Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese Nodules

The chemical, textural, structural and strength properties of ferromanganese nodules and granulated Fe-Mn catalysts containing such nodules were studied. It was found that the granulated catalysts have a developed pore structure, which is close to that of the starting material, and surpass the start...

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Main Authors: N. K. Shikina, S. R. Khairulin, S. A. Yashnik, T. N. Teryaeva, Z. R. Ismagilov
Format: Article
Language:English
Published: al-Farabi Kazakh National University 2015-04-01
Series:Eurasian Chemico-Technological Journal
Online Access:http://ect-journal.kz/index.php/ectj/article/view/247
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author N. K. Shikina
S. R. Khairulin
S. A. Yashnik
T. N. Teryaeva
Z. R. Ismagilov
author_facet N. K. Shikina
S. R. Khairulin
S. A. Yashnik
T. N. Teryaeva
Z. R. Ismagilov
author_sort N. K. Shikina
collection DOAJ
description The chemical, textural, structural and strength properties of ferromanganese nodules and granulated Fe-Mn catalysts containing such nodules were studied. It was found that the granulated catalysts have a developed pore structure, which is close to that of the starting material, and surpass the starting material in strength parameters. The catalysts were tested in desulfurization by methane at a stoichiometric ratio SO2/CH4 = 2. The testing showed that Fe-Mn catalysts with the oxide or sulfide form of active components are active in desulfurization by methane and can selectively reduce SO2 with a conversion above 80%.
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spelling doaj.art-a1ca1d9ec80d4dd39f425edb974217072022-12-21T20:39:51Zengal-Farabi Kazakh National UniversityEurasian Chemico-Technological Journal1562-39202522-48672015-04-0117212913610.18321/ectj203247Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese NodulesN. K. Shikina0S. R. Khairulin1S. A. Yashnik2T. N. Teryaeva3Z. R. Ismagilov4Boreskov Institute of Catalysis, pr. Akad. Lavrentieva, 5, Novosibirsk, 630090, RussiaBoreskov Institute of Catalysis, pr. Akad. Lavrentieva, 5, Novosibirsk, 630090, RussiaBoreskov Institute of Catalysis, pr. Akad. Lavrentieva, 5, Novosibirsk, 630090, RussiaF.T. Gorbachev Kuzbass State Technical University, Kemerovo, 650000, RussiaBoreskov Institute of Catalysis, pr. Akad. Lavrentieva, 5, Novosibirsk, 630090, RussiaThe chemical, textural, structural and strength properties of ferromanganese nodules and granulated Fe-Mn catalysts containing such nodules were studied. It was found that the granulated catalysts have a developed pore structure, which is close to that of the starting material, and surpass the starting material in strength parameters. The catalysts were tested in desulfurization by methane at a stoichiometric ratio SO2/CH4 = 2. The testing showed that Fe-Mn catalysts with the oxide or sulfide form of active components are active in desulfurization by methane and can selectively reduce SO2 with a conversion above 80%.http://ect-journal.kz/index.php/ectj/article/view/247
spellingShingle N. K. Shikina
S. R. Khairulin
S. A. Yashnik
T. N. Teryaeva
Z. R. Ismagilov
Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese Nodules
Eurasian Chemico-Technological Journal
title Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese Nodules
title_full Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese Nodules
title_fullStr Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese Nodules
title_full_unstemmed Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese Nodules
title_short Direct Catalytic Reduction of SO2 by CH4 over Fe-Mn Catalysts Prepared by Granulation of Ferromanganese Nodules
title_sort direct catalytic reduction of so2 by ch4 over fe mn catalysts prepared by granulation of ferromanganese nodules
url http://ect-journal.kz/index.php/ectj/article/view/247
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AT sayashnik directcatalyticreductionofso2bych4overfemncatalystspreparedbygranulationofferromanganesenodules
AT tnteryaeva directcatalyticreductionofso2bych4overfemncatalystspreparedbygranulationofferromanganesenodules
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