Rational design of Mg–Al mixed oxide-supported bimetallic catalysts for dry reforming of methane

A novel synthetic strategy for preparing bimetallic Ru–M (M = Cr, Fe, Co, Ni and Cu) catalysts, supported on Mg–Al mixed oxide, has been introduced. It was based on a “memory effect”, i.e. on the ability of Mg–Al mixed oxide to reconstruct a layered structure upon rehydration with an aqueous solutio...

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Published in:Applied catalysis. A, General Vol. 292; pp. 328 - 343
Main Authors: Tsyganok, Andrey I., Inaba, Mieko, Tsunoda, Tatsuo, Uchida, Kunio, Suzuki, Kunio, Takehira, Katsuomi, Hayakawa, Takashi
Format: Journal Article
Language:English
Published: Amsterdam Elsevier B.V 18-09-2005
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Abstract A novel synthetic strategy for preparing bimetallic Ru–M (M = Cr, Fe, Co, Ni and Cu) catalysts, supported on Mg–Al mixed oxide, has been introduced. It was based on a “memory effect”, i.e. on the ability of Mg–Al mixed oxide to reconstruct a layered structure upon rehydration with an aqueous solution. By repeated calcinations–rehydration cycles, layered double hydroxide (LDH) precursors of catalysts containing two different metals were synthesized. Bimetallic catalysts were then generated (i) in situ from LDH under methane reforming reaction conditions and (ii) from mixed metal oxides obtained by preliminary LDH calcination. Among all the LDH-derived catalysts, a Ru 0.1%–Ni 5.0%/MgAlO x sample revealed the highest activity and selectivity to syngas, a suitable durability and a low coking capacity. A promoting effect of ruthenium on catalytic function of supported nickel was demonstrated. Preliminary LDH calcination was shown to markedly affect the catalytic activity of the derived catalysts and especially their coking properties.
AbstractList A novel synthetic strategy for preparing bimetallic Ru-M (M=Cr, Fe, Co, Ni and Cu) catalysts, supported on Mg-Al mixed oxide, has been introduced. It was based on a 'memory effect', i.e. on the ability of Mg-Al mixed oxide to reconstruct a layered structure upon rehydration with an aqueous solution. By repeated calcinations-rehydration cycles, layered double hydroxide (LDH) precursors of catalysts containing two different metals were synthesized. Bimetallic catalysts were then generated (i) in situ from LDH under methane reforming reaction conditions and (ii) from mixed metal oxides obtained by preliminary LDH calcination. Among all the LDH-derived catalysts, a Ru0.1%-Ni5.0%/MgAlOx sample revealed the highest activity and selectivity to syngas, a suitable durability and a low coking capacity. A promoting effect of ruthenium on catalytic function of supported nickel was demonstrated. Preliminary LDH calcination was shown to markedly affect the catalytic activity of the derived catalysts and especially their coking properties.
A novel synthetic strategy for preparing bimetallic Ru–M (M = Cr, Fe, Co, Ni and Cu) catalysts, supported on Mg–Al mixed oxide, has been introduced. It was based on a “memory effect”, i.e. on the ability of Mg–Al mixed oxide to reconstruct a layered structure upon rehydration with an aqueous solution. By repeated calcinations–rehydration cycles, layered double hydroxide (LDH) precursors of catalysts containing two different metals were synthesized. Bimetallic catalysts were then generated (i) in situ from LDH under methane reforming reaction conditions and (ii) from mixed metal oxides obtained by preliminary LDH calcination. Among all the LDH-derived catalysts, a Ru 0.1%–Ni 5.0%/MgAlO x sample revealed the highest activity and selectivity to syngas, a suitable durability and a low coking capacity. A promoting effect of ruthenium on catalytic function of supported nickel was demonstrated. Preliminary LDH calcination was shown to markedly affect the catalytic activity of the derived catalysts and especially their coking properties.
Author Tsunoda, Tatsuo
Hayakawa, Takashi
Uchida, Kunio
Takehira, Katsuomi
Tsyganok, Andrey I.
Inaba, Mieko
Suzuki, Kunio
Author_xml – sequence: 1
  givenname: Andrey I.
  surname: Tsyganok
  fullname: Tsyganok, Andrey I.
  email: Andrey.Tsyganok@science.uottawa.ca
  organization: Centre for Catalysis Research and Innovation, Department of Chemistry, University of Ottawa, D’Iorio Hall, 10 Marie Curie Street, Ottawa, Ont., Canada K1N 6N5
– sequence: 2
  givenname: Mieko
  surname: Inaba
  fullname: Inaba, Mieko
  organization: Natural Gas Technology Development Team, Teikoku Oil Co., 9-23-30 Kitakarasuyama, Setagaya-ku, Tokyo 157-0061, Japan
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  givenname: Tatsuo
  surname: Tsunoda
  fullname: Tsunoda, Tatsuo
  organization: Institute for Materials and Chemical Process, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba 305-8565, Japan
– sequence: 4
  givenname: Kunio
  surname: Uchida
  fullname: Uchida, Kunio
  organization: Institute for Materials and Chemical Process, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba 305-8565, Japan
– sequence: 5
  givenname: Kunio
  surname: Suzuki
  fullname: Suzuki, Kunio
  organization: Institute for Materials and Chemical Process, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba 305-8565, Japan
– sequence: 6
  givenname: Katsuomi
  surname: Takehira
  fullname: Takehira, Katsuomi
  organization: Department of Applied Chemistry, Faculty of Engineering, Hiroshima University, 1-4-1 Kagamiyama, Higashi-Hiroshima 739-8527, Japan
– sequence: 7
  givenname: Takashi
  surname: Hayakawa
  fullname: Hayakawa, Takashi
  email: T.Hayakawa@aist.go.jp
  organization: Institute for Materials and Chemical Process, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba 305-8565, Japan
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Keywords Methane
Bimetallic catalysts
Dry reforming
Memory effect
Synthesis gas
Layered double hydroxides
Hydroxides
Oxides
Iron
Reforming
Cobalt
Supported catalyst
Design
Aluminium Oxides
Alkane
Copper
Magnesium Oxides
Platinoid
Catalyst support
Mixed catalyst
Ruthenium
Hydrocarbon
Transition metal
Heterogeneous catalysis
Chromium
Nickel
Language English
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SSID ssj0002495
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Snippet A novel synthetic strategy for preparing bimetallic Ru–M (M = Cr, Fe, Co, Ni and Cu) catalysts, supported on Mg–Al mixed oxide, has been introduced. It was...
A novel synthetic strategy for preparing bimetallic Ru-M (M=Cr, Fe, Co, Ni and Cu) catalysts, supported on Mg-Al mixed oxide, has been introduced. It was based...
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SubjectTerms Bimetallic catalysts
Catalysis
Chemistry
Dry reforming
Exact sciences and technology
General and physical chemistry
Layered double hydroxides
Memory effect
Methane
Synthesis gas
Theory of reactions, general kinetics. Catalysis. Nomenclature, chemical documentation, computer chemistry
Title Rational design of Mg–Al mixed oxide-supported bimetallic catalysts for dry reforming of methane
URI https://dx.doi.org/10.1016/j.apcata.2005.06.007
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