Investigation on the Impact of Flue Gas Circulation and Oxygen Enrichment on the Sintering Process
编号:291 访问权限:仅限参会人 更新:2024-05-01 09:13:06 浏览:44次 口头报告

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摘要
Abstract : To achieve the established goals of "peak carbon emissions and carbon neutrality", the high-energy-consumption steel industry is making every effort to promote carbon reduction. Sintering of iron ore, as an important process in steel production, faces challenges such as high solid fuel consumption and significant emissions of various pollutants. Resolving the issues of high solid fuel consumption and excessive pollutant emissions in sintering without compromising sinter quality, reducing sintering costs, has become a pressing concern in the steel industry. The sintering flue gas recirculation process is an economically viable technique that involves directly recycling a portion of sintering flue gas. This not only reduces the amount of waste gas per unit of sintering ore but also maximizes the utilization of flue gas heat and carbon monoxide latent heat. Combining the rich oxygen process with flue gas recirculation effectively addresses the insufficient effective oxygen issue in a single flue gas recirculation process.
This study employs a static process model of iron ore flue gas recirculation sintering to investigate and delineate the impact of parameters such as recirculation position, recirculation gas volume, recirculation coverage area in the flue gas recirculation process, and oxygen blowing position, oxygen concentration, rich oxygen coverage area in the rich oxygen process on the sintering process and pollutant emissions. The research findings serve as a theoretical and technical foundation for further advancements in integrated sintering processes.
 
关键词
iron ore sintering; flue gas recirculation; oxygen enrichment; process optimization;
报告人
周若榕
江西理工大学

稿件作者
周若榕 江西理工大学
徐进 江西理工大学
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重要日期
  • 会议日期

    05月31日

    2024

    06月03日

    2024

  • 05月20日 2024

    摘要截稿日期

  • 05月20日 2024

    初稿截稿日期

  • 06月03日 2024

    注册截止日期

主办单位
中国力学学会
计算力学专业委员会
颗粒材料计算力学专业组
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河海大学
大连理工大学
中国颗粒学会
江苏省力学学会
历届会议
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