The article discusses the processes of heat exchange during the condensation of vapors from combined-cycle gas mixtures containing a significant amount of non-condensing gases and solid impurities. The original design of a horizontal shell-and-tube condenser with profiled fins providing rupture and dispersion of the condensate film is presented. A quantitative assessment of the effectiveness of the proposed apparatus was carried out in relation to the conditions of a cement plant (capacity of 1.0 million tons of cement per year). It is shown that the introduction of oxygen combustion of fuel with subsequent condensation of water vapor makes it possible to reduce the volume of exhaust gases by 54.6%, increase the mass fraction of co₂ in the stream to 94.8% and reduce carbon dioxide emissions by 0.83 tons of co₂ per ton of cement produced. The optimal angle of inclination of the fins distribution strips is 5°, at which the degree of condensation reaches 95.1%, and the heat transfer coefficient is 260 W/(m2•K). The proposed design makes it possible to reduce the metal consumption of the condenser by 12-15% compared to smooth-tube analogues without increasing hydraulic resistance.
1. Aromada S.A., Eldrup N.H., Øi L.E. Cost and Emissions Reduction in CO2 Capture Plant Dependent on Heat Exchanger Type and Different Process Configurations: Optimum Temperature Approach Analysis. Energies. 2022. 15. 425. https://doi.org/10.3390/en15020425
2. Vasilyeva N.V., Ivanov P.V. Development of a control subsystem to stabilize burden materials charging into a furnace. Journal of Physics: Conference Series. 2019. 1210 (1). 012158. https://doi.org/10.1088/1742-6596/1210/1/012158
3. DTU Orbit. Pilot-scale CO₂ capture in a cement plant with CESAR1: Leveraging absorber intercooling and cold-feed heat-integration. 2025. URL: https://orbit.dtu.dk/en/publications/pilot-scale-cosub2sub-capture-in-a-cement-plant-with-cesar1-lever
4. Icebreaker One. IPCC cement production based on production. URL: https://discover.icebreakerone.org/categories/IPCC_cement_production_based_on_production
5. Global Cement. GCCA reports 25% CO₂ intensity reduction since 1990. 2025. URL: https://globalcement.com/news/20119-gcca-reports-25-co-intensity-reduction
6. Central News Agency (Taiwan). Global cement industry achieves 25% CO₂ reduction. 2025. URL: https://cna.com.tw/postwrite/chi/419016
7. SINTEF. Heat integration and heat exchanger network design for oxyfuel cement plants. 2023. URL: https://www.sintef.no/en/publications/publication/0198cc4e70df-c96a83fe-e971-4941-bdc1-e6fcc71008e3/
8. CemNet.com. GCCA report highlights a 25 per cent global reduction in CO₂ intensity. 2025. URL: https://www.cemnet.com/News/story/180309/gcca-report-highlights-a-25-per-cent-global-reduction-in-CO2-intensity.html
9. Sarsenbayev N.K., Salamanova M.Sh., Sarsenbayev B.K., Sauganova G.R., Fediuk R.S., Begentayev M.M., Abduova A.A. Opportunities for environmentally sustainable development of low-carbon technologies in cement production. Construction Materials and Products. 2025. 8 (4). 1. https://doi.org/10.58224/2618-7183-2025-8-4-1
10. Scrivener K.L., John V.M., Gartner E.M. Eco-efficient cements: potential economically viable solutions for a low-CO2 cement-based materials industry. Cement and Concrete Research. 2018. 114. P. 2 – 26. https://doi.org/10.1016/j.cemconres.2018.03.015
11. Auyesbek S., Sarsenbayev B., Lesovik V., Kolesnikova O., Begentayev M., Kuldeyev E., Tulaganov B., Sauganova G., Zhumayev Z. Studies on the Production of a Ground Silicate Composite Based on a Mineral Slag Binder with the Disposal of Industrial Waste. Journal of Composites Science. 2025. 9 (5). P. 225. https://doi.org/10.3390/jcs9050225
12. Muratov B., Shapalov S., Syrlybekkyzy S., Volokitina I., Zhunisbekova D., Takibayeva G., Nurbaeva F., Aubakirova T., Nurshakhanova L., et al. Physico-Chemical Study of the Possibility of Utilization of Coal Ash by Processing as Secondary Raw Materials to Obtain a Composite Cement Clinker. Journal of Composites Science. 2023. 7 (6). P. 234. https://doi.org/10.3390/jcs7060234
13. Kolesnikov A.S., Zhanikulov N.N., Kuraev R.M. Thermodynamic modeling of the synthesis of the main minerals of cement clinker from technogenic raw materials. Kompleksnoe Ispolzovanie Mineralnogo Syra = Complex Use of Mineral Resources. 2021. 318 (3). P. 24 – 34. https://doi.org/10.31643/2021/6445.25
14. Sapargaliyeva B.O., Bychkov A.Yu., Alferyeva Ya.O., Syrlybekkyzy S., Altybaeva Zh.K., Nurshakhanova L.K., Seidaliyeva L.K., Suleimenova B.S., Zhidebayeva A.E., Zhanikulov N.N., Suleimenova T.N., Koshkarbayeva Sh.K., Suigenbayeva A.Zh. Thermodynamic modeling of the formation of the main minerals of cement clinker and zinc fumes in the processing of toxic technogenic waste of the metallurgical industry. Rasayan Journal of Chemistry. 2022. 15 (3). P. 2181 – 2187. https://doi.org/10.31788/RJC.2022.1536230
15. Khudyakova T.M., Kenzhibaeva G.S., Kutzhanova A.N., Iztleuov G.M., Zhanikulov N.N., Kolesnikova O.G., Mynbaeva E. Optimization of Raw Material Mixes in Studying Mixed Cements and Their Physicomechnical Properties. Refractories and Industrial Ceramics. 2019. 60 (1). P. 76 – 81. https://doi.org/10.1007/s11148-019-00312-2
16. Zhanikulov N., Khudyakova T., Taimassov B., Sarsenbayev B., Dauletiarov M., Karshygayev R. Receiving Portland Cement from Technogenic Raw Materials of South Kazakhstan. Eurasian Chemico-Technological Journal. 2019. 21 (4). P. 333 – 340. https://doi.org/10.18321/ectj890
17. Afanasyeva I.V. Promising methods of finning heat exchangers. Modern high-tech technologies. 2019. 7. P. 114 – 121. URL: https://top-technologies.ru/ru/article/view?id=37599
18. Bespalov V.V., Tubolev A.A., Galashov N.N. Study of heat transfer from saturated humid air to the vertical wall of a heat exchanger during condensation of water vapor. Proceedings of TPU. 2022. 8. URL: https://cyberleninka.ru/article/n/issledovanie-teplootdachi-ot-nasyschennogo-vlazhnogo-vozduha-k-vertikalnoy-stenke-teploobmennika-pri-kondensatsii-vodyanyh-parov
19. Golubev V.G., Kolesnikov A.S., Syrlybekkyzy S., Koishina A.I., Taizhanova L.S., Zhidebayeva A.Y., Koibakova S.Ye., Nurbayeva F.K., Kolesnikova O.G., Nurshakhanova L.K. Patent of the Republic of Kazakhstan No. 37519 Horizontal shell-and-tube condenser. Publ. 12.09.2025.
20. Siziakova E.V., Ivanov P.V., Nikitina T.Y. Effect of coal-containing additives on the rheological properties of limestone-nepheline charge in the technology of alumina production. Journal of Physics: Conference Series. 2019. 1384 (1). 012048. https://doi.org/10.1088/1742-6596/1384/1/012048
21. Sergeeva I.V., Botabaev N.E., Al’zhanova A.Zh., Ashirbaev Kh.A. Chemical and phase transitions in oxidized manganese ore in the presence of carbon. Steel in Translation. 2017. 47 (9). P. 605–609. https://doi.org/10.3103/S0967091217090078
22. Siziakova E.V., Ivanov P.V., Boikov A.V. Hydrocarboaliminate calcium application in aluminum processing for production of special cement brands. Journal of Physics: Conference Series. 2018. 1118 (1). 012018. https://doi.org/10.1088/1742-6596/1118/1/012018
23. Kolesnikov A.S., Sergeeva I.V., Botabaev N.E., Al’Zhanova A.Z., Ashirbaev K.A. Thermodynamic simulation of chemical and phase transformations in the system of oxidized manganese ore – carbon. Izvestiya Ferrous Metallurgy. 2017. 60 (9). P. 759 – 765. https://doi.org/10.17073/0368-0797-2017-9-759-765
24. Sinitsin D.A., Elrefaei A.E.M.M., Glazachev A.O., Kuznetsov D.V., Parfenova A.A., Volokitina I.E., Kayumova E.I., Nedoseko I.V. Study of the characteristics of pavement elements made of reinforced soil with the use of secondary resources. Construction Materials and Products. 2023. 6 (6). 2. https://doi.org/10.58224/2618-7183-2023-6-6-2
25. Petropavlovskaya V.B., Petropavlovskii K.S., Novichenkova T.B., Klyuev S.V., Vasilev Y.E., Ignatyev A.A. Fine-grained cement concrete with compressed structure, modified with basalt technogenic highly dispersed powder. Construction Materials and Products. 2025. 8 (4). 2. https://doi.org/10.58224/2618-7183-2025-8-4-2
26. Klyuev S.V., Ayubov N.A., Fomina E.V., Ageeva M.S., Klyuev A.V., Nedoseko I.V. Influence of carbon black additives and finely ground waste from stone wool production on characteristics of cement systems. Construction Materials and Products. 2025. 8 (4). 8. https://doi.org/10.58224/2618-7183-2025-8-4-8
27. Yessengaliev D., Mukhametkhan M., Mukhametkhan Y., Zhabalova G., Kelamanov B., Kolesnikova O., Shyngysbayev B., Aikozova L., Kaskataeva K., Kuatbay Y. Studies of the Possibility of Improving the Quality of Iron Ores and Processing of Technogenic Composite Iron-Containing Waste of Metallurgical Production. Journal of Composites Science. 2023. 7 (12). 501. https://doi.org/10.3390/jcs7120501
28. Volokitina I.E., Volokitin A.V., Panin E.A. Martensitic transformations in stainless steels. Progress in Physics of Metals. 2022. 23 (4). P. 684–728. DOI: 10.15407/ufm.23.04.684
29. Kolesnikov A.S. Thermodynamic simulation of silicon and iron reduction and zinc and lead distillation in zincoligonite ore-carbon systems. Russian Journal of Non-ferrous Metals. 2014. 55. P. 513–518. https://doi.org/10.3103/S1067821214060121
30. Ershov V.A., Belov V.N. Phosphorus technology. L., Chemistry. 1979. P. 250.
31. Afanasyeva I.V. Promising methods of finning heat exchangers. Modern science-intensive technologies. 2019. 7. P. 114 – 121.
32. Golubev V.G., Kolesnikov A.S., Agabekova A.B., Suleimenova T.N., Kaldybayev R.T. Theoretical studies of the heat transfer process and the hydrodynamics of a condensate film by numerical experiment. Rasayan Journal of Chemistry. 2022. 15 (3). P. 1894 – 1904. http://doi.org/10.31788/RJC.2022.1536741
33. Brener A., Golubev V., Kazenova A., Sadyrbaeva A., Kenzhalieva A. Novel considerations on the scaling of rate kernels in the equations of cluster aggregation. IOP Conference Series: Journal of Physics: Conf. Series. 1334 (2019). 012013. MMCTSE 2019. P. 1 – 7.
34. Golubev V.G., Filin A.E., Agabekova A.B., Akilov T.K. Mathematical description of the process of film condensation of vapors from steam-gas mixtures. Rasayan Journal of Chemistry. 2022. 15 (3). P. 1905–1915. http://doi.org/10.31788/RJC.2022.1536695
35. Yefremova S.V., Korolev Y.M., Sukharnikov Y.I., Kablanbekov A.A., Anarbekov K.K. Structural transformations of carbon materials in the processes of preparation from plant raw materials. Solid Fuel Chemistry. 2016. 50. P. 152 – 157. https://doi.org/10.3103/S0361521916030058
36. Volokitina I. Change in the microstructure and properties of steel-aluminum wire during "ECA-pressing – drawing" process. Journal of Chemical Technology and Metallurgy. 2022. 57 (3). P. 631 – 636.
37. Yessengaliev D., Mukhametkhan M., Mukhametkhan Y., Zhabalova G., Kelamanov B., Kolesnikova O., Shyngysbayev B., Aikozova L., Kaskataeva K., Kuatbay Y. Studies of the Possibility of Improving the Quality of Iron Ores and Processing of Technogenic Composite Iron-Containing Waste of Metallurgical Production. Journal of Composites Science. 2023. 7. 501.
38. Auyesbek S., Sarsenbayev B., Lesovik V., Kolesnikova O., Begentayev M., Kuldeyev E., Tulaganov B., Sauganova G., Zhumayev Z. Studies on the Production of a Ground Silicate Composite Based on a Mineral Slag Binder with the Disposal of Industrial Waste. Journal of Composites Science. 2025. 9 (5). 225. https://doi.org/10.3390/jcs9050225
39. Potapov Vadim, Efimenko Yu.V., Fediuk Roman, Peggapuram Abhilash. Efficiency of hydrothermal nanosilica for Portland cement concrete in comparison with other pozzolanic materials. Journal of Sustainable Cement-Based Materials. 2025. 14. 10.1080/21650373.2025.2531458.
40. Kuldeyev E., Begentayev M., Sarsenbayev B., Syrlybekkyzy S., Agabekova A., Bayamirova R., Togasheva A., Zholbassarova A., Koishina A., et al. Investigation of the Possibility of Utilizing Man-Made Waste to Produce Composite Binders. Journal of Composites Science. 2025. 9 (10). 531. https://doi.org/10.3390/jcs9100531
41. Volokitina I.E. Structural and Phase Transformations in Alloys under the Severe Plastic Deformation. Progress in Physics of Metals. 2023. 24 (3). P. 593 – 622. https://doi.org/10.15407/ufm.24.03.593
42. Nadirov K.S., Zhantasov M.K., Bimbetova G.Z., Sadyrbayeva A.S., Orynbasarov A.K., Kutzhanova A.N., Turemuratov R.S., Botabaev N.E., Zhantasova D. Examination of optimal parameters of oxy-ethylation of fatty acids with a view to obtaining demulsifiers for deliquefaction in the system of skimming and treatment of oil: a method to obtain demulsifier from fatty acids. Chemistry today. 2016. 34 (1). P. 72 – 77.
43. Filin A.E., Kurnosov I.Yu., Kolesnikova L.A., Ovchinnikova T.I., Kolesnikov A.S. Description of the methodology for conducting an experiment on dust deposition of mining and metallurgical production. Ugol. 2022. 9. P. 67 – 72. https://doi.org/10.18796/0041-5790-2022-9-67-72
2. Vasilyeva N.V., Ivanov P.V. Development of a control subsystem to stabilize burden materials charging into a furnace. Journal of Physics: Conference Series. 2019. 1210 (1). 012158. https://doi.org/10.1088/1742-6596/1210/1/012158
3. DTU Orbit. Pilot-scale CO₂ capture in a cement plant with CESAR1: Leveraging absorber intercooling and cold-feed heat-integration. 2025. URL: https://orbit.dtu.dk/en/publications/pilot-scale-cosub2sub-capture-in-a-cement-plant-with-cesar1-lever
4. Icebreaker One. IPCC cement production based on production. URL: https://discover.icebreakerone.org/categories/IPCC_cement_production_based_on_production
5. Global Cement. GCCA reports 25% CO₂ intensity reduction since 1990. 2025. URL: https://globalcement.com/news/20119-gcca-reports-25-co-intensity-reduction
6. Central News Agency (Taiwan). Global cement industry achieves 25% CO₂ reduction. 2025. URL: https://cna.com.tw/postwrite/chi/419016
7. SINTEF. Heat integration and heat exchanger network design for oxyfuel cement plants. 2023. URL: https://www.sintef.no/en/publications/publication/0198cc4e70df-c96a83fe-e971-4941-bdc1-e6fcc71008e3/
8. CemNet.com. GCCA report highlights a 25 per cent global reduction in CO₂ intensity. 2025. URL: https://www.cemnet.com/News/story/180309/gcca-report-highlights-a-25-per-cent-global-reduction-in-CO2-intensity.html
9. Sarsenbayev N.K., Salamanova M.Sh., Sarsenbayev B.K., Sauganova G.R., Fediuk R.S., Begentayev M.M., Abduova A.A. Opportunities for environmentally sustainable development of low-carbon technologies in cement production. Construction Materials and Products. 2025. 8 (4). 1. https://doi.org/10.58224/2618-7183-2025-8-4-1
10. Scrivener K.L., John V.M., Gartner E.M. Eco-efficient cements: potential economically viable solutions for a low-CO2 cement-based materials industry. Cement and Concrete Research. 2018. 114. P. 2 – 26. https://doi.org/10.1016/j.cemconres.2018.03.015
11. Auyesbek S., Sarsenbayev B., Lesovik V., Kolesnikova O., Begentayev M., Kuldeyev E., Tulaganov B., Sauganova G., Zhumayev Z. Studies on the Production of a Ground Silicate Composite Based on a Mineral Slag Binder with the Disposal of Industrial Waste. Journal of Composites Science. 2025. 9 (5). P. 225. https://doi.org/10.3390/jcs9050225
12. Muratov B., Shapalov S., Syrlybekkyzy S., Volokitina I., Zhunisbekova D., Takibayeva G., Nurbaeva F., Aubakirova T., Nurshakhanova L., et al. Physico-Chemical Study of the Possibility of Utilization of Coal Ash by Processing as Secondary Raw Materials to Obtain a Composite Cement Clinker. Journal of Composites Science. 2023. 7 (6). P. 234. https://doi.org/10.3390/jcs7060234
13. Kolesnikov A.S., Zhanikulov N.N., Kuraev R.M. Thermodynamic modeling of the synthesis of the main minerals of cement clinker from technogenic raw materials. Kompleksnoe Ispolzovanie Mineralnogo Syra = Complex Use of Mineral Resources. 2021. 318 (3). P. 24 – 34. https://doi.org/10.31643/2021/6445.25
14. Sapargaliyeva B.O., Bychkov A.Yu., Alferyeva Ya.O., Syrlybekkyzy S., Altybaeva Zh.K., Nurshakhanova L.K., Seidaliyeva L.K., Suleimenova B.S., Zhidebayeva A.E., Zhanikulov N.N., Suleimenova T.N., Koshkarbayeva Sh.K., Suigenbayeva A.Zh. Thermodynamic modeling of the formation of the main minerals of cement clinker and zinc fumes in the processing of toxic technogenic waste of the metallurgical industry. Rasayan Journal of Chemistry. 2022. 15 (3). P. 2181 – 2187. https://doi.org/10.31788/RJC.2022.1536230
15. Khudyakova T.M., Kenzhibaeva G.S., Kutzhanova A.N., Iztleuov G.M., Zhanikulov N.N., Kolesnikova O.G., Mynbaeva E. Optimization of Raw Material Mixes in Studying Mixed Cements and Their Physicomechnical Properties. Refractories and Industrial Ceramics. 2019. 60 (1). P. 76 – 81. https://doi.org/10.1007/s11148-019-00312-2
16. Zhanikulov N., Khudyakova T., Taimassov B., Sarsenbayev B., Dauletiarov M., Karshygayev R. Receiving Portland Cement from Technogenic Raw Materials of South Kazakhstan. Eurasian Chemico-Technological Journal. 2019. 21 (4). P. 333 – 340. https://doi.org/10.18321/ectj890
17. Afanasyeva I.V. Promising methods of finning heat exchangers. Modern high-tech technologies. 2019. 7. P. 114 – 121. URL: https://top-technologies.ru/ru/article/view?id=37599
18. Bespalov V.V., Tubolev A.A., Galashov N.N. Study of heat transfer from saturated humid air to the vertical wall of a heat exchanger during condensation of water vapor. Proceedings of TPU. 2022. 8. URL: https://cyberleninka.ru/article/n/issledovanie-teplootdachi-ot-nasyschennogo-vlazhnogo-vozduha-k-vertikalnoy-stenke-teploobmennika-pri-kondensatsii-vodyanyh-parov
19. Golubev V.G., Kolesnikov A.S., Syrlybekkyzy S., Koishina A.I., Taizhanova L.S., Zhidebayeva A.Y., Koibakova S.Ye., Nurbayeva F.K., Kolesnikova O.G., Nurshakhanova L.K. Patent of the Republic of Kazakhstan No. 37519 Horizontal shell-and-tube condenser. Publ. 12.09.2025.
20. Siziakova E.V., Ivanov P.V., Nikitina T.Y. Effect of coal-containing additives on the rheological properties of limestone-nepheline charge in the technology of alumina production. Journal of Physics: Conference Series. 2019. 1384 (1). 012048. https://doi.org/10.1088/1742-6596/1384/1/012048
21. Sergeeva I.V., Botabaev N.E., Al’zhanova A.Zh., Ashirbaev Kh.A. Chemical and phase transitions in oxidized manganese ore in the presence of carbon. Steel in Translation. 2017. 47 (9). P. 605–609. https://doi.org/10.3103/S0967091217090078
22. Siziakova E.V., Ivanov P.V., Boikov A.V. Hydrocarboaliminate calcium application in aluminum processing for production of special cement brands. Journal of Physics: Conference Series. 2018. 1118 (1). 012018. https://doi.org/10.1088/1742-6596/1118/1/012018
23. Kolesnikov A.S., Sergeeva I.V., Botabaev N.E., Al’Zhanova A.Z., Ashirbaev K.A. Thermodynamic simulation of chemical and phase transformations in the system of oxidized manganese ore – carbon. Izvestiya Ferrous Metallurgy. 2017. 60 (9). P. 759 – 765. https://doi.org/10.17073/0368-0797-2017-9-759-765
24. Sinitsin D.A., Elrefaei A.E.M.M., Glazachev A.O., Kuznetsov D.V., Parfenova A.A., Volokitina I.E., Kayumova E.I., Nedoseko I.V. Study of the characteristics of pavement elements made of reinforced soil with the use of secondary resources. Construction Materials and Products. 2023. 6 (6). 2. https://doi.org/10.58224/2618-7183-2023-6-6-2
25. Petropavlovskaya V.B., Petropavlovskii K.S., Novichenkova T.B., Klyuev S.V., Vasilev Y.E., Ignatyev A.A. Fine-grained cement concrete with compressed structure, modified with basalt technogenic highly dispersed powder. Construction Materials and Products. 2025. 8 (4). 2. https://doi.org/10.58224/2618-7183-2025-8-4-2
26. Klyuev S.V., Ayubov N.A., Fomina E.V., Ageeva M.S., Klyuev A.V., Nedoseko I.V. Influence of carbon black additives and finely ground waste from stone wool production on characteristics of cement systems. Construction Materials and Products. 2025. 8 (4). 8. https://doi.org/10.58224/2618-7183-2025-8-4-8
27. Yessengaliev D., Mukhametkhan M., Mukhametkhan Y., Zhabalova G., Kelamanov B., Kolesnikova O., Shyngysbayev B., Aikozova L., Kaskataeva K., Kuatbay Y. Studies of the Possibility of Improving the Quality of Iron Ores and Processing of Technogenic Composite Iron-Containing Waste of Metallurgical Production. Journal of Composites Science. 2023. 7 (12). 501. https://doi.org/10.3390/jcs7120501
28. Volokitina I.E., Volokitin A.V., Panin E.A. Martensitic transformations in stainless steels. Progress in Physics of Metals. 2022. 23 (4). P. 684–728. DOI: 10.15407/ufm.23.04.684
29. Kolesnikov A.S. Thermodynamic simulation of silicon and iron reduction and zinc and lead distillation in zincoligonite ore-carbon systems. Russian Journal of Non-ferrous Metals. 2014. 55. P. 513–518. https://doi.org/10.3103/S1067821214060121
30. Ershov V.A., Belov V.N. Phosphorus technology. L., Chemistry. 1979. P. 250.
31. Afanasyeva I.V. Promising methods of finning heat exchangers. Modern science-intensive technologies. 2019. 7. P. 114 – 121.
32. Golubev V.G., Kolesnikov A.S., Agabekova A.B., Suleimenova T.N., Kaldybayev R.T. Theoretical studies of the heat transfer process and the hydrodynamics of a condensate film by numerical experiment. Rasayan Journal of Chemistry. 2022. 15 (3). P. 1894 – 1904. http://doi.org/10.31788/RJC.2022.1536741
33. Brener A., Golubev V., Kazenova A., Sadyrbaeva A., Kenzhalieva A. Novel considerations on the scaling of rate kernels in the equations of cluster aggregation. IOP Conference Series: Journal of Physics: Conf. Series. 1334 (2019). 012013. MMCTSE 2019. P. 1 – 7.
34. Golubev V.G., Filin A.E., Agabekova A.B., Akilov T.K. Mathematical description of the process of film condensation of vapors from steam-gas mixtures. Rasayan Journal of Chemistry. 2022. 15 (3). P. 1905–1915. http://doi.org/10.31788/RJC.2022.1536695
35. Yefremova S.V., Korolev Y.M., Sukharnikov Y.I., Kablanbekov A.A., Anarbekov K.K. Structural transformations of carbon materials in the processes of preparation from plant raw materials. Solid Fuel Chemistry. 2016. 50. P. 152 – 157. https://doi.org/10.3103/S0361521916030058
36. Volokitina I. Change in the microstructure and properties of steel-aluminum wire during "ECA-pressing – drawing" process. Journal of Chemical Technology and Metallurgy. 2022. 57 (3). P. 631 – 636.
37. Yessengaliev D., Mukhametkhan M., Mukhametkhan Y., Zhabalova G., Kelamanov B., Kolesnikova O., Shyngysbayev B., Aikozova L., Kaskataeva K., Kuatbay Y. Studies of the Possibility of Improving the Quality of Iron Ores and Processing of Technogenic Composite Iron-Containing Waste of Metallurgical Production. Journal of Composites Science. 2023. 7. 501.
38. Auyesbek S., Sarsenbayev B., Lesovik V., Kolesnikova O., Begentayev M., Kuldeyev E., Tulaganov B., Sauganova G., Zhumayev Z. Studies on the Production of a Ground Silicate Composite Based on a Mineral Slag Binder with the Disposal of Industrial Waste. Journal of Composites Science. 2025. 9 (5). 225. https://doi.org/10.3390/jcs9050225
39. Potapov Vadim, Efimenko Yu.V., Fediuk Roman, Peggapuram Abhilash. Efficiency of hydrothermal nanosilica for Portland cement concrete in comparison with other pozzolanic materials. Journal of Sustainable Cement-Based Materials. 2025. 14. 10.1080/21650373.2025.2531458.
40. Kuldeyev E., Begentayev M., Sarsenbayev B., Syrlybekkyzy S., Agabekova A., Bayamirova R., Togasheva A., Zholbassarova A., Koishina A., et al. Investigation of the Possibility of Utilizing Man-Made Waste to Produce Composite Binders. Journal of Composites Science. 2025. 9 (10). 531. https://doi.org/10.3390/jcs9100531
41. Volokitina I.E. Structural and Phase Transformations in Alloys under the Severe Plastic Deformation. Progress in Physics of Metals. 2023. 24 (3). P. 593 – 622. https://doi.org/10.15407/ufm.24.03.593
42. Nadirov K.S., Zhantasov M.K., Bimbetova G.Z., Sadyrbayeva A.S., Orynbasarov A.K., Kutzhanova A.N., Turemuratov R.S., Botabaev N.E., Zhantasova D. Examination of optimal parameters of oxy-ethylation of fatty acids with a view to obtaining demulsifiers for deliquefaction in the system of skimming and treatment of oil: a method to obtain demulsifier from fatty acids. Chemistry today. 2016. 34 (1). P. 72 – 77.
43. Filin A.E., Kurnosov I.Yu., Kolesnikova L.A., Ovchinnikova T.I., Kolesnikov A.S. Description of the methodology for conducting an experiment on dust deposition of mining and metallurgical production. Ugol. 2022. 9. P. 67 – 72. https://doi.org/10.18796/0041-5790-2022-9-67-72
Golubev V.G., Syrlybekkyzy S., Taizhanova L., Nurbayeva F.K., Fediuk G.R., Fediuk R.S., Nesterenko N.G., Kerimbekova Z.M. Improving the efficiency of steam condensation from combined-cycle gas mixtures in shell-and-tube condensers during CO₂ capture in cement plants. Construction Materials and Products. 2026. 9 (4). 5. https://doi.org/10.58224/2618-7183-2026-9-4-5

Русский
English