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- W2042071727 abstract "Adsorption equilibrium, thermodynamics, and kinetics of CH4, N2, and CO2 were investigated by volumetric-chromatographic and inverse gas chromatographic (IGC) methods on the Al-BDC MOF. The binary adsorption data from the volumetric-chromatographic experiments represents that the Al-BDC MOF has a high CO2/CH4 selectivity ca. 11 and a CH4/N2 selectivity ca. 4.3 at 303 K, and appears to be a good candidate for the CH4 separation. The initial adsorption heats of CH4, N2, and CO2 on the Al-BDC MOF were determined to be 15.3, 11.5, and 32.2 kJmol−1 by IGC method, respectively. Moreover, the micropore diffusivities of N2, CH4 and CO2 in the Al-BDC MOF at 303 K were also estimated to be 1.58 × 10−7 cm2/s, 7.04 × 10−8 cm2/s, and 3.95 × 10−9 cm2/s, respectively. The results indicate that micropores play a crucial role in the adsorptive separation of the CH4/N2 and CH4/CO2 mixtures, and the IGC method is a validity manner to estimate the thermodynamic and kinetic parameters of MOF adsorbents." @default.
- W2042071727 created "2016-06-24" @default.
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- W2042071727 date "2014-11-20" @default.
- W2042071727 modified "2023-09-26" @default.
- W2042071727 title "Experimental Evaluation of the Adsorption, Diffusion, and Separation of CH<sub>4</sub>/N<sub>2</sub>and CH<sub>4</sub>/CO<sub>2</sub>Mixtures on Al-BDC MOF" @default.
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- W2042071727 doi "https://doi.org/10.1080/01496395.2014.967407" @default.
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