Effect of Sibunite Graphitization on the Stability of Ru (Pt, Pd)/Sibunit Catalysts in an Oxidizing Atmosphere at Elevated Temperatures

書誌詳細
Parent link:Catalysis in Industry.— : Springer Nature
Vol. 13, iss. 3.— 2021.— P. 252-257
その他の著者: Borisov V. A., Iost K. N., Temerev V. L., Surovikin Yu. V., Osipov A. R., Trenikhin M. V., Smorokov A. A. Andrey Arkadievich, Shlyapin D. A.
要約:Title screen
A study on the effect of high-temperature treatment has on the thermal stability of Sibunit, a graphite-like carbon material, under the conditions of an oxidative environment depending on the presence of the active component (Pt, Pd or Ru) has been performed. Thermal analysis results show that preliminary high-temperature treatment of Sibunit raises the temperature of the onset of carbon oxidation. It is found that keeping Ru/Sibunit samples in a nitrogen–air mixture (1 : 1) for 4 h at a temperature of 400°C results in partial destruction of Sibunit’s pyrocarbon framework and an increase in the average size of Ru particles. Using Ru as an example, it is shown that ruthenium catalysts can effectively oxidize CO at temperatures no higher than 200°C and withstand overheating up to 400°C with no appreciable loss of activity
Текстовый файл
AM_Agreement
言語:英語
出版事項: 2021
主題:
オンライン・アクセス:https://doi.org/10.1134/S207005042103003X
Статья на русском языке
フォーマット: 電子媒体 図書の章
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=665486

MARC

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200 1 |a Effect of Sibunite Graphitization on the Stability of Ru (Pt, Pd)/Sibunit Catalysts in an Oxidizing Atmosphere at Elevated Temperatures  |d Влияние графитизации Сибунита на устойчивость катализаторов Ru (Pt, Pd)/Сибунит в окислительной атмосфере при повышенных температурах  |f V. A. Borisov, K. N. Iost, V. L. Temerev [et al.]  |z rus 
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330 |a A study on the effect of high-temperature treatment has on the thermal stability of Sibunit, a graphite-like carbon material, under the conditions of an oxidative environment depending on the presence of the active component (Pt, Pd or Ru) has been performed. Thermal analysis results show that preliminary high-temperature treatment of Sibunit raises the temperature of the onset of carbon oxidation. It is found that keeping Ru/Sibunit samples in a nitrogen–air mixture (1 : 1) for 4 h at a temperature of 400°C results in partial destruction of Sibunit’s pyrocarbon framework and an increase in the average size of Ru particles. Using Ru as an example, it is shown that ruthenium catalysts can effectively oxidize CO at temperatures no higher than 200°C and withstand overheating up to 400°C with no appreciable loss of activity 
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