4.4 Article

Comparison of hydroxide-based adsorbents of Mg(OH)2 and Ca(OH)2 for CO2 capture: utilization of response surface methodology, kinetic, and isotherm modeling

期刊

GREENHOUSE GASES-SCIENCE AND TECHNOLOGY
卷 10, 期 5, 页码 948-964

出版社

WILEY PERIODICALS, INC
DOI: 10.1002/ghg.2015

关键词

CO(2)capture; chemical adsorption; hydroxide adsorbent; modeling

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CO(2)capture using hydroxide-based adsorbents is studied experimentally for two adsorbents of Mg(OH)(2)and Ca(OH)(2). The adsorbents are characterized before and after the adsorption process by X-ray diffraction and Fourier transform infrared spectroscopy analyses. The experiments were carried out in the ranges of 25-65 degrees C, 2-10 bar, and 0.5-2.5 g for temperature, initial pressure, and weight of adsorbent, respectively. Based on the response surface methodology with a central composite design approach, predicted CO(2)adsorption capacities are fitted well withR(2)values of 0.981 and 0.929 for Mg(OH)(2)and Ca(OH)(2), respectively. The Freundlich isotherm model withR(2)values of 0.985 and 0.994 is the best model for adsorption capacity prediction of Mg(OH)(2)and Ca(OH)(2), respectively. Also, the pseudo-second-order kinetic model withR(2)values more than 0.98 is selected as the best model for both adsorbents. From the thermodynamic parameters, the reactive adsorption process is found to be exothermic and spontaneous. Due to higher adsorption percentage and capacity at the same conditions, Ca(OH)(2)is more efficient than Mg(OH)(2)for CO(2)capture at studied ranges. (c) 2020 Society of Chemical Industry and John Wiley & Sons, Ltd.

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