在体积改性添加剂的参与下获得的焦炭对高炉冶炼技术经济指标的影响评价

O. Zelenskii
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引用次数: 0

摘要

论述了抗焦炭指标CSR(反应后焦炭强度)对高炉工艺技术经济指标的影响。结果表明,在炼焦焦炭生产过程中,添加体积改性添加剂,用量为煤负荷重量的0.25%,可提高焦炭的强度,特别是提高焦炭的CSR指标。采用α-Al2O3电刚玉和α-SiC碳化硅(粒径<45 μm)和α-SiC碳化硅(粒径<12 μm)作为体积改性添加剂。在煤料中加入电刚玉和碳化硅的细粉,可使焦炭的反应后强度指数(CSR)最大提高7.6%。根据Metinvest Holding LLC冶金部门的指导文件,评估了焦炭质量单项指标的变化对高炉焦炭消耗量和生产率的影响。该文件包含了详细的方法,用于分析高炉工艺参数变化对高炉焦炭消耗量和吞吐量的影响(通过因子分析)。该技术基于变化的参数(因素)与焦炭消耗(高炉生产率)之间的定量关系。从喷粉高炉生产的角度,对在混合料中引入0.25%细粉状α-Al2O3和α-SiC粉末的可行性进行了专家技术经济评价。结果表明,尽管在混合物中加入体积改性添加剂会增加焦炭的成本,但由于焦炭的反应后强度增加,焦炭的比消耗量预期会降低,因此铁的成本可以降低。
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THE ESTIMATION OF THE EFFECT OF COKE, OBTAINED WITH PARTICIPATION OF VOLUME-MODIFYING ADDITIVES, ON THE TECHNICAL AND ECONOMIC INDICATORS OF BLUST FURNACE SMELTING
The article deals with the effect of the coke resistance index CSR (Coke Strength after Reaction) on the technical and economic indicators of the blast furnace process. It is shown that in the production of metallurgical coke using volume-modifying additives in the amount of 0.25% by weight of the coal load, its strength improves, in particular, index CSR. As a volume-modifying additives, α-Al2O3 electrocorundum and α-SiC carborundum with a particle size of <45 μm and vibromilenum α-SiC carborundum with a particle size <12 μm were used. Due to the introduction of fine powders of electrocorundum and carborundum into the coal charge, the maximum increase in the coke post-reaction strength index (CSR) by 7.6% was obtained. The influence of changes in individual indicators of coke quality on its consumption and productivity of the blast furnace was assessed in accordance with the guidance document of the metallurgical division of Metinvest Holding LLC. This document contains a detailed methodology for use in analyzing fluctuations in specific coke consumption and throughput of blast furnaces influenced by changes in blast furnace process parameters (by factor analysis). This technique is based on quantitative relationships between changing parameters (factors) and specific coke consumption (blast furnace productivity). There has been made an expert technical and economic assessment of the feasibility of introducing 0.25% fine powdered α-Al2O3 and α-SiC powders into the mixture from the point of view of blast-furnace production with pulverized fuel injection technology. The results show that, despite the increase in the cost of coke with the introduction of volume-modifying additives into the mixture, a reduction in the cost of iron can be achieved due to the expected reduction in the specific consumption of coke due to an increase in its post-reaction strength.
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