微型多孔材料
吸附
金属有机骨架
朗缪尔
铜
乙烯
化学
苯
巴(单位)
化学工程
热力学
材料科学
物理化学
有机化学
催化作用
工程类
气象学
物理
作者
Vanessa F. D. Martins,Ana M. Ribeiro,Alexandre Ferreira,U‐Hwang Lee,Young Kyu Hwang,Jong‐San Chang,José M. Loureiro,Alı́rio E. Rodrigues
标识
DOI:10.1016/j.seppur.2015.06.012
摘要
The search for novel and more economical ways to separate olefins and paraffins by adsorptive processes has motivated the appearance of improved materials. Recently, metal organic frameworks (MOFs) have excelled as a new class of microporous adsorbents for separations of this nature. This work focus on the potential application of copper based MOF beads – Cu-BTC – prepared at the Korean Research Institute of Chemical Technology (KRICT) for the separation of C2 hydrocarbons mixtures by adsorptive processes. To this purpose, single equilibrium adsorption data of ethane and ethylene on Cu-BTC beads were assessed at temperatures of 50, 75 and 100 °C and pressures up to 7 bar. The obtained experimental data set was regressed using the Dual Site Langmuir (DSL) model and multicomponent equilibrium results were calculated using the extended Dual Site Langmuir (ExDSL) equation as well as by the ideal adsorbed solution theory (IAST). Data from the literature at 22, 50, 75 and 100 °C on Cu-BTC, in powder form, are also presented for comparison. Additionally, adsorption kinetics was assessed by measuring single and multicomponent breakthrough curves at 1.5 bar and 100 °C. A mathematical model implemented in gProms® environment (Process Systems Enterprise, London, UK) was validated by the simulation of the breakthrough curves.
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