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氯化钙/MOF-303复合材料的制备及其除湿性能。

Preparation of CaCl/MOF-303 composite and its dehumidification properties.

作者信息

Li Ying, Li Jianzhe, Yin Shumeng, Shan Xiaowen, Tao Bin, Wang Shiqiang

机构信息

State Key Laboratory of Chemical Safety, SINOPEC Research Institute of Safety Engineering Co., Ltd Qingdao 266104 Shandong Province China

出版信息

RSC Adv. 2025 Mar 24;15(12):8867-8875. doi: 10.1039/d4ra08282f. eCollection 2025 Mar 21.

Abstract

A series of aluminium based Metal-Organic Framework (Al-MOF) composite adsorbents were prepared by impregnating moisture-sensitive CaCl with different relative contents into Al-MOF (MOF-303). The composite adsorbents were characterized by adsorption isotherm of N, elemental analysis and scanning electron microscopy, and subjected to static and dynamic adsorption tests of water vapor, as well as cyclic adsorption and desorption tests. The results showed that with the addition of CaCl, the high surface area of MOF-303 granules (1276 m g) dropped sharply to 588-683 m g. However, under the synergistic effect of physical adsorption and chemical adsorption, the purification effects of the composite adsorbents were significantly better than those of unmodified MOF-303, molecular sieves, and silica gel. The adsorption performance was correlated with the impregnation amount of CaCl. As the CaCl content increased, the saturation adsorption capacity and breakthrough adsorption capacity of the composite adsorbents all showed a trend of first increasing and subsequently decreasing. The maximum water adsorption capacity of the CaCl/MOF-303 composite was 1077 mg g. In addition, the regenerative rate of the CaCl/MOF-303 composite was over 96.1% after fifty adsorption and desorption cycles of water, showing good desorption performance and excellent structural stability, which proved a broad application prospect in the field of dehumidification.

摘要

通过将不同相对含量的对湿度敏感的氯化钙浸渍到铝基金属有机框架(Al-MOF,即MOF-303)中,制备了一系列铝基金属有机框架复合吸附剂。采用氮气吸附等温线、元素分析和扫描电子显微镜对复合吸附剂进行了表征,并对其进行了水蒸气的静态和动态吸附测试以及循环吸附和解吸测试。结果表明,随着氯化钙的加入,MOF-303颗粒的高比表面积(1276 m²/g)急剧下降至588 - 683 m²/g。然而,在物理吸附和化学吸附的协同作用下,复合吸附剂的净化效果明显优于未改性的MOF-303、分子筛和硅胶。吸附性能与氯化钙的浸渍量相关。随着氯化钙含量的增加,复合吸附剂的饱和吸附容量和穿透吸附容量均呈现先增加后降低的趋势。CaCl₂/MOF-303复合材料的最大吸水容量为1077 mg/g。此外,CaCl₂/MOF-303复合材料在经过50次水的吸附和解吸循环后,再生率超过96.1%,表现出良好的解吸性能和优异的结构稳定性,这证明了其在除湿领域具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f9d/11931415/b1e8647afc6b/d4ra08282f-f1.jpg

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