State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, POPs Research Center, Tsinghua University, Beijing, 100084, PR China.
ChemSusChem. 2012 Dec;5(12):2354-60. doi: 10.1002/cssc.201200570. Epub 2012 Nov 6.
Cost-effective biomass-derived activated carbons with a high CO(2) adsorption capacity are attractive for carbon capture. Bamboo was found to be a suitable precursor for activated carbon preparation through KOH activation. The bamboo size in the range of 10-200 mesh had little effect on CO(2) adsorption, whereas the KOH/C mass ratio and activation temperature had a significant impact on CO(2) adsorption. The bamboo-derived activated carbon had a high adsorption capacity and excellent selectivity for CO(2) , and also the adsorption process was highly reversible. The adsorbed amount of CO(2) on the granular activated carbon was up to 7.0 mmol g(-1) at 273 K and 1 bar, which was higher than almost all carbon materials. The pore characteristics of activated carbons responsible for high CO(2) adsorption were fully investigated. Based on the analysis of narrow micropore size distribution of several activated carbons prepared under different conditions, a more accurate micropore range contributing to CO(2) adsorption was proposed. The volume of micropores in the range of 0.33-0.82 nm had a good linear relationship with CO(2) adsorption at 273 K and 1 bar, and the narrow micropores of about 0.55 nm produced the major contribution, which could be used to evaluate CO(2) adsorption on activated carbons.
具有高 CO2 吸附能力的经济高效的生物量衍生活性炭对于碳捕集具有吸引力。研究发现,通过 KOH 活化,竹子适合作为活性炭制备的前体。在 10-200 目范围内的竹材尺寸对 CO2 吸附几乎没有影响,而 KOH/C 质量比和活化温度对 CO2 吸附有显著影响。竹基活性炭对 CO2 具有高吸附容量和优异的选择性,吸附过程也高度可逆。在 273 K 和 1 bar 下,颗粒活性炭对 CO2 的吸附量高达 7.0 mmol g-1,高于几乎所有的碳材料。对高 CO2 吸附活性炭的孔特征进行了充分研究。基于对不同条件下制备的几种活性炭的窄微孔尺寸分布的分析,提出了一个更准确的有助于 CO2 吸附的微孔范围。在 273 K 和 1 bar 下,0.33-0.82nm 范围内的微孔体积与 CO2 吸附呈良好的线性关系,约 0.55nm 的窄微孔产生了主要贡献,可用于评估活性炭对 CO2 的吸附。