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The dependance of an activity of vanadium catalysts on a carrier regeneration method and an active phase composition Cover

The dependance of an activity of vanadium catalysts on a carrier regeneration method and an active phase composition

Open Access
|Dec 2013

References

  1. 1. Grzesiak, P. (2005) Sulphuric acid Volume 5. Vanadium catalysts for SO2 oxidation. IOR Publishing house, Poznań 2005 .
  2. 2. Grobela, M., Grzesiak, P., Motała, R. & Łukaszyk, J. (2011). Phase changes in vanadium catalysts containing iron compounds. Przem. Chem. 90(12), 2198-2201.
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  6. 6. Mazurek, K., Trypuć, M. & Białowicz, K. (2010). Recovery of vanadium, potassium and iron from a spent catalyst using urea solution. Hydrometallurgy 103 (1-4), 19-24. DOI: 10.1016/j. hydromet.2010.02.008.10.1016/j.hydromet.2010.02.008
  7. 7. Mazurek, K. (2009). Research on the development of optimal parameters of potassium compounds leaching from spent catalyst used for oxidation of sulfur(IV) oxide. Przem. Chem. 11, 1248-1251.
  8. 8. Mazurek, K., Trypuć, M., Białowicz, K. & Grzesiak, P. (2009). A Leaching of spent vanadium catalyst under acidic conditions. (pp. 123-139). In „The comprehensive management of hazardous waste vanadium catalysts used for SO2 oxidation” [in Polish] Vol. II (Eds. Trypuć M., Grzesiak P., Mazurek K., Grobela M.), WN IOR PIB Poznań ISBN 978-83-89867-40-7.
  9. 9. Mazurek, K., Trypuć, M., Białowicz, K. & Drużyński, S. (2008). The infl uence of leaching solution pH and addition of peroxide hydrogen on recovery of some components from the used vanadium catalyst with urea solutions. Pol. J. Chem. Techn. 4, 34-36. DOI: 10.2478/v10026-008-0044-0.10.2478/v10026-008-0044-0
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  11. 11. Mazurek, K. & Trypuć, M. (2009). Recovery of the components of the spent vanadium catalyst with sulfuric(VI) acid solutions. Przem. Chem. 11, 1248-1251.
  12. 12. Trypuć, M., Mazurek, K., Kiełkowska, U. & Drużyński S. (2007). Utilization of used contact masses from the oxidation state of sulfur(IV) oxide to sulfur(VI) oxide. Pol. J. Chem. Techn. 9 (3), 26-28. DOI: 10.2478/v10026-007-0047-2.10.2478/v10026-007-0047-2
  13. 13. Mazurek, K., Trypuć, M., Grzesiak, P., Grobela, M. & Motała, R. (2010). The study of the possibilities of the component recovery from spent vanadium catalysts and the process criteria. (pp. 117-134). In „Environment and industry”. (Ed. Schroeder G.), Poznań 2010 ISBN 978-83-62108-05-3.
  14. 14. Grzesiak, P., Grobela, M., Motała, R., Mazurek, K. & Trypuć, M. (2010). The study of the possibilities of the recovered component application for a vanadium catalyst production process (pp. 135-144). In „Environment and industry”. (Ed. Schroeder G.), Poznań 2010 ISBN: 978-83-62108-05-3.
  15. 15. Grzesiak, P., Grobela, M., Motała, R. & Mazurek, K. (2009). Development of methods for the recovery of silica from spent catalysts that do not have defected the support structure. (pp. 195-219) In „The comprehensive management of hazardous waste vanadium catalysts used for SO2 oxidation” [in Polish] Vol. II (Eds. Trypuć M., Grzesiak P., Mazurek K., Grobela M.), WN IOR PIB Poznań ISBN 978-83-89867-40-7.
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Language: English
Page range: 107 - 110
Published on: Dec 31, 2013
Published by: West Pomeranian University of Technology, Szczecin
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2013 Piotr Grzesiak, Marcin Grobela, Tadeusz Hłyń, Joanna Łukaszyk, published by West Pomeranian University of Technology, Szczecin
This work is licensed under the Creative Commons License.

Volume 15 (2013): Issue 4 (December 2013)