Conversion of Oxygenates to Aromatic Hydrocarbons on a Commercial Zeolite Catalyst: Comparison of Ethanol and Dimethyl Ether

Conversion of oxygenates to aromatic hydrocarbons in the syngas medium in the presence of a commercial zeolite-containing catalyst was studied. The influence of pressure on aromatization of dimethyl ether and ethanol was examined. At 400°C, an increase in the pressure from 0.1 to 3.0–10.0 MPa leads...

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Published in:Russian journal of applied chemistry Vol. 92; no. 7; pp. 918 - 923
Main Authors: Golubev, K. B., Bedenko, S. P., Budnyak, A. D., Ilolov, A. M., Tret’yakov, V. F., Talyshinskii, R. M., Maksimov, A. L., Khadzhiev, S. N.
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Language:English
Published: Moscow Pleiades Publishing 01-07-2019
Springer Nature B.V
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Abstract Conversion of oxygenates to aromatic hydrocarbons in the syngas medium in the presence of a commercial zeolite-containing catalyst was studied. The influence of pressure on aromatization of dimethyl ether and ethanol was examined. At 400°C, an increase in the pressure from 0.1 to 3.0–10.0 MPa leads to a sharp increase in the yield of aromatic compounds. Dimethyl ether and ethanol, which are isomers belonging to different classes of compounds, were compared as substrates in conversion to aromatic hydrocarbons. At elevated pressure, dimethyl ether compared to ethanol exhibits higher selectivity in formation of the desired synthesis products, allowing synthesis of liquid hydrocarbons with increased content of arenes.
AbstractList Conversion of oxygenates to aromatic hydrocarbons in the syngas medium in the presence of a commercial zeolite-containing catalyst was studied. The influence of pressure on aromatization of dimethyl ether and ethanol was examined. At 400°C, an increase in the pressure from 0.1 to 3.0–10.0 MPa leads to a sharp increase in the yield of aromatic compounds. Dimethyl ether and ethanol, which are isomers belonging to different classes of compounds, were compared as substrates in conversion to aromatic hydrocarbons. At elevated pressure, dimethyl ether compared to ethanol exhibits higher selectivity in formation of the desired synthesis products, allowing synthesis of liquid hydrocarbons with increased content of arenes.
Author Budnyak, A. D.
Maksimov, A. L.
Khadzhiev, S. N.
Golubev, K. B.
Ilolov, A. M.
Tret’yakov, V. F.
Talyshinskii, R. M.
Bedenko, S. P.
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  surname: Bedenko
  fullname: Bedenko, S. P.
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  fullname: Ilolov, A. M.
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  givenname: S. N.
  surname: Khadzhiev
  fullname: Khadzhiev, S. N.
  organization: Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences
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Keywords oxygenates
zeolite catalyst
selectivity
dimethyl ether
aromatic hydrocarbons
pressure
ethanol
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Snippet Conversion of oxygenates to aromatic hydrocarbons in the syngas medium in the presence of a commercial zeolite-containing catalyst was studied. The influence...
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SubjectTerms Aromatic compounds
Aromatic hydrocarbons
Catalysis
Catalysts
Chemistry
Chemistry and Materials Science
Chemistry/Food Science
Conversion
Dimethyl ether
Ethanol
Hydrocarbons
Industrial Chemistry/Chemical Engineering
Isomers
Selectivity
Substrates
Synthesis
Synthesis gas
Zeolites
Title Conversion of Oxygenates to Aromatic Hydrocarbons on a Commercial Zeolite Catalyst: Comparison of Ethanol and Dimethyl Ether
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