吸附
体积热力学
解吸
热稳定性
材料科学
比表面积
化学工程
热容
水蒸汽压
水蒸气
蒸汽压
化学
热力学
有机化学
催化作用
工程类
物理
作者
Jiali Liu,Guodong Fu,Ping Wu,Shang Liu,Jinguang Yang,Shiping Zhang,Li Wang,Min Xu,Xiulan Huai
出处
期刊:Chinese Physics B
[IOP Publishing]
日期:2022-06-22
卷期号:31 (11): 118101-118101
被引量:4
标识
DOI:10.1088/1674-1056/ac7b1f
摘要
UiO-66 is a potential material for adsorption heat transformation (AHT) with high specific surface area, and excellent thermal and chemical stability. However, the low water adsorption capacity of UiO-66 in the low relative pressure range (0 < P / P 0 < 0.3) limits its application in AHT. We prepare the UiO-66 modified by MgCl 2 through using the solvothermal method and impregnation method, and study their water vapor adsorption performances and heat storage capacities. Attributed to the extremely high saturated water uptake and excellent hydrophilicity of MgCl 2 , the water adsorption performance of UiO-66 is improved, although the introduction of MgCl 2 reduces its specific surface area and pore volume. The water adsorption capacity at P / P 0 = 0.3 and the saturated water adsorption capacity of the UiO-66 (with MgCl 2 content of 0.57 wt%) modified by the solvothermal method are 0.27 g/g and 0.57 g/g at 298 K, respectively, which are 68.8% and 32.6% higher than the counterparts of pure UiO-66, respectively. Comparing with pure UiO-66, the water adsorption capacity of the UiO-66 (with MgCl 2 content of 1.02 wt%) modified by the impregnation method is increased by 56.3% and 14.0% at the same pressure, respectively. During 20 water adsorption/desorption cycles, the above two materials show high heat storage densities (∼ 1293 J/g and 1378 J/g). Therein, the UiO-66 modified by the solvothermal method exhibits the excellent cyclic stability. These results suggest that the introduction of an appropriate amount of MgCl 2 makes UiO-66 more suitable for AHT applications.
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