Combustion behavior and influence mechanism of CO on iron ore sintering with flue gas recirculation  被引量:10

Combustion behavior and influence mechanism of CO on iron ore sintering with flue gas recirculation

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作  者:范晓慧 余志元 甘敏 陈许玲 季志云 

机构地区:[1]School of Minerals Processing and Bioengineering,Central South University

出  处:《Journal of Central South University》2014年第6期2391-2396,共6页中南大学学报(英文版)

基  金:Projects(51174253,51304245)supported by the National Natural Science Foundation of China;Project(2013bjjxj015)supported by the Outstanding and Creative Doctor Scholarship of Central South University,China;Project supported by the Hunan Provincial Innovation Foundation for Postgraduate,China

摘  要:The properties of circulating gas have a significant effect on sintering with flue gas recirculation,and the influence of CO in sintering process was investigated.The results show that the post-combustion of CO conducts in sinter zone when flue gas passes through the sintering bed,which releases much heat and reduces the consumption of solid fuel.The ratio of coke breeze can be reduced from 5% to 4.7% with 2% CO in circulating flue gas.In addition,with the increase of CO content in circulating flue gas,the combustion efficiency of fuel is improved,and the flame front is increased slightly while still matches with the heat transfer front.These are beneficial to increasing the maximum temperature and prolonging the high temperature duration,especially in the upper layer of sintering bed.As a consequence,the productivity,vertical sintering velocity and quality of sinter are improved.The properties of circulating gas have a significant effect on sintering with flue gas recirculation, and the influence of CO in sintering process was investigated. The results show that the post-combustion of CO conducts in sinter zone when flue gas passes through the sintering bed, which releases much heat and reduces the consumption of solid fuel. The ratio of coke breeze can be reduced from 5% to 4.7% with 2% CO in circulating flue gas. In addition, with the increase of CO content in circulating flue gas, the combustion efficiency of fuel is improved, and the flame front is increased slightly while still matches with the heat transfer front. These are beneficial to increasing the maximum temperature and prolonging the high temperature duration, especially in the upper layer of sintering bed. As a consequence, the productivity, vertical sintering velocity and quality of sinter are improved.

关 键 词:flue gas recirculation heat transfer front flame front combustion behavior 

分 类 号:TQ511[化学工程]

 

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