4.4 Article

Influence of pore structure of granular activated carbon prepared from anthracite on the adsorption of CO2, CH4 and N2

期刊

KOREAN JOURNAL OF CHEMICAL ENGINEERING
卷 39, 期 3, 页码 724-735

出版社

KOREAN INSTITUTE CHEMICAL ENGINEERS
DOI: 10.1007/s11814-021-0948-4

关键词

Granular Activated Carbon; Pore Structure; CH4 Enrichment; Adsorption Selectivity; Pressure Swing Adsorption

资金

  1. Chongqing Basic Science and Advanced Technology Research Program [cstc2017jcy-jAX0266]
  2. Chongqing Science and Technology Commission Projects [cstc2018jcyj-yszxX0005, cstc2020yszx-jcyjX0008]
  3. Natural Science Foundation Project of Chongqing [cstc2020jcyj-msxm1228]

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This study prepared a series of granular activated carbon (GAC) samples with similar surface chemical properties but different pore structures from anthracite. It was found that the pore size distribution was the decisive factor affecting the concentrating effect of CH4 or CO2 by GAC.
A series of granular activated carbon (GAC) samples with similar surface chemical properties but different pore structures were prepared from anthracite. The maximum adsorption capacities of the prepared CO2, CH4, and N-2 at 298 K and 2.0MPa were 4.27mmol/g, 2.54mmol/g, and 1.46mmol/g, respectively, and the adsorption selectivity parameters, i.e., alpha(CH4,N2) and alpha(CO2,CH4), were 3.23 and 3.06, respectively. By using the GAC with the optimum pore size as adsorbent, the concentration of methane in the nitrogen-methane (CH4/N-2) mixture was concentrated from 30% to 63.5% via a single-column single-cycle pressure swing adsorption (PSA) process. The pore size distribution of the GAC samples was dominated by micropores, with specific surface area in the range of 330-500m(2)/g and micropore volume in the range of 0.12-0.19 cm(3)/g. Although the specific surface area and pore volume of micropores played an important role in the separation performance, the pore size distribution was found to be the decisive factor. In particular, the micropores with sizes in the range of 5.0-10.0 angstrom were the main factor affecting the concentrating effect of CH4 or CO2 by GAC.

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