Study of the influence of technological parameters of the cooking process on the quality of coal tar produced in com ovens “ArcelorMittal Temirtau” JSC
DOI:
https://doi.org/10.31643/2020/6445.39Keywords:
Сoal, coal-tar oil, coke, methane, resin density.Abstract
In the article there are presented results of a research that was carried out to determine a reason for the increase of more than 1,22 g/cm3 coal-tar oil density at the coke production of “ArcelorMittal Temirtau” joint-stock company. There have been studied samples of coal concentrates from nine layers of eight mines in Karaganda coal basin and GZh coal concentrate which are supplied to the coke chemical production of “ArcelorMittal Temirtau” joint-stock company from “Kunetskaya” Enrichment plant (Russia). During the work there has been determined dependence of the gas composition on the temperature affecting gas that was released during coal carbonizing process. It is experimentally established that with an increase in the temperature of the released coke gas above 750 ° C to 1000 ° C, light fractions evaporate from the resin and are removed into the gas discharge path, which is accompanied by a weighting, an increase in the density captured for processing coal tar into pitch. The results of the resin studies that is isolated in the same temperature ranges show the indicators of the resin yield and its density during the tests of concentrates also follow a certain pattern – with an increase in the coal carbonizing temperature and with overheating of the released gas, the resin density increases and its yield decreases. The researches in the plant has found that the technological reason for the weighting of the coke gas resin is a low level of coal charge stockline, which makes possible to linger the coke gas in the underroof space and to overheat with increasing the access of light fractions of the resin with the gas.
Downloads
References
Vlasov G. G. Kleshnya G. A. Utilizatsya smilostyh vtorichnyh produktov koksohimicheskogo proizvodstva[Utilization of resinous secondary products of coke production]. OAO «Avdeevskiy GOK».–g. Avdeevka, Ukraina.(in Russ).
Potonye E.Geneticheskie tipy organicheskih veshestv I osnovnye stadia ego preobrazovania v processe katageneza. Obra-zovanie nefti I gaza [Genetic types of organic matter and the main stages of its transformation in the process of catagene-sis. Formation of oil and gas]. Koks I khimiya, No8, 2016 g.(in Russ).
Khimiya tverdogo topliva[Solid fuel chemistry]. Pod redakciei chl.-korr. LI SSSR N.M. Karaeva. Izdatelstvo inostrannoi lit-eratury. Moskva, 1951 g.(in Russ).
Issagulov A.Z., Akhmetov А.B., Naboko YE.P., Kusainova G.D., Kuszhanova A.A. Тheresearchof modification process of steel hadfield integrated alloyferroalumisilicocalcium (Fe-Al-Si-Ca/FASC). Metalurgija,No3, 2016,333-336.(In Eng).
Mekhtiyev А., Akhmetov A., Yudakova V., Bulatbayev F. Experience with ferrosilicoaluminum alloy during deoxidation of steel.Metalurgija,No1,2016, 47-50.(In Eng).
AkhmetovА.B., Kusainova G.D., Issagulov A.Z., Sultamurat G.l., Kuszhanova A.A. Тheresearchof modification process of steel hadfield integrated alloyferroalumisilicocalcium (Al-Si-Ca). Croatia, Zagreb. MettalurgijaNo2282. (In Eng).
А. T. Ordabayeva, zh. S. Akhmetkarimova, m. G. Meyramov, Zh. H. Muldakhmetov. Hydrogenation of coal tar in the pres-ence of ferriferous catalysts in the environment of mine methane. Kompleksnoe Ispol’zovanie Mineral’nogo Syr’a. = Complex Use of Mineral Resources = Mineraldik Shikisattardy Keshendi Paidalanu.No 4, 2016, 105-109. https://doi.org/10.31643/2018/166445 (In Eng).
Dikhanbaev A.B., Aliyarov B.K., Muhitdinov D.N., Dikhanbaev B.I. Poluchenie obogoshennogo vodorodom vodyanogo gaza s izvlecheniem cenyh komponentov pri sovmestnoi pererabotke ekibastuzskogo uglya metallurgicheskih shlakov I zoloshlakovTES.[Production of hydrogen-rich water gas with the extraction of valuable components from waste during the joint processing of Ekibastuz coal metallurgical slags and ash slags of thermal power plants]. Kompleksnoe Ispol’zovanie Mineral’nogo Syr’a. = Complex Use of Mineral Resources = Mineraldik Shikisattardy Keshendi Paidalanu.No 1.2018, 18-25. https://doi.org/10.31643/2018/166445 (in Russ).
Dikhanbaev B. I., Dikhanbaev A. B. K probleme utilizatsii dioksida ugleroda otkhodyashchikh gazov kotlov elektrostantsiy priszhiganii vysokozol'nykh ugley [On the problem of utilization of carbon dioxide in waste gases of power plant boilers when burning high-ashcoals]. Kompleksnoe Ispol’zovanie Mineral’nogo Syr’a. = Complex Use of Mineral Resources = Mineraldik Shikisattardy Keshendi Paidalanu.-2020. No 4 (315), pp. 33-41. https://doi.org/10.31643/2020/6445.34 (in Russ).
KuatbaiE.K.,OmarovM.A.,MukhambetkalievA.B.Issledovanie processov vosstanovleniya zheleza iz shlakov medeplavilnogo I cinkoolabilnogo proizvodstva s ispolzovaniem otseva Shubarkolskogo uglya. [Investigation of iron re-covery processes from copper and zinc smelting slagsusing Shubarkol coal screening]. Kompleksnoe Ispol’zovanie Mineral’nogo Syr’a. = Complex Use of Mineral Resources = Mineraldik Shikisattardy Keshendi Paidalanu.No4, 2008,31-33. https://doi.org/10.31643/2018/166445 (in Russ).
Kolisnichenko I.E., Artemev V.B., Kolisnichenko E.A., Lyubomishenko E.I. Kvantovo-electronnye zakonomernosti formirovaniya metamorficheskih processov Imehanizma vnezapnyhvybrosov metanav ugolnyh plastah. [Quantum-electronic regularities of the formation of metamorphic processes and the mechanism of sudden methane emissions in coal seams]. Ugol ́,No11, 2020, 53-57.(in Russ).
Portnov V.S., Imanbaeva S.B., Mullagaliev L.F., Balniyazova G.M., Shayahmetov R.T. Prognoz prirodnoi metanosnosni pri razrabotke ugolnyh plastov. [Forecast of natural methane content in the development of coal seams]. Ugol ́,No11, 2020, 53-57. (in Russ).
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2020 Akhmetov, A., Rakhimbekova, I., Sharkaev, S., & Ilyasov, A.
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 Unported License.