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多孔石墨化碳对苯的吸附去除及其电热再生。

Porous graphitized carbon for adsorptive removal of benzene and the electrothermal regeneration.

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

出版信息

Environ Sci Technol. 2012 Nov 20;46(22):12648-54. doi: 10.1021/es303069j. Epub 2012 Oct 31.

Abstract

Graphitized carbons with mesoporous and macroporous structures were synthesized by a facile template-catalysis procedure using resorcinol and formaldehyde as carbon precursors and particulate hydrated metal oxides as both template and catalyst precursors. The materials were used as novel adsorbents for low-concentration benzene vapor. Furthermore, on the basis of the good electrical conductivities associated with the graphitized structures, an electrothermal desorption technique, which involved passing electric currents through the adsorbents to generate Joule heat, was employed to regenerate the saturated adsorbents and produce enriched benzene vapors. In comparison to microporous activated carbon, the porous graphitized carbons could afford a much quicker and more efficient regeneration by electrothermal desorption technique due to their enhanced conductivity and larger pore sizes. In addition, the concentration of the desorbed organics could be controlled by adjusting the applied voltages, which might be interesting for practical secondary treatment. It is promising that the joint utilization of porous graphitized carbon adsorbents and electrothermal desorption technique might develop effective and energy-saving processes for VOCs removal.

摘要

介孔-大孔石墨化碳通过简便的模板催化法制备,以间苯二酚和甲醛为碳前体,颗粒状水合金属氧化物为模板和催化剂前体。该材料可用作低浓度苯蒸气的新型吸附剂。此外,基于与石墨化结构相关的良好导电性,采用了一种电热解吸技术,通过电流通过吸附剂来产生焦耳热,以再生饱和吸附剂并产生富含苯蒸气。与微孔活性炭相比,由于多孔石墨化碳的导电性增强和孔径增大,电热解吸技术可以更快、更有效地进行再生。此外,通过调节施加的电压,可以控制解吸有机物的浓度,这对于实际的二次处理可能很有趣。有望开发出有效节能的多孔石墨化碳吸附剂和电热解吸技术联合使用的 VOCs 去除工艺。

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