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Utilization of Waste from the Enrichment of Non-Ferrous Metal Ores as Secondary Mineral Raw Materials in the Production of Cement Clinker

https://doi.org/10.18412/1816-0395-2023-1-19-23

Abstract

The scientific results of the optimization of raw materials mixtures for the production of cement clinker with the involvement as a secondary raw material – technogenic waste of the enrichment of non-ferrous metal ores, which by their chemical composition are of interest as an iron-aluminum-silicate raw material component. It has been established that the use of non-ferrous metal ore enrichment waste in the raw material mixture in the form of secondary technogenic raw materials contributes to its utilization, reducing the specific fuel consumption during clinker firing by 5.76%, reducing the firing temperature by 50 °C and obtaining cement clinker that meets the requirements for chemical and mineralogical compositions according to GOST 31108-2016.

About the Authors

A.S. Kolesnikov
M. Auezov South Kazakhstan University
Kazakhstan

Cand. Sci. (Eng.), Professor



N.N. Zhanikulov
E.A. Buketov Karaganda University
Kazakhstan

PhD in Chemical Technology, Associate Professor



S. Syrlybekkyzy
Caspian University of Technology and Engineering named after Sh. Yesenov
Kazakhstan

PhD in Life Safety and Environmental Protection, Associate Professor



A.A. Abduova
M. Auezov South Kazakhstan University
Kazakhstan

PhD in Ecology, Deputy Dean for Scientific Work



A.O. Orazymbetova
M. Auezov South Kazakhstan University
Kazakhstan

Master's degree, Senior Lectoro



O.G. Kolesnikova
M. Auezov South Kazakhstan University
Kazakhstan

Junior Research Fellow



A.L. Shal
M. Auezov South Kazakhstan University
Kazakhstan

Master's student, Specialist of the highest level of qualifications



References

1. Классен В.К., Борисов И.Н., Мануйлов В.Е. Техногенные материалы в производстве цемента: монография. Белгород, Изд-во БГТУ, 2008. 126 с.

2. Таймасов Б.Т., Классен В.К. Химическая технология вяжущих материалов: учебник. 2-е изд., доп. Белгород, Изд-во БГТУ, 2017. 448с.

3. Ключевые показатели цементной и строительной отраслей Азербайджана, Армении, Беларуси, Грузии, Казахстана, Кыргызстана, Латвии, Литвы, Молдовы, Таджикистана, Узбекистана, Украины, Эстонии за 9 месяцев в 2020 года. Цемент и его применение. Санкт-Петербург, 2020. 14 с.

4. Таймасов Б.Т. Технология производства портландцемента: учебное пособие. Алматы, Эверо, 2015. 272 с.

5. Nadirov K.S., Zhantasov M.K., 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. V. 34. № 1. Р. 72—77.

6. Nadirov K.S., Zhantasov M.K., Sakybayev B.A., Tuleuov A.M. The study of the gossypol resin impact on adhesive properties of the intermediate layer of the pipeline three-layer rust protection coating. International Journal of Adhesion and Adhesives. 2017. V. 78. Р. 195—199. http://doi.org/10.1016/j.ijadhadh.2017.07.001

7. Taimasov B.T., Borisov I.N., Dzhanmuldaeva Zh.K., Dauletiarov M.S. Research on obtaining low energy cements from technogenic raw materials. Journal of Chemical Technology and Metallurgy. 2020. Vol. 55. № 4. P.814—823.

8. Taimasov B.T., Sarsenbayev B.K., Khudyakova T.M. Development and testing of low-energy intensive technology of receiving sulfate-resistant and road Portland cement. Eurasian Chemico-Technological Journal. 2017. Vol. 19(4). P. 347—355. doi: https://doi.org/10.18321/ectj683.

9. Подгородецкий Г., Шульц Л. Современные направления развития и повышения энерго-экологической эффективности черной металлургии. Экология и промышленность России. 2016. Т. 20. № 4. С. 46—52. https://doi.org/10.18412/1816-0395-2016-4-46-52.

10. Подгородецкий Г., Ширяева Е., Горбунов В., Козлова О. Проблема эффективной переработки красных шламов, поиск решений. Экология и промышленность России. 2015. Т. 19. № 12. С. 46—53. https://doi.org/10.18412/1816-0395-2015-12-46-53.

11. ГОСТ 31108-2016 Цементы общестроительные. Технические условия. Введ. 2016-06-01. М., Стандартинформ, 2016. 12 с.

12. Трубаев П.А. Программа расчета и оптимизации цементных сырьевых смесей "ROCS". БГТУ им В.Г. Шухова, Белгород, 2006 г. 60 с.

13. Zhakipbaev B.Ye, Аkhmetova Е.K., Kuraev R.M. Review of technogenic waste and methods of its processing for the purpose of complex utilization of tailings from the enrichment of non-ferrous metal ores as a component of the raw material mixture in the production of cement clinker. Rasayan Journal of Chemistry. 2021. Vol. 14. Iss. 2. P. 997—1005. doi:10.31788/RJC.2021.1426229.

14. Zhakipbayev B.Ye., Kuraev R.M. Thermodynamic modeling of the synthesis of the main minerals of cement clinker from technogenic raw materials. Complex Use of Mineral Resources. 2021. № 3 (318). P. 24—34. DOI:10.31643/2021/6445.25.

15. Fediuk R., Zhakipbayev B., Kuraev R., Akhmetova E. Processing of Waste from Enrichment with the Production of Cement Clinker and the Extraction of Zinc. Materials. 2022. Vol. 15. P. 324. https://doi.org/10.3390/ma15010324.


Review

For citations:


Kolesnikov A., Zhanikulov N., Syrlybekkyzy S., Abduova A., Orazymbetova A., Kolesnikova O., Shal A. Utilization of Waste from the Enrichment of Non-Ferrous Metal Ores as Secondary Mineral Raw Materials in the Production of Cement Clinker. Ecology and Industry of Russia. 2023;27(1):19-23. (In Russ.) https://doi.org/10.18412/1816-0395-2023-1-19-23

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ISSN 1816-0395 (Print)
ISSN 2413-6042 (Online)