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Redesigning raw mix burning behaviour and its impact on kiln productivity

机译:重新设计生料燃烧行为及其对窑炉生产率的影响

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摘要

Variations in the chemical composition of raw mixes affect kiln operation, refractory line, fuel consumption, clinkerization and finally clinker quality. Clinker is formed through extremely physio-chemical transformations at regular temperature intervals and therefore characterization and evaluation of the raw mix is essential for achieving a suitable design of the raw-mix, smooth operation of the kiln producing better quality of clinker and also increasing the kiln productivity. The laboratory raw mix burnability study aims at highlighting the reactivity of the raw mix and its effects on the behaviour of the raw materials with the reaction sequence and kinetics of clinker formation. These burnability studies will prove to be effective for reduction of energy consumption and other improvements in the technology involved for clinker production finally leading to increased kiln productivity and achieving high potential clinker. In this laboratory raw mix burnability study, the lime saturation factor and silica modulus were maintained almost constant except the alumina modulus and residue percentage at 212 urn. The raw mix having increased the A/M ratio and reduced the residue percentage at 212 um has the compatibility for facilitating clinkerization. The basic reason for keeping this type of raw mix moduli values was to study the effect of burnability with change in alumina moduli values and also to study the burning behaviour with change in the raw mix residue at 212 and 90 μm.
机译:原料混合物化学成分的变化会影响窑的运行,耐火材料生产线,燃料消耗,熟料熟化以及最终熟料质量。熟料是通过在规则的温度间隔内进行非常剧烈的物理化学转化而形成的,因此,对原料混合物进行表征和评估对于实现原料混合物的适当设计,窑炉的平稳运行,产生更好的熟料质量以及增加窑炉至关重要。生产率。实验室原料混合物可燃性研究旨在突出原料混合物的反应性及其对原料性能的影响,包括反应顺序和熟料形成动力学。这些可燃性研究将证明对降低能耗和熟料生产所涉及技术的其他改进有效,最终提高了窑炉生产率并实现了高潜力的熟料。在该实验室原料混合料可燃性研究中,除了氧化铝模量和残留百分数为212 um外,石灰的饱和度因子和二氧化硅模量几乎保持恒定。增加了A / M比并减少了212 um残渣百分比的原料混合物具有促进熟化的相容性。保持此类原始混合物模量值的根本原因是研究可燃性随氧化铝模量值变化的影响,并研究原始混合物残渣在212和90μm处变化时的燃烧行为。

著录项

  • 来源
    《ZKG International》 |2019年第5期|52-55|共4页
  • 作者单位

    Dalmia Cement Research Centre, Chennai/India;

    Dalmia Cement Research Centre, Chennai/India;

    Dalmia Cement Research Centre, Chennai/India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 04:22:43

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