首页> 外文期刊>Thermal science >CO-FIRING BOSNIAN COALS WITH WOODY BIOMASS: EXPERIMENTAL STUDIES ON A LABORATORY-SCALE FURNACE AND 110 MW_e POWER UNIT
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CO-FIRING BOSNIAN COALS WITH WOODY BIOMASS: EXPERIMENTAL STUDIES ON A LABORATORY-SCALE FURNACE AND 110 MW_e POWER UNIT

机译:木质生物质与波斯尼亚煤共烧:实验室规模炉和110 MW_e电力装置的实验研究

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摘要

This paper presents the findings of research into cofiring two Bosnian coal types, brown coal and lignite, with woody biomass, in this case spruce sawdust. The aim of the research was to find the optimal blend of coal and sawdust that may be substituted for 100% coal in large coal-fired power stations in Bosnia and Herzegovina. Two groups of experimental tests were performed in this study: laboratory testing of co-firing and trial runs on a large-scale plant based on the laboratory research results. A laboratory experiment was carried out in an electrically heated and entrained pulverized-fuel flow furnace. Based on and following the laboratory research findings, a trial run was carried out in a large-scale utility - the Ka-kanj power station, Unit 5 (110 MW_e), using two mixtures; one in which 5 wt.% and one in which 7 wt.% of brown coal was replaced with sawdust. Compared to a reference firing process with 100% coal, these co-firing trials produced a more intensive redistribution of the alkaline components in the slag in the melting chamber, with a consequential beneficial effect on the deposition of ash on the superheater surfaces of the boiler. The outcome of the tests confirms the feasibility of using 7 wt.% of sawdust in combination with coal without risk to the efficiency of the unit, its combustion process and with the benefits of emissions reductions. Furthermore, they show that no modification to the existing coal transport system and boiler equipment is necessary to achieve this outcome.
机译:本文介绍了将两种波斯尼亚煤种(褐煤和褐煤)与木质生物质(在这种情况下为云杉木屑)共烧的研究结果。该研究的目的是在波斯尼亚和黑塞哥维那的大型燃煤电站中找到可以替代100%煤炭的最佳煤和木屑混合物。在这项研究中进行了两组实验测试:基于实验室研究结果的大型工厂的共烧实验和试运行。在电加热和携带的粉状燃料流动炉中进行了实验室实验。根据并根据实验室的研究结果,在大型公用事业公司Ka-kanj电站5号机组(110 MW_e)中使用两种混合物进行了试运行。一种用锯末代替5重量%的褐煤,另一种用锯末代替7重量%的褐煤。与使用100%煤的参考燃烧过程相比,这些共燃烧试验使熔化室炉渣中的碱性成分更加密集地重新分布,从而对灰烬在锅炉过热器表面的沉积产生了有益的影响。 。测试的结果证实了将7%(重量)的木屑与煤结合使用的可行性,而不会影响装置的效率,燃烧过程并减少排放。此外,他们表明,为实现这一目标,无需对现有的煤炭运输系统和锅炉设备进行任何修改。

著录项

  • 来源
    《Thermal science》 |2012年第3期|789-804|共16页
  • 作者单位

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina,University of Sarajevo, Faculty of Mechanical Engineering, Sarajevo, Bosnia and Herzegovina;

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina;

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina;

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina;

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina;

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina;

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina;

    JP Elektroprivreda BiH d.d. Sarajevo, Sarajevo, Bosnia and Herzegovina;

    University of Sarajevo, Faculty of Mechanical Engineering, Sarajevo, Bosnia and Herzegovina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    co-firing; coal; woody biomass; ash; deposits; slagging; NO_x emission; SO_2 emission;

    机译:共烧煤;木质生物量灰;存款;结渣NO_x排放;SO_2排放;

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