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首页> 外文期刊>Fuel >Characterisation of biomass and coal co-firing on a 3 MWth Combustion Test Facility using flame imaging and gas/ash sampling techniques
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Characterisation of biomass and coal co-firing on a 3 MWth Combustion Test Facility using flame imaging and gas/ash sampling techniques

机译:使用火焰成像和气/灰采样技术在3 MWth燃烧测试设施上表征生物质和煤的共烧

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摘要

Co-firing of biomass with pulverised coal at existing coal power stations remains a practical option available to power plant operators and is being widely adopted as one of the main technologies for reducing greenhouse gas emissions. However, there is a range of technological problems that are not well understood. This paper presents experimental investigations into the co-firing of pulverised coal directly co-milled with 5-20% biomass on a 3 MWth Combustion Test Facility. A number of combustion parameters, including flame temperature and oscillation frequency and particle size distribution, were measured under a range of co-firing conditions. The gas species within the flame and fly ash in flue gas were also sampled and analysed. The experimental data collected are used to study the impact of biomass additions to pulverised coal on the combustion characteristics of the co-firing process. The relationships between the flame characteristics, gas species and ash deposition of the furnace are investigated. The results suggest that, due to the varying physical and chemical properties of the biomass fuels, the biomass additions have impact on the combustion characteristics in a very complicated way. It has been found that the biomass addition to coal would improve the combustion efficiency because of the lower CO concentrations and higher char burnout level in co-firing. In addition, NO_x emission has been found closely linked to the flame stability, and SO_X emission reduced in general for all co-firing cases.
机译:在现有的燃煤发电站中,将生物质与煤粉共烧仍然是发电厂运营商可以选择的实际选择,并且已被广泛用作减少温室气体排放的主要技术之一。但是,存在一系列尚未充分理解的技术问题。本文介绍了在3 MWth燃烧测试设施上直接与5-20%生物量共同研磨的煤粉共烧的实验研究。在多种燃烧条件下测量了许多燃烧参数,包括火焰温度,振荡频率和粒度分布。还对火焰中的气体种类和烟道气中的粉煤灰进行了采样和分析。收集的实验数据用于研究向煤粉中添加生物质对共烧过程燃烧特性的影响。研究了火焰特性,气体种类和炉灰沉积之间的关系。结果表明,由于生物质燃料的不同物理和化学特性,生物质的添加以非常复杂的方式影响燃烧特性。已经发现,由于在共烧中较低的CO浓度和较高的炭烧尽水平,向煤中添加生物质将提高燃烧效率。此外,已发现NO_x排放与火焰稳定性密切相关,并且在所有共燃情况下,SO_X排放通常都会减少。

著录项

  • 来源
    《Fuel》 |2009年第12期|2328-2334|共7页
  • 作者单位

    Ecole des Mines de Douai, Dipt. Energetique Industrielle, BP 10838, F-59508 Douai, France;

    Department of Electronics, University of Kent Canterbury, Kent CT2 7NT, UK;

    Ecole des Mines de Douai, Dipt. Energetique Industrielle, BP 10838, F-59508 Douai, France;

    Department of Electronics, University of Kent Canterbury, Kent CT2 7NT, UK;

    Veolia Environment R&D, 291 Avenue Dreyfous Ducas, 78520 Limay, France;

    Ecole des Mines de Douai, Dipt. Energetique Industrielle, BP 10838, F-59508 Douai, France;

  • 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

    co-firing; biomass; pulverised coal; flame temperature;

    机译:共烧生物质煤粉火焰温度;

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