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Numerical investigation of oxygen-enriched operations in blast furnace ironmaking

机译:高炉炼铁中富含氧气运作的数值研究

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摘要

Oxygen blast furnace (OBF) ironmaking promises to realize ?zero carbon footprint? production via high oxygen enrichment in the blast. This paper presents a comprehensive study of the inner states and overall performance of the BF under such an operation. This is done by means of our recently developed multi-fluid process model, covering the oxygen content of the blast from 21% to 100%, with fixed hot metal temperature, bosh gas volume and blast temperature. The results show that with increasing oxygen enrichment, the fuel rate or coke rate increases initially to a minimum and then increases. This trend agrees with published experimental observations. On this basis, the flow and thermochemical behaviors are analyzed in detail. It shows that the cohesive zone becomes lower as the oxygen enrichment increases; meanwhile, the heat loss through reactions increases, but that through walls and top gas decreases. These opposite trends control the coke rate variation and explain the presence of the minimum coke rate. Some wide ore cohesive layers featured with long horizontal length appear at high oxygen enrichments, contributing to the high pressure drop in the lower part of the BF. Also, the dependence of OBF operations on blast temperature and top pressure is examined. It is shown that the increase in blast temperature or top pressure can both lead to a lower coke rate and higher productivity. The influence of blast temperature is less significant at higher oxygen enrichments. This is not the case for top pressure, whose effect on coke rate and productivity becomes more significant as the oxygen content increases. The analysis of reactions reveals that the coke reduction is caused by the increased indirect reduction rate and prolonged reaction time at a higher top pressure, but the enlarged indirect reduction zone for a hotter blast.
机译:氧气高炉(OBF)熨烫承诺实现氧化碳足迹零吗?通过爆炸中的高氧富集生产。本文介绍了在此类运作下对BF的内部状态和整体性能的综合研究。这是通过我们最近开发的多流体过程模型来完成的,覆盖喷射的氧含量从21%到100%,具有固定的热金属温度,波什气体体积和喷砂温度。结果表明,随着富氧富集的增加,燃料速率或焦速最初增加至最小,然后增加。这种趋势同意发表的实验观察。在此基础上,详细分析流动和热化学行为。它表明,随着氧气富集的增加,粘性区域变得更低;同时,通过反应的热损失增加,但通过壁和顶部气体减少。这些相反的趋势控制了焦速变化并解释了最小焦炭率的存在。具有长水平长度的一些宽矿粘性层出现在高氧富集,有助于BF下部的高压下降。而且,检查了OBF操作对冲泡温度和顶部压力的依赖性。结果表明,喷砂温度或顶部压力的增加可以导致较低的焦速和更高的生产率。在较高的氧气富集中,鼓泡温度的影响较小。由于氧含量的增加,这不是顶部压力的情况,其对焦速和生产率的影响变得更加重要。反应的分析表明,焦炭减少是由于在较高的顶部压力下增加的间接降低速率和延长的反应时间,而是较热爆炸的扩大间接减少区。

著录项

  • 来源
    《Fuel》 |2021年第15期|120662.1-120662.20|共20页
  • 作者单位

    Southeast Univ Sch Energy & Environm Nanjing 210096 Peoples R China|Southeast Univ Monash Univ Joint Res Inst Ctr Energy & Environm Suzhou 215123 Peoples R China;

    Southeast Univ Monash Univ Joint Res Inst Ctr Energy & Environm Suzhou 215123 Peoples R China|JITRI Inst Proc Modelling & Optimizat Suzhou 215123 Peoples R China;

    Monash Univ Dept Chem Engn ARC Res Hub Computat Particle Technol Clayton Vic 3800 Australia;

    JITRI Inst Proc Modelling & Optimizat Suzhou 215123 Peoples R China;

    Southeast Univ Sch Energy & Environm Nanjing 210096 Peoples R China|Southeast Univ Monash Univ Joint Res Inst Ctr Energy & Environm Suzhou 215123 Peoples R China;

    Southeast Univ Monash Univ Joint Res Inst Ctr Energy & Environm Suzhou 215123 Peoples R China|Monash Univ Dept Chem Engn ARC Res Hub Computat Particle Technol Clayton Vic 3800 Australia;

    Baoshan Iron & Steel Co Ltd R&D Ctr Res Inst Ironmaking Div Shanghai 201900 Peoples R China;

    Baoshan Iron & Steel Co Ltd R&D Ctr Res Inst Ironmaking Div Shanghai 201900 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Blast furnace; Oxygen enrichment; Fuel rate; Top pressure; blast temperature; CFD process modeling;

    机译:高炉;氧气富集;燃料速率;顶部压力;爆炸温度;CFD工艺建模;

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