吸附
动力学
重量分析
解吸
水蒸气
材料科学
化学工程
朗缪尔吸附模型
热重分析
朗缪尔
化学
有机化学
工程类
物理
量子力学
作者
Jian Yan,Yingfeng Yu,Chen Ma,Jing Xiao,Qibin Xia,Yingwei Li,Zhong Li
标识
DOI:10.1016/j.applthermaleng.2015.03.040
摘要
A novel composite ([email protected]) of MIL-101 (Cr) and graphite oxide (GO) with high water vapor capacity for adsorption heat pumps (AHPs) was developed in this work. A series of composites [email protected] with varied GO loading were synthesized using a hydrothermal method, and characterized by N2 adsorption test, SEM, XRD, thermal gravimetric analysis. The adsorption isotherms and kinetics of water vapor over the composites were determined by gravimetric method. Regeneration performance of the composites was evaluated in multiple adsorption–desorption cycles. Results showed that [email protected] possessed a super-high adsorption capacity for water vapor up to 1.58 g/g, which was attributed to its ultrahigh Langmuir specific surface area (5188 m2/g) and pore volume (1.78 cm3/g). The isosteric heat of water vapor adsorption on [email protected] was calculated to be in the range of 44–56 kJ/mol, slightly higher than that on MIL-101 (44–53 kJ/mol). Diffusion coefficients of water vapor over [email protected] composites were ranged from 0.133 × 10−10 to 4.485 × 10−10 cm2/s at 298–313 K. Additionally, six consecutive adsorption–desorption cycles suggesting that the synthesized [email protected] had excellent reversibility and stability for water vapor adsorption. These superior water vapor adsorption/desorption performances make [email protected] a promising candidate as the water vapor adsorbent for AHPs process.
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