4.6 Article

Carbon Molecular Sieves Prepared from Polymeric Precursors: Porous Structure and Hydrogen Adsorption Properties

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INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH
卷 48, 期 15, 页码 7125-7131

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AMER CHEMICAL SOC
DOI: 10.1021/ie900091n

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  1. MEC [MAT2007-61734]
  2. Excellence Insidepores [NMP3-CT2004-500895]
  3. MEC GV
  4. UV [RYC2137/06]

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The textural characterization of a series of carbon molecular sieves (CMS) prepared from different polymer precursors has been investigated using N-2 adsorption at 77 K and CO2 adsorption at 273 K, together with immersion calorimetry into liquids of different molecular dimensions. Experimental results show that the carbon molecular sieves cover a wide range of porosity, front pure microporous CMS (pore diameter below 0.56 nm) to CMS combining larger micropores (above 0.7 nm) together with a certain proportion of mesoporosity. H-2 adsorption measurements on these CMS at cryogenic temperature (77 K) and ambient pressure (0.1 MPa) show that the hydrogen adsorption capacity exhibits a linear correlation with the volume of narrow micropores (V-n). Furthermore, these results confirm experimentally the necessity of a tailored micropore size in order to achieve an optimum packing density of the adsorbed hydrogen molecules (micropore size around 0.6 nm).

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