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2010 | 19 | 2 |

Tytuł artykułu

Ammoxidized active carbons as adsorbents for pollution from liquid and gas phases

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The influence of modification by pre- and post-treatment of active carbons with ammonia on adsorption abilities from liquid and gas phases has been tested. Carbon materials with different surface chemistry were obtained by chemical activation of Polish brown and subbituminous coal. The products were microporous active carbon samples of well developed surface area (SBET from 1579 to 2,922 m²/g), containing from 0.3 to 7.4 wt% of nitrogen. The results obtained in our study have, moreover, proven that a suitable choice of the modification procedure for coals can produce activated carbons with high capacity of iodine adsorption (to 2,100 mg/g) and high nitrogen dioxide adsorption ability, reaching to 55.1 mg NO₂/g.

Wydawca

-

Rocznik

Tom

19

Numer

2

Opis fizyczny

p.449-452,fig.,ref.

Twórcy

autor
  • Adam Mickiewicz University, Grunwaldzka 6, 60-780 Poznan, Poland
autor
autor

Bibliografia

  • 1. BASHKOVA S., BAKER F.S., WU X., ARMSTRONG T.R., SCHWARTZ V. Activated carbon catalyst for selective oxidation of hydrogen sulphide: On the influence of pore structure, surface characteristics, and catalytically-active nitrogen. Carbon 45, 1354, 2007.
  • 2. RODRIGUEZ-REINOSO F. The role of carbon materials in heterogeneous catalysis. Carbon 36, (3), 159, 1998.
  • 3. BOUDOU J.P., CHEHIMI M., BRONIEK E., SIEMIENIEWSKA T., BIMER J. Adsorption of H2S or SO2 on an activated carbon cloth modified by ammonia treatment. Carbon 41, 1999, 2003.
  • 4. MAROTO-VALER M.M., TANG Z., ZHANG Y. CO2 capture by activated and impregnated anthracites. Fuel Process. Technol. 86, 1487, 2005.
  • 5. MUNIZ J., MARBAN G., FUERTES A.B. Low temperature selective catalytic reduction of NO over modified activated carbon fibres. Appl. Catal. B. Eniviron. 27, 27, 2000.
  • 6. BINIAK S., PAKUŁA M., SZYMAŃSKI G.S., ŚWIĄTKOWSKI A. Effect of activated carbon surface oxygen and/or nitrogen containing groups on adsorption of copper (II) ions from aqueous solution. Langmuir 15, 6117, 1999.
  • 7. PRZEPIÓRSKI J. Enhanced adsorption of phenol from water by ammonia-treated activated carbon. J. Hazard. Mater. 135, 453, 2006.
  • 8. HUANG M.C., TENG H. Nitrogen-containing carbons from phenol-formaldehyde resins and their catalytic activity in NO reduction with NH3. Carbon 41, 951, 2003.
  • 9. GRZYBEK T., KLINIK J., SAMOJEDEN B., SUPRUN V., PAPP H. Nitrogen-promoted active carbons as DeNOx catalysts. The influence of modification parameters on the structure and catalytic properties. Catal. Today 137, 228, 2008.
  • 10. SHIRAHAMA N., MOON S.H., CHOI K.H., ENJOJI T., KAWANO S., KORAI Y., TANOURA M., MOCHIDA I. Mechanistic study on adsorption and reduction of NO2 over activated carbon fibers. Carbon 40, 2605, 2002.
  • 11. NOWICKI P., PIETRZAK R., WACHOWSKA H. Influence of metamorphism degree of the precursor on preparation of nitrogen enriched activated carbons by ammoxidation and chemical activation of coals. Energy Fuel 23, 2205, 2009.
  • 12. PIETRZAK R., BANDOSZ T.J. Activated carbons modified with sewage sludge derived phase and their application in the process of NO2 removal. Carbon 45, 2537, 2007

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-26cbf587-b9a8-4d1f-befd-d5e21b22f6f1
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