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The further activation and functionalization of semicoke for CO2 capture from flue gases

机译:半焦的进一步活化和功能化,用于从烟道气中捕集CO2

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To systematically study CO _(2) adsorption performance, semicoke from the low-rank lignite was further activated and functionalized for CO _(2) capture from flue gases. The effect of the activation conditions, such as the activation temperature, activation time and HCl washing, and the tetraethylenepentamine (TEPA)-functionalization on CO _(2) adsorption were investigated; the pore structure and surface morphology of the semicoke under different activation conditions were characterized. Both the surface structure and adsorption performance of the activated semicoke could be improved under appropriate activation and acid-treatment conditions. The optimal breakthrough and equilibrium adsorption capacity for the TEPA-functionalized HCl-washed activated semicoke were separately 2.68 and 3.70 mmol g ~(?1) at 60 °C for the simulated flue gas of 15 vol% CO _(2) and 85 vol% N _(2) . After ten adsorption–desorption cycles, the equilibrium adsorption capacity was still 3.43 mmol g ~(?1) , and the semicoke-based sorbent showed good regenerability.
机译:为了系统地研究CO _(2)的吸附性能,来自低阶褐煤的半焦被进一步活化并功能化,以从烟道气中捕获CO _(2)。研究了活化温度,活化时间和HCl洗涤时间以及四亚乙基五胺(TEPA)官能化等活化条件对CO_(2)吸附的影响。表征了不同活化条件下半焦的孔结构和表面形貌。在适当的活化和酸处理条件下,活化半焦的表面结构和吸附性能均可得到改善。对于TEPA-官能化的HCl洗涤的活性半焦,在60°C下,模拟烟道气的CO含量为15%(CO _)(2)和85vol%时,最佳穿透和平衡吸附容量分别为2.68和3.70 mmol g〜(?1) %N _(2)。经过十个吸附-解吸循环,平衡吸附容量仍为3.43 mmol g〜(?1),并且基于半焦的吸附剂显示出良好的可再生性。

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