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Water Vapor Adsorption on Biomass Based Carbons under Post-Combustion CO 2 Capture Conditions: Effect of Post-Treatment

机译:燃烧后CO 2捕获条件下基于生物质基碳的水蒸气吸附:后处理的影响

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The effect of post-treatment upon the H 2 O adsorption performance of biomass-based carbons was studied under post-combustion CO 2 capture conditions. Oxygen surface functionalities were partially replaced through heat treatment, acid washing, and wet impregnation with amines. The surface chemistry of the final carbon is strongly affected by the type of post-treatment: acid treatment introduces a greater amount of oxygen whereas it is substantially reduced after thermal treatment. The porous texture of the carbons is also influenced by post-treatment: the wider pore volume is somewhat reduced, while narrow microporosity remains unaltered only after acid treatment. Despite heat treatment leading to a reduction in the number of oxygen surface groups, water vapor adsorption was enhanced in the higher pressure range. On the other hand acid treatment and wet impregnation with amines reduce the total water vapor uptake thus being more suitable for post-combustion CO 2 capture applications.
机译:在燃烧后CO 2捕获条件下,研究了后处理后处理对基碳的吸附性能的影响。通过热处理,酸洗和用胺湿浸渍部分替换氧表面官能团。最终碳的表面化学受到后处理类型的强烈影响:酸处理引入较多的氧气,而热处理后显着降低。碳的多孔纹理也受到后处理的影响:更宽的孔体积略微降低,而酸处理后狭窄的微孔势率仍保持不变。尽管热处理导致氧表面组的数量降低,但在较高的压力范围内增强了水蒸气吸附。另一方面,用胺酸处理和湿浸渍降低总水蒸气吸收,从而更适合于燃烧后CO 2捕获应用。

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