Preparation of activated carbons from bituminous coal pitches

High-porosity carbons were prepared from bituminous coal pitches by combining chemical and physical activation. The chemical activation process consisted of potassium hydroxide impregnation followed by carbonization in nitrogen atmosphere. The effect of the KOH impregnation ratio on the surface area...

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Published inApplied surface science Vol. 238; no. 1-4; pp. 347 - 354
Main Authors Gañan, J., González-Garcı́a, C.M., González, J.F., Sabio, E., Macı́as-Garcı́a, A., Dı́az-Dı́ez, M.A.
Format Journal Article Conference Proceeding
LanguageEnglish
Published Amsterdam Elsevier B.V 15.11.2004
Elsevier Science
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Abstract High-porosity carbons were prepared from bituminous coal pitches by combining chemical and physical activation. The chemical activation process consisted of potassium hydroxide impregnation followed by carbonization in nitrogen atmosphere. The effect of the KOH impregnation ratio on the surface area and pore volumes evolution of the carbons derived from mesophase pitch was studied. The optimum KOH:pitch ratio was fixed to realize a physical activation process in order to increase the textural parameters of the KOH-activated carbons. Physical activation was performed by carbonizing the KOH-activated carbons followed by gasifying with air. The influence of the carbonization temperature and the residence time of the gasification with air were explored to optimize those preparation parameters.
AbstractList High-porosity carbons were prepared from bituminous coal pitches by combining chemical and physical activation. The chemical activation process consisted of potassium hydroxide impregnation followed by carbonization in nitrogen atmosphere. The effect of the KOH impregnation ratio on the surface area and pore volumes evolution of the carbons derived from mesophase pitch was studied. The optimum KOH:pitch ratio was fixed to realize a physical activation process in order to increase the textural parameters of the KOH-activated carbons. Physical activation was performed by carbonizing the KOH-activated carbons followed by gasifying with air. The influence of the carbonization temperature and the residence time of the gasification with air were explored to optimize those preparation parameters.
Author Dı́az-Dı́ez, M.A.
González-Garcı́a, C.M.
Macı́as-Garcı́a, A.
Sabio, E.
González, J.F.
Gañan, J.
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  organization: Dpto. Electrónica e Ingenierı́a Electromecánica, Escuela de Ingenierı́as Industriales, Universidad de Extremadura, 06071 Badajoz (España), Spain
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  surname: Dı́az-Dı́ez
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  organization: Dpto. Electrónica e Ingenierı́a Electromecánica, Escuela de Ingenierı́as Industriales, Universidad de Extremadura, 06071 Badajoz (España), Spain
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Issue 1-4
Keywords 81.20.E
Physical activation
68.35.B
Chemical activation
Anisotropic phase
Activated carbons
Pitch
Activated carbon
Porous materials
Preparation
Activation
Bituminous coal
Language English
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Snippet High-porosity carbons were prepared from bituminous coal pitches by combining chemical and physical activation. The chemical activation process consisted of...
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SubjectTerms Activated carbons
Anisotropic phase
Chemical activation
Cross-disciplinary physics: materials science; rheology
Exact sciences and technology
Materials science
Physical activation
Physics
Pitch
Porous materials; granular materials
Specific materials
Title Preparation of activated carbons from bituminous coal pitches
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