Публикации в журналах (33)

# Публикация
1 Vandyshev A.B. , Kulikov V.A.
Effect of Membrane Thickness on Parameters for Producing High-Purity Hydrogen from Hydrocarbon Raw Materials in Membrane-Catalytic Devices
Chemical and Petroleum Engineering. 2023. V.59. N3-4. P.327-334. DOI: 10.1007/s10556-023-01245-x Scopus OpenAlex
2 Vandyshev A.B. , Kulikov V.A.
Assessment of the Effects of Temperature and Pressure on the Efficiency of High-Purity Hydrogen Production from Hydrocarbon Feedstocks in Membrane-Catalytic Devices
Chemical and Petroleum Engineering. 2021. V.56. N9-10. P.799-808. DOI: 10.1007/s10556-021-00845-9 Scopus OpenAlex
3 Vandyshev A.B. , Kulikov V.A.
Analysis of Parameters for Producing High-Purity Hydrogen from Natural Gas in a Tubular Type Membrane-Catalytic Module
Chemical and Petroleum Engineering. 2021. V.56. N9-10. P.715-720. DOI: 10.1007/s10556-021-00833-z Scopus OpenAlex
4 Vandyshev A.B. , Kulikov V.A.
Assessment of the Effect of Hydrocarbon and Steam Mixture Flow Rate on the Main Parameters of High-Purity Hydrogen Production in a Membrane-Catalytic Device with a Fixed Membrane Area
Chemical and Petroleum Engineering. 2021. V.57. N7-8. P.639-646. DOI: 10.1007/s10556-021-00989-8 Scopus OpenAlex
5 Vandyshev A.B. , Kulikov V.A.
Analysis of the Results of Testing an Individual Disk-Type Membrane-Catalytic Module for Obtaining High-Purity Hydrogen from Methane
Chemical and Petroleum Engineering. 2020. V.55. N9-10. P.725-732. DOI: 10.1007/s10556-020-00686-y Scopus OpenAlex
6 Vandyshev A.B. , Kulikov V.A.
Evaluation of Design Parameters for a 32-Module Disk-Type Membrane-Catalytic Reactor for Producing High-Purity Hydrogen from Diesel Fuel
Chemical and Petroleum Engineering. 2020. V.55. N9-10. P.815-820. DOI: 10.1007/s10556-020-00698-8 Scopus OpenAlex
7 Vandyshev A.B. , Kulikov V.A.
Analysis of Membrane and Membrane-Catalytic Systems for Producing High-Purity Hydrogen from Ammonia
Chemical and Petroleum Engineering. 2019. V.55. N1-2. P.43-50. DOI: 10.1007/s10556-019-00581-1 Scopus OpenAlex
8 Korneev A.E. , Petrovskii É.A. , Solov’ev E.A. , Bukhtoyarov V.V. , Tynchenko V.S.
Industrial Reactor for Processing Associated Petroleum Gas with Production of Hydrogen and Nanofibrous Carbon Material
Chemical and Petroleum Engineering. 2019. V.55. N5-6. P.361-367. DOI: 10.1007/s10556-019-00631-8 Scopus OpenAlex
9 Vandyshev A.B. , Kulikov V.A.
Modeling a Membrane Reformer with a Carbon-Monoxide Conversion Catalyst for Extracting High-Purity Hydrogen from Methane Steam-Conversion Products
Chemical and Petroleum Engineering. 2018. V.54. N5-6. P.313-321. DOI: 10.1007/s10556-018-0481-4 Scopus OpenAlex
10 Vandyshev A.B. , Kulikov V.A.
Analysis of the Calculated Parameters of a Model Membrane-Catalytic Converter for the Production of High-Purity Hydrogen from Methane
Chemical and Petroleum Engineering. 2018. V.54. N1-2. P.31-37. DOI: 10.1007/s10556-018-0434-y Scopus OpenAlex
11 Vandyshev A.B. , Kulikov V.A.
Estimate of High-Purity Hydrogen Production Efficiency in Membrane-Catalytic Systems from Steam Reforming Products of Gasoline, Kerosene, and Diesel Oil
Chemical and Petroleum Engineering. 2018. V.53. N9-10. P.592-597. DOI: 10.1007/s10556-018-0386-2 Scopus OpenAlex
12 Dolotovskii I.V.
Production of Technical Carbon and Energy Carriers from Low-Pressure Hydrocarbon Gases
Chemical and Petroleum Engineering. 2018. V.54. N5-6. P.322-326. DOI: 10.1007/s10556-018-0482-3 Scopus OpenAlex
13 Ezdin B.S. , Zarvin A.E. , Yaskin A.S. , Kalyada V.V. , Konovalov S.A.
Fast Cyclic Compression Installation for Conversion of Light Hydrocarbons
Chemical and Petroleum Engineering. 2016. V.52. N1-2. P.26-28. DOI: 10.1007/s10556-016-0141-5 Scopus OpenAlex
14 Vandyshev A.B. , Kulikov V.A.
Hydrogen Permeability of Palladium Membranes Made of Alloy V-1 in Laboratory Investigations and Membrane Devices
Chemical and Petroleum Engineering. 2015. V.51. N5-6. P.396-401. DOI: 10.1007/s10556-015-0058-4 Scopus OpenAlex
15 Yakovenko R.E. , Narochnyi G.B. , Savost’yanov A.P. , Kirsanov V.A.
Feasibility of Using a Tube Reactor in High-Intensity Fischer-Tropsch Synthesis
Chemical and Petroleum Engineering. 2015. V.51. N3-4. P.159-163. DOI: 10.1007/s10556-015-0017-0 Scopus OpenAlex
16 Vandyshev A.B. , Kulikov V.A.
Analysis of Parameters of High-Purity Hydrogen Production from Methane in a Laboratory-Scale Membrane Reformer with an Ultrathin Palladium Membrane
Chemical and Petroleum Engineering. 2015. V.51. N3-4. P.250-256. DOI: 10.1007/s10556-015-0032-1 Scopus OpenAlex
17 Vandyshev A.B. , Kulikov V.A.
Comparison of Calculated and Experimental Flow Data for a Membrane Reformer for Special-Purity Hydrogen Production from Natural Gas
Chemical and Petroleum Engineering. 2014. V.49. N9-10. P.660-667. DOI: 10.1007/s10556-014-9815-z Scopus OpenAlex
18 Vandyshev A.B. , Kulikov V.A.
Preparation of Specially Pure Hydrogen from Dimethyl Ester in a High-Temperature Converter – Membrane Equipment System with Catalytic Conversion of CH4 Or CO in the Space Above a Membrane
Chemical and Petroleum Engineering. 2014. V.49. N11-12. P.719-726. DOI: 10.1007/s10556-014-9825-x Scopus OpenAlex
19 Vandyshev A.B. , Kulikov V.A.
Evaluation of efficiency of special-purity hydrogen production from products of steam conversion of methane and its close homologs in high-temperature converter–membrane equipment system using methane or carbon monoxide conversion catalyst
Chemical and Petroleum Engineering. 2013. V.48. N9-10. P.566-575. DOI: 10.1007/s10556-013-9659-y Scopus OpenAlex
20 Akhmadiev A.L. , Matveev V.P. , Nazarov A.A. , Giniyatulin A.I.
A mathematical model of heating of a reaction mixture in the process of vacuum dehydrogenation of hydrocarbons
Chemical and Petroleum Engineering. 2013. V.48. N9-10. P.618-620. DOI: 10.1007/s10556-013-9667-y Scopus OpenAlex

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