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Charcoal Behaviour by Its Injection into the Modern Blast Furnace

机译:注入现代高炉的木炭行为

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Nowadays the use of charcoal in metallurgy is intimately linked to small blast furnaces in Brazil. Due to the challenge for CO_2 mitigation, interest for charcoal use as a renewable energy source is rising. In the scope of European efforts to mitigate carbon dioxide emissions in the steel industry in the post-Kyoto period, the use of charcoal in cokemaking and ironmaking has been investigated. This paper presents results of an experimental study on charcoal behaviour under the blast furnace simulating conditions performed at the Department of Ferrous Metallurgy, RWTH Aachen University and at the National Centre for Metallurgical Investigations, Madrid. Conditions in the raceway and in the furnace shaft were simulated using thermo-ana-lytical, laboratory and pilot facilities. Charcoal samples were produced in two furnaces for pyrolysis from different wood types at various carbonisation conditions. Furthermore technological and ecological assessment of blast furnace process when injecting different types of charcoal was performed using a mathematical model. All the experiments and calculations were also performed with reference mineral coals for injection. Conversion efficiency of all the tested charcoals is better or comparable with coals. Change in coke rate, furnace productivity and further operation parameters when replacing pulverised coal with charcoal depends on charcoal ash content and composition.
机译:如今,冶金中使用木炭已与巴西的小型高炉紧密相连。由于减少CO_2的挑战,人们越来越关注使用木炭作为可再生能源。在欧洲努力减少后京都时期钢铁工业中二氧化碳排放的范围内,已经研究了在炼焦和炼铁中使用木炭。本文介绍了亚琛工业大学亚铁冶金学系和马德里国家冶金研究中心在高炉模拟条件下对木炭行为进行实验研究的结果。使用热分析,实验室和中试设备模拟了滚道和炉膛中的条件。木炭样品是在两个炉子中生产的,用于在各种碳化条件下由不同类型的木材进行热解。此外,使用数学模型对高炉工艺过程中注入不同类型的木炭进行了技术和生态评估。所有的实验和计算也都是使用参考矿物煤进行注射的。所有测试木炭的转化效率都更好或与煤相当。用木炭代替粉煤时,焦炭率,炉生产率和其他操作参数的变化取决于木炭的灰分含量和组成。

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