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Hierarchical pore structure of activated carbon fabricated by CO_2/microwave for volatile organic compounds adsorption 被引量:17

Hierarchical pore structure of activated carbon fabricated by CO_2/microwave for volatile organic compounds adsorption
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摘要 An activated carbon pore-expanding technique was achieved through innovative reactivation by CO_2/microwave.The original and modified activated carbons were characterized by nitrogen adsorption–desorption,scanning electron microscopy,transmission electron microcopy,and Fourier transform infrared spectroscopy.The mesopore volume increased from 0.122 cm^3·g^(-1) to 0.270 cm^3·g^(-1),and a hierarchical pore structure was formed.A gradual decrease in the phenolic hydroxyl and carboxyl groups on the surface of activated carbon enhanced the surface inertia of granular activated carbon(GAC).The toluene desorption rate of the modified sample increased by 8.81% compared with that of the original GAC.Adsorption isotherm fittings revealed that the Langmuir model was applicable for the original and modified activated carbons.The isosteric adsorption heat of toluene on the activated carbon decreased by approximately 50%,which endowed the modified sample with excellent stability in application.The modified samples showed an enhanced desorption performance of toluene,thereby opening a way to extend the cycle life and improve the economic performance of carbon adsorbent in practical engineering applications. An activated carbon pore-expanding technique was achieved through innovative reactivation by CO2/microwave.The original and modified activated carbons were characterized by nitrogen adsorption–desorption,scanning electron microscopy,transmission electron microcopy,and Fourier transform infrared spectroscopy.The mesopore volume increased from 0.122 cm3·g-1 to 0.270 cm3·g-1,and a hierarchical pore structure was formed.A gradual decrease in the phenolic hydroxyl and carboxyl groups on the surface of activated carbon enhanced the surface inertia of granular activated carbon(GAC).The toluene desorption rate of the modified sample increased by 8.81% compared with that of the original GAC.Adsorption isotherm fittings revealed that the Langmuir model was applicable for the original and modified activated carbons.The isosteric adsorption heat of toluene on the activated carbon decreased by approximately 50%,which endowed the modified sample with excellent stability in application.The modified samples showed an enhanced desorption performance of toluene,thereby opening a way to extend the cycle life and improve the economic performance of carbon adsorbent in practical engineering applications.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第1期81-88,共8页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China(21506194,21676255) the Natural Science Foundation of Zhejiang Province(Y16B070025) the Commission of Science and Technology of Zhejiang Province(2013C03021,2017C33106)
关键词 解吸附作用 孔结构 有机化合物 激活 扫描电子显微镜 不稳定 CO2 FOURIER Activated carbon CO2/microwave Pore regulation volatile organic compounds Desorption
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