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MINERAL PROCESSING
Название On the issue of complex processing of phosphorous iron ores
DOI 10.17580/chm.2021.03.01
Автор M. R. Konevsky, P. V. Kovalev, S. V. Ryaboshuk, A. A. Kur
Информация об авторе

Peter the Great St. Petersburg Polytechnic University (St. Petersburg, Russia):

M. R. Konevsky, Dr. Eng., Prof., e-mail: chemmet2008@yandex.ru
P. V. Kovalev, Cand. Eng., Associate Prof., e-mail: kovalev_pv@spbstu.ru
S. V. Ryaboshuk, Senior Lecturer, e-mail: ryaboshuk_sv@spbstu.ru
A. A. Kur, Cand. Eng., Associate Prof., e-mail: kur_aa@spbstu.ru

Реферат

The reasons for the complete or partial rejection of the phosphorous iron ores (PIO) usage in ferrous metallurgy contrary to a shortage of iron ore raw materials are considered. Dephosphorization of metal from high-phosphorous cast irons leads to the complication of technology and deterioration of the production economics because of high intensity of the converter smelting and increasing requirements for the purity of steel. Limitation of PIO share in the blast furnace charge and decrease of phosphorus contents in cast irons led to a deterioration of the steel phosphate slag (PS) quality as fertilizers, which results in its disposal to the dump. Information on the opposite foreign practice of obtaining satisfactory phosphate slags is given, which is an increase in cast iron phosphorus contents by addition of ferrophosphorus. The reasons for abandoning this practice are analyzed. The authors studies aimed at increasing of phosphorus concentration in phosphate slags to bring PS conditions up to the requirements for specially produced by the chemical industry fused fertilizing phosphates and/or an intermediate product for the production of yellow phosphorus are described. On the basis of research and a technical and economic assessment, the feasibility of returning to the use of ferrophosphorus after making appropriate adjustments was substantiated. According to the proposed technology, phosphorous ferroalloy is used as a direct reagent in relation to substandard phosphate slags using their physical heat and exothermic reaction. The process is feasible outside the main metallurgical units and does not require the complication of steelmaking technology. It is possible to use ferrophosphorus as a by-product of the phosphorus industry due to its excess in the world market. It could also be obtained by reduction smelting of dump PS or current discharge slag. Phosphorous iron ores deep processing and the associated production of expensive chemical products will rise economic viability of “phosphorus-infected” iron ores usage.

Ключевые слова Phosphorous iron ores, metals, phosphorus, phosphorous slags, phosphate raw materials, fused phosphates, fertilizers
Библиографический список

1. Dovgopol V. I. Usage of ferrous metallurgy slags. Moscow: Metallurgiya. 1978. 168 p.
2. Takhautdinov R. S., Korotkikh V. F., Bodyaev Yu. А., Nikolaev О. А., Stepanova А. А. Mastering the technology of processing cast iron with high phosphorus content in converter. Stal. 1997. No. 3. pp. 15–17.
3. Kuhn М. Improving the use of steel making by-products – a step towards sustainability. Chernye Metally. 2013. No. 7. pp. 35–43.
4. Doroshenko V. A., Doroshenko N. К. On the processing of phosphorous cast irons in oxygen converters. Vestnik gorno-metallurgicheskoy sektsii RAEN. Otdelenie Metallurgii. 2010. Iss. 26. pp. 33–37.
5. Bigeev V. А. Reduction of resource intensity of steel production by improving the processes of slag formation and disposal of slag: thesis of inauguration of Dissertation … of Doctor of Engineering Sciences. Magnitogorsk, 2001.
6. Monich Т. А. Physico-chemical and technological researches of the process of carbothermal reduction of Karmetkombinat converter slags with the purpose of vanadium extraction: thesis of inauguration of Dissertation … of Candidate of Engineering Sciences. Almaty, 1995.
7. Konevskiy М. R., Mukhambedyarov Е. Т., Ryaboshuk S. V. Phosphorous ferroalloys. Production technology, grades and quality. Chernye Metally. 2013. No. 12. pp. 9–12.
8. Tychert E., Gupta V. Influence of different coke size on the mode of operation of a blast furnace with a 7.8 m hearth diameter. Chernye Metally. 1976. No. 14–15. pp. 19–23.
9. Konevskii M. R. On the Kinetic Characteristics of the Reduction and Sublimation of Phosphorus from Melts. Russian Metallurgy (Metally). 2017. No. 7. pp. 617–621.
10. Konevskiy М. R. Features of the mechanism and kinetics of phosphorus reduction in the presence of the metal phase. Izvestiya AN SSSR. Metally. 1982. No. 3. pp.18–21.
11. Belov V. N., Bolshakova А. P., Dantsis Ya. B. et. al. Phosphorus technology. Edited by Ershov V. A., Belov V. N. Leningrad: Khimiya, 1979. 336 p.
12. Takayuki Iwama, Chuan-ming Du, Xu Gao, Sun-joong Kim, Shigeru Ueda et al. Extraction of Phosphorus from Steelmaking Slag by Selective Leaching Using Citric Acid. ISIJ International. 2018. Vol. 58, Iss. 7. pp. 1351–1360.
13. Li Bing, Tang Biao, Ma Zhen, Cheng Hanchi, Li Hongbo. Physical and Chemical Properties of Steel Slag and Utilization Technology of Steel Slag at Home and Abroad. IOP 2019 Conf. Ser.: Earth Environ. Sci. 242 032012.
14. Arlt К.J, Bannenberg N., Endemann G., Motz H. Slag in the mill work of environmental and resource policy. Chernye Metally. 2013. No. 8. pp. 37–42.
15. Kimio I. T. O. Steelmaking Slag for Fertilizer Usage. Nippon Steel & Sumitomo Metal Technical Report. 2015. No. 109. pp. 130–136.
16. Das Suvendu, Kim Gil Won, Hwang Hyun Young, Verma Pankaj Prakash, Kim Pil Joo. Cropping with Slag to Address Soil, Environment, and Food Security. Front. Microbiol. 2019. DOI: 10.3389/fmicb.2019.01320

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