir. 2024 Jul 16;40(28):14413-14425. doi: 10.1021/acs.langmuir.4c01119. Epub 2024 Jul 1.

Abstract

Atmospheric water harvesting (AWH) technology is a new strategy for alleviating freshwater scarcity. Adsorbent materials with high hygroscopicity and high photothermal conversion efficiency are the key to AWH technology. Hence, in this study, a simple and large-scale preparation for a hygroscopic compound of polyurethane (PU) sponge-grafted calcium alginate (CA) with carbon ink (SCAC) was developed. The PU sponge in the SCAC aerogel acts as a substrate, CA as a moisture adsorber, and carbon ink as a light adsorber. The SCAC aerogel exhibits excellent water absorption of 0.555-1.40 g·g within a wide range of relative humidity (40-80%) at 25 °C. The SCAC aerogel could release adsorbed water driven by solar energy, and more than 92.17% of the adsorbed water could be rapidly released over a wide solar intensity range of 1.0-2.0 sun. In an outdoor experiment, 57.517 g of SCAC was able to collect 32.8 g of clean water in 6 h, and the water quality meets the drinking water standards set by the World Health Organization. This study suggests a new approach to design promising AWH materials and infers the potential practical application of SCAC aerogel-based adsorbents.

摘要

大气取水(AWH)技术是缓解淡水短缺的一种新策略。具有高吸湿性和高光热转换效率的吸附材料是AWH技术的关键。因此,在本研究中,开发了一种简单且大规模制备聚氨酯(PU)海绵接枝海藻酸钙(CA)与碳墨水(SCAC)的吸湿复合材料的方法。SCAC气凝胶中的PU海绵作为基材,CA作为吸湿剂,碳墨水作为光吸收剂。SCAC气凝胶在25℃下的宽相对湿度范围(40-80%)内表现出0.555-1.40 g·g的优异吸水性。SCAC气凝胶可以在太阳能驱动下释放吸附的水,在1.0-2.0个太阳的宽太阳强度范围内,超过92.17%的吸附水可以快速释放。在室外实验中,57.517 g的SCAC能够在6小时内收集32.8 g的清洁水,水质符合世界卫生组织设定的饮用水标准。本研究提出了一种设计有前景的AWH材料的新方法,并推断了基于SCAC气凝胶的吸附剂的潜在实际应用。

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