Reduction of specific coke consumption in blast furnace by impact on thermal reverse zone

A. S. Kharchenko, M. I. Sibagatullina, E. O. Kharchenko, I. V. Makarova, S. K. Sibagatullina, V. A. Beginyuk
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Abstract

At the blast furnace of PJSC “Magnitogorsk Metallurgical Plant” (MMK), the specific consumption of coke was reduced by impact on thermal reverse zone (TRZ) by increasing the consumption of natural gas above 120 m 3 /t of cast iron under conditions of increased reactivity and reduced hot strength of coke. In the first pair of periods, an increase in CRI from 38.4 to 39.3 % with a decrease in CSR from 36.3 to 34.6 % was accompanied by an increase in the ratio of natural gas consumption and total oxygen entering the furnace from 0.43 to 0.45 by increasing the specific gas consumption from 123.2 to 133.5 m 3 /t of cast iron. The set of actions increased the TRZ length towards the blast-furnace mouth by 1.9 % with its unchanged location along the lower part. Reducing the heat consumption in the TRZ increased the temperature difference between gas and materials there by an average of 36 °С. In the second pair of periods, the consumption of natural gas was 143.9 m 3 /t of cast iron with a decrease in the oxygen content in the blast from 27.6 to 27.0. They were accompanied by the following changes in the processes under consideration: an increase in the length of the TRZ towards the blast-furnace mouth by 2.6 % and the distance from the tuyere hearth by 3.4 %, an increase in the degree of carbon reduction from 32.0 to 33.3 %, an insignificant (on average 0.3 °С) increase in the temperature difference of gas and materials in the TRZ. In the first pair of periods, reduction in the coke specific consumption was 4.7 kg/t of cast iron with an increase in furnace productivity by 27 t/day. Conditions and course of the processes of the second pair ensured a decrease in the coke specific consumption by 1.6 kg/t of cast iron and led to a decrease in cast iron production by 41 t/day.
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通过影响热逆区来降低高炉焦炭比耗
在PJSC“马格尼托格尔斯克冶炼厂”(MMK)的高炉上,在提高焦炭反应性和降低焦炭热强度的条件下,通过增加120 m3 /t以上铸铁的天然气消耗来影响热逆区(TRZ),从而降低焦炭的比耗。在前两个时期,CRI从38.4增加到39.3%,CSR从36.3%降低到34.6%,同时,天然气消耗与炉内总氧的比值从0.43增加到0.45,比气消耗从123.2 m3 /t增加到133.5 m3 /t。这组动作使通往高炉口的TRZ长度增加了1.9%,而其沿下部的位置不变。减少热区的热消耗使气体和材料之间的温差平均增加了36°С。在第二阶段,天然气消耗量为143.9 m3 /t,高炉中氧含量从27.6下降到27.0。在考虑的过程中,它们伴随着以下变化:TRZ到高炉口的长度增加了2.6%,到风口炉膛的距离增加了3.4%,碳减排程度从32.0%增加到33.3%,TRZ内气体和材料的温差增加不显著(平均0.3°С)。在前两个时期,焦炭的特定消耗减少了4.7公斤/吨铸铁,炉生产率提高了27吨/天。第二对工艺的条件和过程确保了焦炭比消耗量减少1.6 kg/t铸铁,导致铸铁产量减少41 t/ t。
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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