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2008 | 17 | 3 |

Tytuł artykułu

Investigation of CO oxidation by NO with application of semiconductor gas sensors

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Catalytic activity of platinum supported on SnO₂ in the reaction of CO oxidation by NO was examined. Catalysts were tested in gas mixture containing 1 vol.% of NO and 1 vol.% of CO in helium; activation procedure consisted of treatment of the catalysts with CO at 500°C. Improvement of catalytic activity after activation process was observed. The mechanisms of the oxidation and activation process with application of semiconductor resistive sensors made of Pt/SnO₂ were investigated.

Wydawca

-

Rocznik

Tom

17

Numer

3

Opis fizyczny

p.421-425,fig.,ref.

Twórcy

autor
  • Technical University of Lodz, Zeromskiego 116, 90-924 Lodz, Poland
autor
autor
autor

Bibliografia

  • 1. DOCQUIER N., CANDEL S., Combustion control and sensors: a review, Prog. Energy Combust. Sci. 28, 107, 2002
  • 2. FORT A., ROCCHI S., SERRANO-SANTOS M.B., MUGNAINI M., VIGNOLI V., ATREI A., SPINICCI R., CO sensing with SnO₂-based thick film sensors: Surface state model for conductance responses during thermal-modulation, Sens. Actuators B 116, 43, 2006
  • 3. JAIN K., PANT R.P., LAKSHMIKUMAR S.T., Effect of Ni-doping on thick film SnO₂ gas sensor, Sens. Actuators B 113, 823, 2006
  • 4. GRASS K., LINTZ H.-G., The Kinetics of Carbon Monoxide Oxidation on Tin(IV) Oxide Supported Platinum Catalysts, J. Catal. 172, 446, 1997
  • 5. OKANISHI T., MATSUI T., TAKEGUCHI T., KIKUCHI R., EGUCHI K., Chemical interaction between Pt and SnO₂ and influence on adsorptive properties of carbon monoxide, Appl. Catal. A 298, 181, 2006
  • 6. SUN L. S., LI S. Y., LI B. L., Kinetics of low temperature CO oxidation over Pt/SnO₂ catalyst, React. Kinet. Catal. Lett. 62, 151, 1997
  • 7. MATSUI T., OKANISHI T., FUJIWARA K., TSUTSUI K., KIKUCHI R., AKEGUCHI T. T, EGUCHI K., Effect of reduction–oxidation treatment on the catalytic activity over tin oxide supported platinum catalysts, Sci. Tech. Advanced Materials 7, 524, 2006
  • 8. RUMYANTSEVA M., KOVALENKO V., GASKOV A., MAKSHINA E., YUSCHENKO V., IVANOVAA I., PONZONI A., FAGLIA G., COMINI E., Nanocomposites SnO₂ /Fe₂O₃: Sensor and catalytic properties, Sens. Actuators B 118, 208, 2006
  • 9. GOMEZ-GARCIA M.A., PITCHON V., KIENNEMANN A., Pollution by nitrogen oxides: an approach to NOx abatement by using sorbing catalytic materials, Environ. Int. 31, 445, 2005
  • 10. TAKAHASHI N., YAMAZAKI K., SOBUKAWA H., SHINJOH H., The low-temperature performance of NOx storage and reduction catalyst, Appl. Catal. B 70, 198, 2007
  • 11. ABDULHAMID H., FRIDELL E., SKOGLUNDH M., The reduction phase in NOx storage catalysis: Effect of type of precious metal and reducing agent Appl. Catal. B 62, 319, 2006
  • 12. NAKAJIMA F., HAMADA I., The state-of-the-art technology of NOx control, Catal. Today 29, 109, 1996
  • 13. SOLYMOSI F., KISS J., Adsorption and reduction of NO on tin(IV) oxide catalysts, J. Catal., 41, 202, 1976
  • 14. SOLYMOSI F., KISS J., Adsorption and reduction of NO on tin(IV) oxide doped with chromium(III) oxide, J. Catal. 54, 42, 1978
  • 15. NIWA M., MINAMI T., KODAMA H., HATTORI T., MURAKAMI Y., Adsorption of nitric oxide on tin oxide, J. Catal. 53, 198, 1978
  • 16. FULLER M. J., WARWIC M. E., The catalytic reduction of nitrous oxide by carbon monoxide over tin(IV) oxide, J. Catal. 39, 412, 1975
  • 17. KOCEMBA I., SZAFRAN S., RYNKOWSKI J., PARYJCZAK T., The properties of strongly pressed tin oxide-based gas sensors Sens. Actuators, B 79, 28, 2001
  • 18. TUREK T., Kinetic oscillations during the catalytic decomposition of nitrous oxide, Catal. Today 105, 275, 2005

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-0f678777-2dab-494c-ada0-67933b123d2e
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