Structure and properties of PAN-based activated carbon hollow fibers: Effect of ammonium dibasic phosphate pretreatment
β Scribed by Junfen Sun; Chunju He; Lishun Wu
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 160 KB
- Volume
- 116
- Category
- Article
- ISSN
- 0021-8995
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β¦ Synopsis
Abstract
Polyacrylonitrile (PAN) hollow fibers were pretreated with ammonium dibasic phosphate aqueous solution, then further oxidized in air, carbonized in nitrogen, and activated with carbon dioxide. The effects of pretreatment concentration of ammonium dibasic phosphate aqueous solution on the microstructure, specific surface, pore size distribution, and adsorption properties of PANβbased activated carbon hollow fibers (PANβACHF) were studied in this work. After the activation process, the BrunanerβEmmettβTeller (BET) surface area of the PANβACHF and surface area of mesopores in the PANβACHF increases and reaches 513 m^2^g^β1^ and 66 m^2^g^β1^ respectively when the concentration of ammonium dibasic phosphate aqueous solution is 4% (wt %). The adsorptions to creatinine are much high, reach more than 90% over all the concentration of ammonium dibasic phosphate aqueous solution. The adsorptions to VB~12~ of PANβACHF reach 86% when the concentration of ammonium dibasic phosphate aqueous solution is 4% (wt %). The dominant pore sizes of mesopores in PANβACHF range from 2 to 5 nm. Β© 2010 Wiley Periodicals, Inc. J Appl Polym Sci, 2010
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## Abstract Polyacrylonitrile (PAN) hollow fibers were pretreated with ammonium dibasic phosphate, then further oxidized in air, carbonized in nitrogen, and activated with carbon dioxide. The effects of activation temperature of a precursor fiber on the microstructure, specific surface, poreβsize d
## Abstract Polyacrylonitrile (PAN) hollow fibers were pretreated with ammonium dibasic phosphate, then further oxidized in air, carbonized in nitrogen, and activated with carbon dioxide. The effects of activation time of a precursor fiber on the microstructure, specific surface area, poreβsize dis