Highly microporous activated carbons from biomass for CO 2 capture and effective micropores at different conditions

吸附 活性炭 微型多孔材料 弗伦德利希方程 朗缪尔 化学 巴(单位) 朗缪尔吸附模型 烟气 吸附剂 化学工程 物理吸附 有机化学 工程类 物理 气象学
作者
Jarosław Serafin,U. Narkiewicz,Antoni W. Morawski,Rafał Wróbel,Beata Michalkiewicz
出处
期刊:Journal of CO2 utilization [Elsevier]
卷期号:18: 73-79 被引量:256
标识
DOI:10.1016/j.jcou.2017.01.006
摘要

This work reports on the preparation and examination of biomass-derived activated carbons featuring high CO2 adsorption capacity. A detailed micropore structure analysis and surface characterization were performed using nitrogen adsorption isotherms at 77 K and carbon dioxide isotherms at 273 K. At 273 K and 1 bar only micropores in the range of 0.30–0.86 nm were mainly effective for CO2 adsorption. When the temperature increased to 298 K, the ranges of effective micropores for CO2 adsorption at 1 bar decreased to 0.30–0.33 nm. For the typical flue gas conditions (partial pressure of CO2 0.15 bar), micropores in the range of 0.30–0.57 nm were mainly effective for CO2 adsorption. The precursor had a strong effect on the textural properties of the resulting carbon and CO2 adsorption. Activated carbon prepared from pomegranate peels showed the highest CO2 adsorption and selectivity (CO2/N2). The experimental isotherm data of activated carbon produced from pomegranate peels were analysed using Langmuir, Freundlich, Sips, and Toth isotherm equations. The fitting details showed that the multitemperature Toth equation is a powerful tool to mathematically represent CO2 isotherms on activated carbon produced from pomegranate peels. The isosteric heat of adsorption was calculated by fitting the Toth equation to the adsorption isotherms and applying the Clausius–Clapeyron equation. The value of the heterogeneity coefficient and isosteric heat of adsorption suggested heterogeneous interactions between CO2 and sorbent surface.

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