KINETICS OF OXIDATIVE CHLORINATION OF METHANE

Heterogeneous oxidative chlorination of methane was investigated. The target product is methyl chloride. The investigated terms and conditions of oxychlorination of methane: process temperature 400°C, pressure 0.1-0.9 MPa, catalyst (% weight.): copper chloride (II) 1-8%; potassium chloride 2.5%; lan...

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Main Authors: I. S. Silina, Е. А. Katsman, Yu. A. Treger, V. N. Rozanov, L. D. Iskhakova, R. P. Ermakov, V. V. Koltashev, L. G. Bruk
Format: Article
Language:Russian
Published: MIREA - Russian Technological University 2017-04-01
Series:Тонкие химические технологии
Subjects:
Online Access:https://www.finechem-mirea.ru/jour/article/view/82
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spelling doaj-a117c888ef5747fe98e4e36282b6aac82021-07-28T13:24:00ZrusMIREA - Russian Technological UniversityТонкие химические технологии2410-65932686-75752017-04-01122506110.32362/2410-6593-2017-12-2-50-6182KINETICS OF OXIDATIVE CHLORINATION OF METHANEI. S. Silina0Е. А. Katsman1Yu. A. Treger2V. N. Rozanov3L. D. Iskhakova4R. P. Ermakov5V. V. Koltashev6L. G. Bruk7Moscow Technological University (Institute of Fine Chemical Technologies), LLC Research and Development Engineering Centre “Syntez”Moscow Technological University (Institute of Fine Chemical Technologies)LLC Research and Development Engineering Centre “Syntez”LLC Research and Development Engineering Centre “Syntez”Fiber Optics Research Center of RASFiber Optics Research Center of RASFiber Optics Research Center of RASMoscow Technological University (Institute of Fine Chemical Technologies)Heterogeneous oxidative chlorination of methane was investigated. The target product is methyl chloride. The investigated terms and conditions of oxychlorination of methane: process temperature 400°C, pressure 0.1-0.9 MPa, catalyst (% weight.): copper chloride (II) 1-8%; potassium chloride 2.5%; lanthanum chloride 1%; carrier - aluminosilicate. Powder X-ray diffractometry and electron microscopy showed that the active catalyst components (CuCl2, KCl, LaCl3) are unevenly distributed on the support surface (α-Al2O3·SiO2) and form agglomerates with a high salt content, including binary chlorides such as KCuCl3, K2CuCl3 or K2CuCl4, hydrates K2CuCl4·2H2O and CuCl2·2H2O and hydroxychlorides Cu3Cl4(OH)2 and Cu2Cl(OH)3. The kinetics of methane oxychlorination was studied in a gradientless reactor at 400°C and pressure 0.1 - 0.9 MPa by varying the partial pressures of the reactants. Analysis of the products was carried out by GC. An equation of the reaction rate including partial pressures of methane, hydrogen chloride and water to the 0.77, 0.01 and 0.64 power, respectively, but of zero order by oxygen and chlorine provides an adequate description of methyl chloride formation rate. Significant influence of water partial pressure is proved for the reaction under consideration.https://www.finechem-mirea.ru/jour/article/view/82oxidative chlorinationmethanemethyl chloridechloromethanesselectivitykineticscatalystheterogeneous catalysiscopper chloridelanthanum chloridepotassium chloride
collection DOAJ
language Russian
format Article
sources DOAJ
author I. S. Silina
Е. А. Katsman
Yu. A. Treger
V. N. Rozanov
L. D. Iskhakova
R. P. Ermakov
V. V. Koltashev
L. G. Bruk
spellingShingle I. S. Silina
Е. А. Katsman
Yu. A. Treger
V. N. Rozanov
L. D. Iskhakova
R. P. Ermakov
V. V. Koltashev
L. G. Bruk
KINETICS OF OXIDATIVE CHLORINATION OF METHANE
Тонкие химические технологии
oxidative chlorination
methane
methyl chloride
chloromethanes
selectivity
kinetics
catalyst
heterogeneous catalysis
copper chloride
lanthanum chloride
potassium chloride
author_facet I. S. Silina
Е. А. Katsman
Yu. A. Treger
V. N. Rozanov
L. D. Iskhakova
R. P. Ermakov
V. V. Koltashev
L. G. Bruk
author_sort I. S. Silina
title KINETICS OF OXIDATIVE CHLORINATION OF METHANE
title_short KINETICS OF OXIDATIVE CHLORINATION OF METHANE
title_full KINETICS OF OXIDATIVE CHLORINATION OF METHANE
title_fullStr KINETICS OF OXIDATIVE CHLORINATION OF METHANE
title_full_unstemmed KINETICS OF OXIDATIVE CHLORINATION OF METHANE
title_sort kinetics of oxidative chlorination of methane
publisher MIREA - Russian Technological University
series Тонкие химические технологии
issn 2410-6593
2686-7575
publishDate 2017-04-01
description Heterogeneous oxidative chlorination of methane was investigated. The target product is methyl chloride. The investigated terms and conditions of oxychlorination of methane: process temperature 400°C, pressure 0.1-0.9 MPa, catalyst (% weight.): copper chloride (II) 1-8%; potassium chloride 2.5%; lanthanum chloride 1%; carrier - aluminosilicate. Powder X-ray diffractometry and electron microscopy showed that the active catalyst components (CuCl2, KCl, LaCl3) are unevenly distributed on the support surface (α-Al2O3·SiO2) and form agglomerates with a high salt content, including binary chlorides such as KCuCl3, K2CuCl3 or K2CuCl4, hydrates K2CuCl4·2H2O and CuCl2·2H2O and hydroxychlorides Cu3Cl4(OH)2 and Cu2Cl(OH)3. The kinetics of methane oxychlorination was studied in a gradientless reactor at 400°C and pressure 0.1 - 0.9 MPa by varying the partial pressures of the reactants. Analysis of the products was carried out by GC. An equation of the reaction rate including partial pressures of methane, hydrogen chloride and water to the 0.77, 0.01 and 0.64 power, respectively, but of zero order by oxygen and chlorine provides an adequate description of methyl chloride formation rate. Significant influence of water partial pressure is proved for the reaction under consideration.
topic oxidative chlorination
methane
methyl chloride
chloromethanes
selectivity
kinetics
catalyst
heterogeneous catalysis
copper chloride
lanthanum chloride
potassium chloride
url https://www.finechem-mirea.ru/jour/article/view/82
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AT eakatsman kineticsofoxidativechlorinationofmethane
AT yuatreger kineticsofoxidativechlorinationofmethane
AT vnrozanov kineticsofoxidativechlorinationofmethane
AT ldiskhakova kineticsofoxidativechlorinationofmethane
AT rpermakov kineticsofoxidativechlorinationofmethane
AT vvkoltashev kineticsofoxidativechlorinationofmethane
AT lgbruk kineticsofoxidativechlorinationofmethane
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