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Interaction between Co-injected Substances with Pulverized Coal into the Blast Furnace

机译:高炉中煤粉共注入物质之间的相互作用

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Co-injection of two or more reducing agents via tuyères may ensure technological, economic and environmental benefits and enhance the flexibility of use of various reductants. The blast furnace technology with top gas recycling, recently tested in the scope of the ULCOS program aiming at significant mitigation of CO_(2) emissions, is also based on co-injection of reducing gas, pulverised coal and pure oxygen. This paper presents results of a study on conversion behaviour of pulverised coal while co-injecting further substances with focus on tuyère assembly design. Factors affecting the coal particle conversion in the raceway derived from the combustion mechanism and constructional features of tuyère stock arrangement are firstly discussed. An experimental work was performed using the Multifunctional Injection Rig for Ironmaking (MIRI) at the Department of Ferrous Metallurgy, RWTH Aachen University. Tests simulating different scenarios for injection of coal, carbon monoxide and oxygen were conducted. Conversion degree determined by three methods and microstructural analysis were used to examine the effect of pre-mixing of coal with above mentioned components on its combustion behaviour. Results obtained give hints for optimising the lance arrangement.
机译:通过风口共同注入两种或多种还原剂可以确保技术,经济和环境效益,并提高使用各种还原剂的灵活性。最近在ULCOS计划范围内进行的旨在显着减轻CO_(2)排放的高炉煤气再循环技术也基于还原气体,煤粉和纯氧的共注入。本文介绍了研究粉煤转化行为同时共注入其他物质的研究结果,重点是风口组件设计。首先讨论了风口煤的燃烧机理和风口排料结构特征引起的煤道中煤颗粒转化的影响因素。亚琛工业大学亚铁冶金系的多功能炼铁注射机(MIRI)进行了实验工作。进行了模拟注入煤,一氧化碳和氧气的不同方案的测试。通过三种方法和微观结构分析确定的转化度被用来检验煤与上述组分的预混合对其燃烧性能的影响。获得的结果为优化喷枪布置提供了提示。

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