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Optimization of pulverized coal injection (PCI) rate in an ironmaking blast furnace by an integrated process model

  • Lingling Liu
  • , Shibo Kuang
  • , Lulu Jiao
  • , Baoyu Guo
  • , Aibing Yu
  • Monash University

科研成果: 期刊稿件文章同行评审

29 引用 (Scopus)

摘要

Pulverized coal injection (PCI) is generally used in modern blast furnace (BFs) ironmaking to reduce coke consumption by burning cheaper coal. This paper presents a numerical study on the effects of PCI on the inner states and overall performance of a 5000-m3 industrial BF. This is based on a recently developed integrated BF model that simulates an entire BF, including the raceway and hearth regions. The model is extended to consider the interaction between the raceway and the remaining BF region, the layered burden structure, and the hydrogen related reactions. After validation, it is used to study the effect of PCI rate and its interaction with oxygen enrichment and top burden distribution. The results are analyzed in detail in terms of raceway combustion characteristics, inner flow and thermochemical behavior, and overall performance. A maximum operable PCI rate is identified under given blast and burden conditions, beyond which relatively low coal-coke replacement ratio, high pressure drop and low hot metal (HM) temperature are observed. The maximum PCI rate is further improved with appropriate oxygen-enriched operation combined with suitable burden distribution. Excessive oxygen enrichment increases the coke rate to compensate for the cooling effect of coal injection. The results suggest that this integrated model can be used as a cost-effective tool to understand, quantify and optimize PCI effects on BF performance under different bottom and top operations.

源语言英语
期刊论文编号122832
期刊Fuel
315
DOI
出版状态已出版 - 1 5月 2022

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