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Enhance SO_2 adsorption performance of biochar modified by CO_2 activation and amine impregnation

机译:增强通过CO_2活化和胺浸渍改性的生物炭对SO_2的吸附性能

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摘要

To enhance the SO2 adsorption of biochar, CO2 activation and impregnation with methyldiethanolamine (MDEA) was simultaneously employed to improve its physicochemical characteristics. Furthermore, the effects of the pore structure and nitrogen functionality on SO2 adsorption were also explored. The results show that after CO2 activation, the specific surface area of biochar increased from 56.91m(2)/g to 755.35m(2)/g, while this figure dropped to 25.54m(2)/g or even lower after impregnation with MDEA. Although the pore structure of activated biochar was destroyed, the surface nitrogen content of the nitrogen-enriched biochar (with 10% MDEA impregnation) increased from 1.46% to its highest level (7.20%); moreover, as indicated by Fourier Transform Infrared (FTIR) spectroscopy, the nitrogen functional groups introduced on the surface of the nitrogen-enriched biochar were mainly C-N. After 10% MDEA impregnation, the maximum SO2 adsorption capacity increased from 57.8 mg/g to 156.2 mg/g. Changes to physical and chemical properties in the nitrogen-enriched biochar indicate that the nitrogen functional groups on the surface are more important than the pore structure for SO2 adsorption at 393 K, and that the dominant nitrogen species are quaternary nitrogen.
机译:为了增强生物炭对SO2的吸附,同时采用了CO2活化和甲基二乙醇胺(MDEA)浸渍以改善其理化特性。此外,还研究了孔结构和氮官能度对SO 2吸附的影响。结果表明,CO2活化后,生物炭的比表面积从56.91m(2)/ g增加到755.35m(2)/ g,而该数字在用碳纤维浸渍后下降到25.54m(2)/ g甚至更低。 MDEA。尽管活化的生物炭的孔结构被破坏,但是富氮生物炭(用10%MDEA浸渍)的表面氮含量从1.46%增加到最高水平(7.20%)。此外,如傅立叶变换红外光谱(FTIR)所表明的,引入富氮生物炭表面上的氮官能团主要是C-N。在10%MDEA浸渍后,最大的SO2吸附容量从57.8 mg / g增加到156.2 mg / g。富氮生物炭中物理和化学性质的变化表明,在393 K时,表面的氮官能团比孔结构对SO2的吸附更重要,并且主要的氮种类是季氮。

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