4.8 Article

Synthesizing activated carbons from resins by chemical activation with K2CO3

Journal

CARBON
Volume 40, Issue 15, Pages 2747-2752

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/S0008-6223(02)00151-3

Keywords

activated carbon; activation; X-ray diffraction; porosity

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We prepared activated carbons from phenol-formaldehyde (PF) and urea-formaldehyde (UF) resins by chemical activation with K2CO3 with impregnation during the synthesis of the resins. The influence of carbonization temperature (773-1173 K) on the pore structure (specific surface area and pore volume) and the temperature range at which K2CO3 worked effectively as an activation reagent, were investigated. The specific surface area and micropore volume of PF-AC and UF-AC increased with an increase of carbonization temperature in the range of 773-1173 K. We prepared activated 2 carbon with well-developed micropores from PF, and activated carbon with high specific surface area (>3000 m(2)/g) and large meso-pore volume from UF. We deduced the activation mechanism with thermogravimetry and X-ray diffraction. In preparing activated carbon from PF, K2CO3 was reduced by carbon in the PF char. The carbon was removed as CO gas resulting in increased specific surface area and pore volume above 1000 K. In preparing AC from UF, above 900 K the carbon in UF char was consumed during the K2CO3 reduction step. (C) 2002 Elsevier Science Ltd. All rights reserved.

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