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  1. Vandyshev A.B. Analyzing the Parameters of Membrane Catalytic Systems for Extraction of Highly Pure Hydrogen from Hydrocarbon Feedstock with the Application of Mathematical Modeling [Electronic resource] // Diagnostics, Resource and Mechanics of materials and structures. 2016. Iss. 4. P. 6-45.

  2. 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. Vol. 51, Nos. 3-4. P. 250-256. DOI 10.1007/s10556-015-0032-1.

  3. 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. Vol. 51, Nos. 5-6. P. 396-401. DOI 10.1007/s10556-015-0058-4.

  4. Vandyshev A.B. Kulikov V.A. Calculating the main parameters of a Membrane Reformer with a Production Rate of 40 m3/h Designed for Producing Highly Pure Hydrogen from Natural Gas [Electronic resource] // Diagnostics, Resource and Mechanics of materials and structures. 2015. Is. 3. P. 109-121. URL: http://dream-journal.org/issues/2015-3/2015-3_31.html.

  5. 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. Vol. 49, No 9-10. P. 660-667.

  6. 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. – Nos. 9-10. P. 660-667.

  7. 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. – Nos. 11-12. P. 719-726.

  8. Vandyshev A.B. Kulikov V.A. Extraction of extra pure hydrogen from methan steam conversion products in membrane equipment, combined simultaneously with two CO and CH4 conversion catalysts // Chemical and Petroleum Engineering. 2012. Vol. 47, No 11-12 (march). P. 831-836.

  9. Vandyshev A.B. Kulikov V.A. Evaluation of the efficiency of preparing especially pure hydrogen from methanol and ethanol in membrane equipment, combined with a methane or carbon monoxide conversion catalyst // Chemical and Petroleum Engineering. 2011. Vol. 47, Nos. 7-8. P. 536-544.

  10. Vandyshev A.B. Kulikov V.A. Major ways of enhancing efficiency and economy of membrane method of special-purity hydrogen production from natural gas // Chemical and Petroleum Engineering. 2010. Volume 46, Numbers 11-12. P. 726-733.

  11. Vandyshev A.B. Kulikov V.A. Nikishin S.N. Analysis of flow-rate characteristics of high-output membrane equipment for the production of ultra-pure hydrogen // Chemical and Petroleum Engineering. 2010. Volume 46, Numbers 1-2. P. 72-78.

  12. Vandyshev A.B. Kulikov V.A. Nikishin S.N. Raising efficiency of special-purity hydrogen production from nitrogen-hydrogen gas mixtures // Chemical and Petroleum Engineering. 2009. Volume 45, Numbers 5-6. P. 360-363.

  13. Vandyshev A.B. Kulikov V.A. Nikishin S.N. Raising efficiency of super-pure hydrogen production from natural gas // Chemical and Petroleum Engineering. 2008. Volume 44, Numbers 7-8. P. 382-386.

  14. Vandyshev A.B. Kulikov V.A. Murav’ev L. L. Nikishin S. N. Ozone disinfection of water for bathing pools of recirculation type // Chemical and Petroleum Engineering. 2007. Volume 43, Numbers 1-2. P. 108-112.

  15. Vandyshev A.B. Kulikov V.A. Nikishin S.N. Increase in the efficiency of preparing specially pure hydrogen from methane in a high-temperature converter-membrane equipment system // Chemical and Petroleum Engineering. 2007. Volume 43, Numbers 11-12. P. 660-666.

  16. Vandyshev A.B. Kulikov V.A. Kirnos I. V. Nikishin S.N. High-temperature membrane apparatuses in systems for repeated utilization of hydrogen // Chemical and Petroleum Engineering. 2006. Volume 42, Numbers 11-12. P. 640-644.

  17. Murav'ev L. L. Vandyshev A.B. Model for Processing and Analysis of Stationary Hydrogen-Permeability Isotherms of Palladium Alloy Membranes // Chemical and Petroleum Engineering. 2003. Volume 39, Numbers 9-10. P. 571-576.

  18. Vandyshev A.B. Murav'ev L. L.  and Timofeev N. I. Determination of Effective Hydrogen Permeability from Performance Characteristics of High-Temperature Membrane Equipment // Chemical and Petroleum Engineering. 2002. Volume 38, Numbers 11-12. P. 641-646.

  19. Murav'ev L. L. Makarov V.M. Vandyshev A.B. Effect of Composition of Initial Gas Mixture on Membrane Extraction of Super-Pure Hydrogen // Chemical and Petroleum Engineering. 2001. Volume 37, Numbers 9-10. P. 493-498.

  20. Vandyshev A.B. Murav'ev L.L. Makarov V.M. Analysis of Process Flow Diagrams of Membrane Units for the Production of Extra-Pure Hydrogen from Natural Gas // Chemical and Petroleum Engineering. 2001. Volume 37, Numbers 5-6. P. 315-320.

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