E. G. Mitina, N. S. Filimonov, R. V. Shafigulin, A. V. Bulanova, I. V. Shishkovsky, J. G. Morozov
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References
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| 1. |
Boreskov G. K. et al., Catalyst based on copper for low-temperature conversion of carbon monoxide, Patent of the USSR № 196727, Bulletin № 12, 1967 (in Russian) |
| 2. |
Saranda M. E. et al., “Conversion of glycerol to 1,2-propanediol on bifunctional catalysts”, Chemistry, physics and technology of surface, 3:1 (2012), 61–65 (in Russian and Ukranian) |
| 3. |
Bray V. V., Varvarin A. M., Prudius S. V., “Selective conversion of tetrahydrofurfuryl alcohol in $\delta$-valerolactone on $\mathrm{Cu/ZnO}$-$\mathrm{Al_2O_3}$-catalyst”, Catalysis and petrochemicals, 2013, no. 22, 10–13 (in Russian) |
| 4. |
Magaeva A. A. et al., “Transformations $\mathrm{C_2}$–$\mathrm{C_4}$ alcohols on the surface of the copper catalyst”, Journal of Physical Chemistry, 81:9 (2007), 1–5 (in Russian) |
| 5. |
Liu Jingwei et al., Catalyst based on copper, deposited on mesoporous carbon, method of its obtaining and application, Patent of the Russian Federation № 2517 108 C2, Bulletin № 15, 2014 (in Russian) |
| 6. |
Mokhov V. M., Popov Yu. V., Than Viet, “Modification of the Leuckart–Wallach reaction using nanoparticles of copper catalysis”, Izvestia VSTU, 62:2 (2010), 64–69 (in Russian) |
| 7. |
Krylov O. V., Heterogeneous catalysis, IKTs “Akademkniga”, M., 2004, 679 pp. (in Russian) |
| 8. |
Anderson J., Structure of metal catalysts, Mir, M., 1978, 182 pp. (in Russian) |
| 9. |
Gutierrezetal V., “Liquid phase hydrogenation of crotonaldehyde over copper incorporated in MCM-48”, Applied Catalysis A: General, 437–438 (2012), 72–78 (in English) |
| 10. |
Kasinathanetal P., “Vapor-phase hydrogenation of ethyl lactate over copper-silica nanocomposites”, Applied Catalysis A: General, 451 (2013), 236–242 (in English) |
| 11. |
E. G. Mitina et al., “Investigation of the catalytic activity of copper nanoparticles sintered with polycarbonate in benzene hydrogenation”, Protection of Metals and Physical Chemistry of Surfaces, 50:1 (2014), 69–71 (in English) |
| 12. |
Bulanova A. V. et al., “Investigation of kinetics of the catalytic hydrogenation of benzene using copper nanoparticles as catalyst. Fizikokhimiia poverkhnosti i zashchita materialov”, Protection of Metals and Physical Chemistry of Surfaces, 47:6 (2011), 652–654 (in Russian) |
| 13. |
Nikolaev S. A. et al., “Catalytic hydrogenation of alkadienes and alkynes impurities in the olefin. Practical and theoretical aspects”, Russian Chemical Reviews, 78:3 (2009), 1–18 (in Russian) |
| 14. |
Nametkin S. S., Chemicals of oil, 2nd ed., revised and enlarged, GONTI, M.–L., 1939, 784 pp. (in Russian) |
| 15. |
Gene M. J., Miller A. V., “Levitation-jet method of producing ultrafine metal powders”, Surface. Physics, chemistry, mechanics, 1983, no. 2, 150–154 (in Russian) |
| 16. |
Ishutenko D. I., Selective hydrotreating of olefin-containing hydrocarbon raw material as a component of high octane fuels modified $\mathrm{CoMo/Al_2O_3}$ catalysts, Extended abstract of Candidate's of Chemical Sciences thesis, Samara, 2013, 26 pp. (in Russian) |