Nano-space Deformation in Active Carbon by Heat Treatment
Activated carbon fibers have nano-space that contributes to their huge specific surface area (SSA) of more than 1000m2/g. The SSA shows a critical decrease at HTT-1600°C, with an almost constant value of SSA up to this HTT, although the basicstructure is conserved up to HTT=2000°C. For the mechanism...
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Veröffentlicht in: | TANSO 1993/12/28, Vol.1993(160), pp.279-282 |
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description | Activated carbon fibers have nano-space that contributes to their huge specific surface area (SSA) of more than 1000m2/g. The SSA shows a critical decrease at HTT-1600°C, with an almost constant value of SSA up to this HTT, although the basicstructure is conserved up to HTT=2000°C. For the mechanism of this sudden decrease in SSA, two ideas based on a molecular sieve effect in the crystallite intra-space and a percolation of crystallites are discussed. |
doi_str_mv | 10.7209/tanso.1993.279 |
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The SSA shows a critical decrease at HTT-1600°C, with an almost constant value of SSA up to this HTT, although the basicstructure is conserved up to HTT=2000°C. For the mechanism of this sudden decrease in SSA, two ideas based on a molecular sieve effect in the crystallite intra-space and a percolation of crystallites are discussed.</abstract><pub>THE CARBON SOCIETY OF JAPAN</pub><doi>10.7209/tanso.1993.279</doi><tpages>4</tpages><oa>free_for_read</oa></addata></record> |
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source | Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals |
subjects | Activated Carbon Fiber Adsorption Molecular Sieve Effect Percolaton Specific Surface Area |
title | Nano-space Deformation in Active Carbon by Heat Treatment |
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