FEASIBILITY OF USING HEAT PUMPS IN ENERGYSUPPLY OF THERMOCATALYTIC REACTORS

Authors

  • Georgy Ratushnyak Vinnytsia National Technical University https://orcid.org/0000-0001-9656-5150
  • Katerina Anokhina Vinnytsia National Technical University
  • Vyacheslav Datsyuk Vinnytsia National Technical University

DOI:

https://doi.org/10.31649/2311-1429-2022-2-198-202

Keywords:

energy efficiency, thermocatalytic reactor, heat pump

Abstract

Modern thermocatalytic rreactors for cleaning of gases must have high yield and to provide continuity of process. For the catalytic cleaning the different on a method co-operating is used with a catalyst and functional setting vehicles. For the increase of energy efficiency of thermocatalytic reactors it is expedient to apply alternative energy sources, in particular, heat-pumps. Taking into account advantages of heat-pumps, in particular, simplicity of editing, economy, automation, universality, compactness, quite, ecofriendlyness, reliability, longevity, a thermocatalytic reactor offers for rendering of harmful extrass harmless with a heat-pump in that due to introduction of alternative energy source, the process of heating of catalyst comes true. It will allow to promote power efficiency of process of heatsupply of thermocatalytic reactors

Comparison of different energy sources is executed, it is set as a result, that a geothermal heat-pump has considerable power efficiency. Application of heat-pump substantially reduces the charges of traditional energy sources on heating of components of mixture in a , thermocatalytic reactor and allows to promote energy efficiency of cleaning process. Depending on the sizes of reactor, necessary temperature of catalysis, amount of components in him and volume of muddy mixture that clears up, it is expedient to elect power of heat-pump.

Author Biographies

Georgy Ratushnyak, Vinnytsia National Technical University

Ph.D., Professor, Head Department of Engineering Systems in Construction

Katerina Anokhina, Vinnytsia National Technical University

Ph.D., Associate Professor of the Department of Engineering Systems in the construction

Vyacheslav Datsyuk, Vinnytsia National Technical University

Student, Faculty of Civil Engineering, Heat and Gas supply

References

Ratushnyak G.S. Teoretichnі osnovi tekhnologії ochishchennya gazovih vikidіv / Navch. pos. Vіnnicya: VNTU, 2002. 96 s.

Patent 148245, MPK B01J 8/00. Termokatalіtichnij reaktor dlya nejtralіzacії shkіdlivih domіshok [Tekst] / G. S. Ratushnyak, K. V. Anohіna, O. G. Lyalyuk, A. O. Lyalyuk (Ukraїna). – № u 2021 00444 , zayavl. 05.02.2021 , opubl. 21.07.2021, Byul. № 29. – 4 s. : kresl.

Niz'kopotencіjna energetika [Tekst] : navchal'nij posіbnik / A. O. Red'ko, M. K. Bezrodnij, M. V. Zagoruchenko [ta іn.] ; pіd red. akademіka NANU A. A. Dolins'kogo. - Harkіv: TOV "Drukarnya Madrid". – 2016. – S. 412.

Ostapenko O. P. Naukovі osnovi konsolіdacії problem energetiki, ekologії ta ekonomіki v teplotekhnologіchnih sistemah z teplovimi nasosami [Tekst] / Unіversitets'ka nauka-2015 : tezi dopovіdej mіzhnar. nauk.-tekhn. konf., 19-20 travnya 2015 r. Marіupol', 2015. T. 1, S. 206-207.

Suchasnі ta al'ternativnі sistemi opalennya. URL: https://ekonomteplo.com.ua/teplovi-nasosy/

Akvaterms. Geotermal'nij teplovij nasos. URL: https://aquaterms.com/ua/shop/category/otoplenie/teplovye-nasosy/geotermalnye-nasosy

Akademіk. Teplovij nasos. URL: https://dic.academic.ua/dic.nsf/ruwiki/259819.

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Published

2023-03-22

How to Cite

[1]
G. Ratushnyak, K. Anokhina, and V. Datsyuk, “FEASIBILITY OF USING HEAT PUMPS IN ENERGYSUPPLY OF THERMOCATALYTIC REACTORS”, СучТехнБудів, vol. 33, no. 2, pp. 198–202, Mar. 2023.

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Section

ENGINEERING SYSTEMS OF BUILDINGS

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