4.6 Article

CNT@Cu3(BTC)2 and Metal-Organic Frameworks for Separation of CO2/CH4 Mixture

期刊

JOURNAL OF PHYSICAL CHEMISTRY C
卷 115, 期 40, 页码 19864-19871

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jp206959k

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资金

  1. Huo Yingdong Fundamental Research Foundation [121070]
  2. NSF of China [20736002, 20821004]
  3. National Basic Research Program of China [2011-CB706900]
  4. Ministry of Education [20100010110001]
  5. BUCT

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Effectively separating CO2 from the natural gas, which is one of alternative friendly fuels, is a very important issue. A hybrid material CNT@Cu-3(BTC)(2) has been prepared to separate CO2 from the CO2/CH4 mixture. For comparison of separation efficiency, a series of representative metal organic frameworks (MOF-177, UMCM-1, ZIF-8, MIL-53 (Al), and Cu-3(BTC)(2)) have also been synthesized by the solvothermal method. Adsorption isotherms of CO2 and CH4 pure gases are measured by Hiden Isochema Intelligent Gravimetric Analyzer (IGA-003). The dual-site Langmuir-Freundlich (DSLF)-based ideal adsorption solution theory (IAST) is used to predict adsorption of each component in the CO2/CH4 mixture. The IAST-predicted results show that the hybrid material CNT@Cu-3(BTC)(2) exhibits the greatest selectivity among the six materials, and its selectivity keeps in the range of 5.5 to 7.0 for equimolar CO2/CH4 mixture at 1 < p < 20 bar, which is higher than activated carbons. Moreover, the selectivity of CNT@Cu-3(BTC)(2) for the CO2/CH4 mixture keeps almost no change with the composition of CH4, which is one of the excellent properties as a promising separation material. In short, this hybrid material CNT@Cu-3(BTC)(2) shows great potential in separation and purification of CO2 from various CO2/CH4 mixtures by adsorptive processes in important industrial systems.

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