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ECOLOGICAL AND ENERGY OPTIMIZATION OF A COAL-FIRED BOILER OPERATION BASED ON FLUE GAS RECIRCULATION

https://doi.org/10.53360/2788-7995-2026-1(21)-61

Abstract

Flue gas recirculation (FGR) is an effective approach for simultaneously reducing nitrogen oxide emissions and improving the energy performance of coal-fired boilers by controlling flame temperature and the composition of the working mixture. This paper presents a computational and analytical study of FGR application to the E-90-3.9/440 boiler at TPP-1 under firing of D-grade coal from the Karazhyra open-pit mine. The aim is to determine a rational FGR ratio that ensures NOx reduction while maximizing gross boiler efficiency within operational constraints. The methodology is based on a mathematical boiler heat-balance model and processing of operational data before and after FGR activation; changes in flue gas composition and heat losses were assessed as the recirculation fraction was varied.
The results show that, within the considered FGR range, increasing recirculation is associated with a rise in calculated gross efficiency and a decrease in NOx concentration: a 1% increase in FGR raises gross efficiency by 0.25%, while NOx decreases by 9 mg/m3 . Rational performance is achieved at FGR ≈ 20%, corresponding to a calculated gross efficiency of 95.5% and a 30% reduction in NOx relative to the baseline mode. The findings confirm the feasibility of FGR as a technological solution for enhancing the environmental and operational performance of coal-fired thermal power plants in Kazakhstan.

About the Authors

A. R. Khazhidinova
Shakarim University
Kazakhstan

Akbota Ryspekovna Khazhidinova – PhD, Acting Associate Professor, Department of «Technical Physics and Heat Power Engineering» 

071412, Semey, 20A Glinka St.



K. S. Zarykbayeva
Shakarim University
Kazakhstan

Kamshat Serikhanovna Zarykbayeva – Master of Technical Sciences, Senior Lecturer, Department of «Technical Physics and Heat Power Engineering» 

071412, Semey, 20A Glinka St.



E. N. Myasoedova
Shakarim University
Kazakhstan

Ekaterina Nikolaevna Myasoedova – Master of Technical Sciences, Lecturer, Department of «Technical Physics and Heat Power Engineering» 

071412, Semey, 20A Glinka St.



A. E. Satybaldinova
Shakarim University
Kazakhstan

Aigerim Erkenovna Satybaldinova – Master of Technical Sciences, Lecturer, Department of «Technical Physics and Heat Power Engineering» 

071412, Semey, 20A Glinka St.



S. L. Elistratov
Novosibirsk State Technical University
Russian Federation

Sergey Lvovich Elistratov – doctor of technical sciences, professor of the Department of «Heat Power Plants» 

630073, Novosibirsk, 20 Karl Marx Avenue, Building 1



References

1. Effect of the coal-spreading air on airflow and low-NOx combustion within a 75 t/h coal-fired grate furnace / Z. Ge et al. // Applied Thermal Engineering. – 2024. – T. 256. – R. 124076. (In English).

2. Busygin S.V. Modelirovanie processa recirkulyacii dymovyh gazov energeticheskogo kotla s primeneniem kompleksa programm dlya ocenki effektivnosti meropriyatij napravlennyh na podavlenie vybrosov NOx pri szhiganii prirodnogo gaza na TES / S. V. Busygin / S.V. Busygin // Razvitie metodov prikladnoj matematiki dlya resheniya mezhdisciplinarnyh problem energetiki: Materialy I Vserossijskoj nauchno-tekhnicheskoj konferencii s mezhdunarodnym uchastiem, Ul'yanovsk, 06-07 oktyabrya 2021 goda. – Ul'yanovsk: Ul'yanovskij gosudarstvennyj tekhnicheskij universitet, 2021. – S. 176-179. (In Russian).

3. Effects of flue gas recirculation on self-excited combustion instability and NOx emission of a premixed flame / D. Pan et al // Thermal Science and Engineering Progress. – 2022. – T. 30. – R. 101252. (In English).

4. Junwei S. Influence of Different Flue Gas Recirculation Schemes on 1000 MW Ultra-supercritical Double Reheat Boiler [J] / S. Junwei, D. Weibao, Y. Weiping // Journal of engineering for thermal energy and power. – 2019. – № 34(5). – R. 49-56. (In English).

5. Umyrzhan N.N. Recirkulyaciya dymovyh gazov kak sposob effektivnogo regulirovaniya topochnogo processa / N.N. Umyrzhan, A.I. Manulenko, T.N. Umyrzhan // Energiya-2022. Teploenergetika: Semnadcataya vserossijskaya (devyataya mezhdunarodnaya) nauchnotekhnicheskaya konferenciya studentov, aspirantov i molodyh uchenyh. V 6 t., Ivanovo, 11-13 maya 2022 goda. Tom 1. – Ivanovo: Ivanovskij gosudarstvennyj energeticheskij universitet im. V.I. Lenina, 2022. – S. 18. (In Russian).

6. Characteristics and flame appearance of oxy-fuel combustion using flue gas recirculation / M. Abdelaal et al // Fuel. – 2021. – T. 297. – R. 120775. (In English).

7. Ahn J. Combustion characteristics of 0.5 MW class oxy-fuel FGR (flue gas recirculation) boiler for CO2 capture / J. Ahn, H.J. Kim // Energies. – 2021. – T. 14, № 14. – R. 4333. (In English).

8. Recirkulyaciya dymovyh gazov kak sposob vnedreniya ekologicheskih tekhnologij v energeticheskih kotlah / N. Umyrzhan i dr. // Vestnik KazATK. – 2021. – T. 119, № 4. – S. 113-120. (In Russian).

9. Patent № 2761254 C1 Rossijskaya Federaciya, MPK F23C 13/00. Ustrojstvo recirkulyacii dymovyh gazov: № 2021107646: zayavl. 22.03.2021: opubl. 06.12.2021 / S.V. Aleksandrov. (In Russian).

10. Zhu Y. Combustion characteristic study with a flue gas internal and external double recirculation burner / Y. Zhu, C. Wang, X. Chen // Chemical Engineering and Processing-Process Intensification. – 2021. – T. 162. – R. 108345. (In English).

11. Experimental study on NOX formation characteristics in flue gas recirculation combustion process of S-CO2 coal-fired boiler / N. Li et al // Combustion Science and Technology. – 2024. – T. 196, № 18. – R. 5048-5063. (In English).

12. Khorampoor S. Efficient natural gas combustion and NOx reduction: A novel application of simultaneous over-fire air (OFA) and flue gas recirculation (FGR) in a 250 MW opposed firing steam power plant boiler / S. Khorampoor, S. Sanaye // Energy Reports. – 2024. – T. 12. – R. 2573-2587. (In English).

13. Numerical Studies of the Influence of Flue Gas Recirculation into Primary Air on NOx Formation, CO Emission, and Low-NOx Waterwall Corrosion in the OP 650 Boiler / V. Hernik et al // Energies. – 2024. – T. 17, № 9. – R. 2227. (In English).

14. Research on the effect of the flue gas recirculation on the combustion and operating economy of circulating fluidized bed boiler / G. Xie et al // IOP Conference Series: Earth and Environmental Science. – IOP Publishing. – 2023. – T. 1171, № 1. – R. 012005. (In English).

15. Numerical Study on Effect of Flue Gas Recirculation and Co-Firing with Biomass on Combustion Characteristics in Octagonal Tangentially Lignite-Fired Boiler / J. Du et al // Energies. – 2024. – T. 17, № 2. – R. 475. (In English).

16. ST RK GOST R ISO 10849-2010 (GOST R ISO 10849-2006). Vybrosy stacionarnyh istochnikov. Opredelenie massovoj koncentracii oksidov azota. Harakteristika avtomaticheskih metodov izmerenij v usloviyah primeneniya. – Astana: Komitet tekhnicheskogo regulirovaniya i metrologii Ministerstva industrii i novyh tekhnologij Respubliki Kazahstan, 2010. – Vveden v dejstvie s 01.01.2012. – Rezhim dostupa: https://prg.kz/document/?doc_id=31924024 (data obrashcheniya: 27.02.2026). (In Russian).


Review

For citations:


Khazhidinova A.R., Zarykbayeva K.S., Myasoedova E.N., Satybaldinova A.E., Elistratov S.L. ECOLOGICAL AND ENERGY OPTIMIZATION OF A COAL-FIRED BOILER OPERATION BASED ON FLUE GAS RECIRCULATION. Bulletin of Shakarim University. Technical Sciences. 2026;1(1(21)):565-573. (In Russ.) https://doi.org/10.53360/2788-7995-2026-1(21)-61

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