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Control of the selective hydrogenation of acetylene compounds

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Abstract

The dependence of the hydrogen supplied to the hydrogenation reactor on the acetylene concentration is simulated. An algorithm is proposed for automatic cascade control of selective hydrogenation. That permits optimization of the hydrogen supply on the basis of the actual acetylene concentration in the ethane—ethylene fraction and the input of raw materials to the reactor.

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References

  1. Burganov, B.T., Palladium catalysts of selective hydrogenation of acetylene obtained using supercritical carbon dioxide, Extended Abstract of Cand. Sci. (Chem.) Dissertation, Kazan: Kazan Natl. Res. Technol. Univ., 2015.

    Google Scholar 

  2. Kachalova, T.N. and Khairullina, L.I., Modernization of the hydrogenation unit of ethane-ethylene fraction, Vestn. Kazan. Gos. Tekh. Univ., 2012, vol. 15, no. 10, pp. 230–231.

    Google Scholar 

  3. Mullakhmetov, A.G., Hydrogenation of acetylene in the ethane-ethylene fraction on a new palladium catalyst, Extended Abstract of Cand. Sci. (Tech.) Dissertation, Kazan: Kazan. State Tech. Univ., 2000.

    Google Scholar 

  4. Mashkovskii, I.S., Tkachenko, O.P., Baeva, G.N., and Stakheev, A.Y., New high-selectivity hydrogenation catalysts prepared from bimetallic acetate complexes, Kinet. Catal., 2009, vol. 50, no. 5, pp. 768–774.

    Article  Google Scholar 

  5. Tyurina, L.A., Nikolaev, S.A., Gurevich, S.A., et al., Selective hydrogenation of acetylene on nanocatalysts, Katal. Prom-sti, 2008, no. 5, pp. 86–91.

    Google Scholar 

  6. Bogdan, V.I., Koklin, A.E., and Kazanskii, V.B., Regeneration of deactivated palladium catalysts for the selective hydrogenation of acetylene by supercritical CO2, Sverkhkrit. Flyuidy: Teor. Prakt., 2006, vol. 1, no. 2, pp. 5–12.

    Google Scholar 

  7. Kurnasov, E.V., Programmiruemye logicheskie kontrollery sistem avtomatizatsii i upravleniya: tekhnologii Beckhoff. Uchebnoe posobie (Programmed Logic Controllers of the Automation and Control Systems: Beckhoff Technologies. Manual), Moscow: Mosk. Gos. Univ. Priborostr. Inf., 2014.

    Google Scholar 

  8. Andreev, E.B. and Popad’ko, V.E., Programmye sredstva system upravleniya tekhnologicheskimi protsessami v neftyanoi i gazovoi promyshlennosti: uchebnoe posobie (Software for Process Control in the Oil and Gas Industry: A Handbook), Moscow: Ross. Gos. Univ. Nefti Gaza im. I.M. Gubkina, 2005.

    Google Scholar 

  9. Kurnasov, E.V., Object attachment of devices in SCADA systems, Russ. Eng. Res., 2013, vol. 33, no. 3, pp. 152–155.

    Article  Google Scholar 

  10. Matveikin, V.G., Frolov, S.V., and Shekhtman, M.B., Primenenie SCADA-sistem pri avtomatizatsii tekhnologicheskikh protsessov: uchebnoe posobie (The Use of SCADA Systems in Automation of Technological Processes: Manual), Moscow: Mashinostroenie, 2000.

    Google Scholar 

  11. Kurnasov, E.V., Evaluation of the efficiency of the automated technological process taking into account its decomposition and synthesis of subprocesses, Avtom. Sovrem. Tekhnol., 2016, no. 4, pp. 31–35.

    Google Scholar 

  12. Kholopov, V.A. and Ladynin, A.I., Analysis of the structures of the automated process control system in relation to the production types, Prom. ASU Kontroll., 2015, no. 6, pp. 7–11.

    Google Scholar 

  13. Kurnasov, E.V. and Ten, V.E., Algorithms for analysis and control of the efficiency of automated technological processes, Avtom. Sovrem. Tekhnol., 2014, no. 12, pp. 21–25.

    Google Scholar 

  14. Albagachiev, A.Yu. and Kushnir, A.P., Forecasting of the measurement results of inertial parameters based on mathematical modeling, Pribory, 2012, no. 9, pp. 24–28.

    Google Scholar 

  15. Kurnasov, E.V., Evaluation of the degree of inter-level interaction of information flows of a industrial enterprise with the MES-system, Sborka Mashinostr. Priborostr., 2012, no. 3, pp. 3–5.

    Google Scholar 

  16. Kholopov, V.A. and Golubtsov, I.N., Classification of automated industrial processes for determination of the level and method of their automation, Polzunovskii Vestn., 2012, no. 1, pp. 315–317.

    Google Scholar 

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Correspondence to E. V. Kurnasov.

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Original Russian Text © E.V. Kurnasov, A.B. Malyshkin, 2017, published in Vestnik Mashinostroeniya, 2017, No. 2, pp. 56–59.

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Kurnasov, E.V., Malyshkin, A.B. Control of the selective hydrogenation of acetylene compounds. Russ. Engin. Res. 37, 393–396 (2017). https://doi.org/10.3103/S1068798X1705015X

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  • DOI: https://doi.org/10.3103/S1068798X1705015X

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