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Coal ash and limestone interactions in quicklime production

机译:煤灰和石灰石在鞋类生产中的相互作用

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摘要

This paper reports on results from detailed studies on coal ash and limestone interactions during calcination. Industrially produced quicklime from a coal-fired rotary kiln was analyzed and compared with laboratory-scale studies of surface interactions between two coal ashes and limestone. Exposure tests were performed at 1,100 degrees C and 1,350 degrees C, in a high CO2 atmosphere. SEM-EDX analyses of the ash-quicklime interface were performed to detect and quantify changes in microstructure, as well as the depth of ash interaction into quicklime. Stable phases in the ash-quicklime interface were assessed by multi-component chemical equilibrium calculations based on local EDX analysis. The industrially produced quicklime showed intrusion by extraneous elements, mainly Al and Si, up to 800 mu m into the quicklime, in accordance with expected ash composition, based on the ash analysis of coal fuel used. In laboratory-scale and 1,100 degrees C, ashes appeared solid to a large extent, and no distinctive microstructure difference of quicklime was observed underneath the ash-quicklime interface. At 1,350 degrees C, the ashes appeared molten to a large extent, and the quicklime microstructure was affected compared to at 1,100 degrees C, resulting in densification. For both temperatures and both coal ashes, the interface reactions reduced the amount of reactive CaO, thereby resulting in a decrease in product quality. The laboratory methodology was shown to be useful to increase mechanistic understanding of the ash-quicklime interactions. The method could be expanded to test other limestone qualities and fuels, e.g. renewable biofuels.
机译:本文报告了煅烧过程中煤灰和石灰石相互作用的详细研究的结果。分析了从燃煤旋转窑的工业生产的新光线,并与两种煤灰和石灰石之间的表面相互作用的实验室规模研究进行了比较。在高CO 2气氛中,在1,100摄氏度和1,350℃下进行曝光试验。进行ASH - Quicklime界面的SEM-EDX分析以检测和量化微观结构的变化,以及灰分间相互作用进入Quicklime。基于局部EDX分析,通过多组分化学平衡计算评估了灰分中界面中的稳定阶段。基于所使用的煤燃料的灰分分析,工业上生产的Quicklime通过外来元素,主要是Al和Si,主要是800 mu m的侵扰,均为灰度组合物。在实验室级和1,100摄氏度中,灰烬在很大程度上出现了固体,并且在灰分界面下方没有观察到QuIstLime的独特微观结构差异。在1,350℃下,灰烬在很大程度上在很大程度上呈现,并且在1,100摄氏度相比,QuickLime微观结构受到影响,导致致密化。对于两种温度和煤灰,界面反应减少了反应性CaO的量,从而导致产品质量降低。实验室方法显示有助于提高对灰分互动的机械理解。可以扩展该方法以测试其他石灰石品质和燃料,例如燃料。可再生的生物燃料。

著录项

  • 来源
    《Fuel》 |2021年第15期|120989.1-120989.13|共13页
  • 作者单位

    Umea Univ Ctr Sustainable Cement & Quicklime Prod Dept Appl Phys & Elect SE-90187 Umea Sweden|Umea Univ Ind Doctoral Sch Res & Innovat SE-90187 Umea Sweden;

    Umea Univ Ctr Sustainable Cement & Quicklime Prod Dept Appl Phys & Elect SE-90187 Umea Sweden;

    Umea Univ Ctr Sustainable Cement & Quicklime Prod Dept Appl Phys & Elect SE-90187 Umea Sweden|Swedish Mineral Proc Res Assoc MinFo Drottning Kristinas Vag SE-10044 Stockholm Sweden;

  • 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

    Quicklime production; Ash-quicklime interactions; Coal ash; Quicklime product quality;

    机译:QuickLime生产;灰 - QuickLime相互作用;煤灰;QuickLime产品质量;

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