Adsorption of CO2 on Molecular Sieves and Activated Carbon
作者:Ranjani Siriwardane, Ming‐Shing Shen, Edward P. Fisher, James Poston · 发表于:Energy & Fuels · 年份:2001 · DOI:10.1021/ef000241s · 被引用次数:937 · 研究领域:Carbon Dioxide Capture Technologies、Phase Equilibria and Thermodynamics、Chemical Looping and Thermochemical Processes
Pressure swing adsorption (PSA) and temperature swing adsorption (TSA) are some of the potential techniques that could be applicable for removal of CO 2 from high-pressure fuel gas streams. Molecular sieves and activated carbons are some of the sorbents that could be utilized in the PSA process. Volumetric adsorption studies of CO 2, N 2, or H 2 on molecular sieve 13X, molecular sieve 4A, and activated carbon were conducted at 25 °C up to a pressure of 300 psi (∼2× 106 Pa). Preferential adsorption of CO 2 was observed with all three sorbents. The adsorption capacity of CO 2 for molecular sieve 13X was higher than that for molecular sieve 4A at all pressures up to 300 psi. At low pressures (<25 psi) the adsorption capacity for CO 2 of activated carbon was lower than that of molecular sieve 13X, but at higher pressures (>25 psi) activated carbon exhibited significantly higher CO 2 capacities than were found for molecular sieves. Competitive adsorption of CO 2 from gas mixtures also indicated that both molecular sieve 13X and activated carbon can be utilized for separation of CO 2 from gas mixtures.