634
Views
15
CrossRef citations to date
0
Altmetric
Original Articles

Comparison of Toluene Adsorption Among Granular Activated Carbon and Different Types of Activated Carbon Fibers (ACFs)

, &
Pages 573-579 | Published online: 21 Sep 2011

REFERENCES

  • Feng , W. , Kwon , S. Borguet , E. 2005 . Adsorption of hydrogen sulfide onto activated carbon fibers: Effect of pore structure and surface chemistry . Environ. Sci. Technol. , 39 : 9744 – 9749 .
  • Lo , S. Y. 2002 . “Characterization of the Chemical, Physical, Thermal and Electrical Properties of a Series of Activated Carbon Fiber Cloths.” , Urbana , Ill : University of Illinois at Urbana-Champaign . M.S. thesis
  • Huang , Z. H. F. Kang , Y.P. Zheng . 2002 . Adsorption of trace polar methy-ethyl-ketone and non-polar benzene vapors on viscose rayon-based activated carbon fibers . Carbon , 40 : 1363 – 1367 .
  • Huang , Z. H. , Kang , F. Liang , K. M. 2003 . Breakthrough of methyethylketone and benzene vapors in activated carbon fiber beds . J. Hazard Mater , B98 : 107 – 115 .
  • Cheng , T. , Jiang , Y. Zhang , Y. 2004 . Prediction of breakthrough curves for adsorption on activated carbon fibers in a fixed bed . Carbon , 42 : 3081 – 3085 .
  • Das , D. , Gaur , V. and Verma , N. 2004 . Removal of volatile organic compound by activated carbon fiber . Carbon , 42 : 2949 – 2963 .
  • Hashisho , Z. and Rood , M. 2005 . Microwave-swing adsorption to capture and recover vapors from air streams with activated carbon fiber cloth . Environ. Sci. Technol , 39 : 6851 – 6859 .
  • Lorimier , C. , Subrenat , A. Le Coq , L. 2005 . Adsorption of toluene onto activated carbon fibre cloths and felts: Application to indoor air treatment . Environ. Technol , 26 : 1217 – 1230 .
  • Takeuchi , Y. , Shigeta , A. and Iwamoto , H. 1993 . Adsorption of solvent vapor mixture in air by activated carbon fiber bed . Separat. Technol. , 3 ( 1 ) : 46 – 52 .
  • Ramirez , D. , Sullivan , P. D. Rood , M. J. 2004 . Equilibrium adsorption of organic vapors on phenol-, tire- and coal-derived activated carbons . J. Environ. Eng. , 130 : 231 – 241 .
  • Sullivan , P. D. , Rood , M. J. Dombrowski , K. D. 2004 . Capture and recovery of organic compounds using adsorption and electrothermal regeneration . J. Environ. Eng. , 130 : 258 – 267 .
  • Fournel , L. , Mocho , P. Fanlo , J. L. 2005 . External capillary condensation and adsorption of VOCs onto activated carbon fiber cloth and felt . Environ. Technol. , 26 : 1277 – 1287 .
  • Mallouk , K. E. , Johnsen , D. L. and Rood , M. J. 2010 . Capture and recovery of isobutane by electrothermal swing adsorption with post-desorption liquefaction . Environ. Sci. Technol. , 44 ( 18 ) : 7070 – 7075 .
  • Kohata , T. , Fukuda , T. Ishizaki , N. 1980 . Development concerning application of activated carbon fiber . Kagaku Kogaku , 44 : 343 – 350 . (In Japanese)
  • Fukuda , T. , Omori , S. , Asakura , S. and Matsumoto , K. 1989 . Recovery of freon by activated carbon fiber . Kagaku Souchi , 31 : 55 – 61 . (In Japanese)
  • Kisamori , S. , Kurod , K. Kawano , S. 1994 . Oxidative removal of SO2 and recovery of H2SO4 over poly(acrylonitrile)-based active carbon fiber . Energy Fuels , 8 ( 6 ) : 1337 – 1340 .
  • Mochida , I. , Kisamori , S. Hironaka , M. 1994 . Oxidation of NO into NO2 over active carbon fibers . Energy Fuels , 8 ( 6 ) : 1341 – 1344 .
  • Lozano-Castello , D. , Cazorla-Amoros , D. and Linares-Solano , A. 2002 . Powdered activated carbons and activated carbon fibers for methane storage: A comparative study . Energy Fuels , 16 ( 5 ) : 1321 – 1328 .
  • Kitagawa , H. 1993 . Proceedings of Nippon Kagakukai, 65th Spring Meeting . : 153 Chemical Society of Japan
  • Girman , J. R. , Hadwen , G. E. Burton , L. E. August 8–13, 1999 . “ Individual volatile organic compound prevalence and concentrations in 56 buildings of the Building Assessment Survey and Evaluation (BASE) Study, Edinburgh ” . In Proceedings of Indoor Air 1999, The 8th International Conference on Indoor Air Quality and Climate , Vol. 2 , 460 Scotland : Edinburgh .
  • Brasquet , C. and Le Cloirec , P. 1997 . Adsorption onto activated carbon fibers: Application to water and air treatments . Carbon , 35 ( 9 ) : 1307 – 1313 .
  • National Institute of Occupational Safety and Health (NIOSH) . 2006 . Determination of Organic Vapor (Carbon Tetrachloride) Service Life Test, Air-Purifying Respirators with Cartridges Standard Testing Procedure (STP) , Pittsburgh , Pa. : NIOSH, National Personal Protective Technology Laboratory . Procedure No. TEB-APR-STP-0046A
  • Watts , R. J. 1998 . Hazardous Wastes: Sources, Pathways, Receptors , New York : John Wiley & Sons, Inc .
  • Daniel , W. W. 1991 . Biostatistics: A Foundation for Analysis in the Health Sciences , 5th ed. , New York : John Wiley & Sons, Inc .
  • Jonas , L. A. and Rehrmann , J. A. 1973 . Predictive equations in gas adsorption kinetics . Carbon , 11 : 59 – 64 .
  • Jonas , L. A. , Tewari , Y. B. and Sansone , E. B. 1979 . Prediction of adsorption rate constants of activated carbon for various vapors . Carbon , 17 : 345 – 349 .
  • Gregg , S. J. and Sing , K. S.W. 1982 . Adsorption, Surface Area and Porosity , 2nd ed , London : Academic Press .
  • Webb , P. A. and Orr , C. 1997 . Analytical Methods in Fine Particle Technology , Norcross , Ga : Micromeritics Instrument Corp. .
  • Foster , K. L. , Fuerman , R. G. Economy , J. 1992 . Adsorption characteristics of trace volatile organic compounds in gas streams onto activated carbon fibres . Chem. Mater. , 4 : 1068 – 1073 .
  • Derbyshire , F. , Jagtoyen , M. Andrews , R. 2001 . Chemistry and Physics of Carbon , Edited by: Radovic , L. R. Vol. 27 , 21 – 66 . New York : Marcel Dekker . Carbon materials in environmental applications.
  • Tanada , S. , Kawasaki , N. Nakamura , T. 2000 . Characteristics of nonafluorobutyl methyl ether (NFE) adsorption onto activated carbon fibers and different-size-activated carbon particles . J. Coll. Interface Sci. , 228 : 220 – 225 .
  • Zhang , S. , Shao , T. Kose , H. S. 2010 . Adsorption of aromatic compounds by carbonaceous adsorbents: A comparative study on granular activated carbon, activated carbon fiber, and carbon nanotubes . Environ. Sci. Technol. , 44 : 6377 – 6383 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.