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Parametric investigation of a renewable alternative for utilities adopting the co-firing lignite/biomass concept

机译:采用共燃褐煤/生物质概念的公用事业可再生替代品的参数研究

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摘要

The purpose of the current paper is to investigate the Cynara cardunculus (cardoon)/lignite co-firing concept at a 10% biomass thermal share for a 330 MW_e pulverized fuel plant in Northern Greece. Two main cases are considered: (A) co-milling of pelletized biomass with lignite and (B) milling of balled and/or shredded material in dedicated biomass mills. A CFD model for plant simulation is developed taking into account the particularities of co-firing operation, in particular the non-spherical form of the biomass particle and its effect on the drag coefficient, devolatilization and combustion rates. Simulations are performed for the reference case of lignite-firing, which show good agreement with plant operational data, and for the two co-firing cases. Further subdivision of the co-firing cases is based on the biomass particle size and injection point in the furnace. In most co-firing cases, CFD results indicate that the substitution of lignite with biomass has minimal impact on the plant operational parameters as well as the potential for NO_x reductions. Increased unburnt losses in the fly and bottom ash can be expected when large biomass particles are combusted; the best scenario appears to be the separate milling of biomass and its injection in the vapour burners. Economic evaluation of the two cases also favours the dedicated milling system, despite its higher investment cost, due to the lower fuel cost of non-pelletized biomass. The co-firing concept appears to be highly profitable for the plant operator and further optimisation of the combustion process can be suggested by the installation of dedicated biomass burners.
机译:本文的目的是研究希腊北部一处330 MW_e的粉状燃料发电厂以10%的生物质热能分担Cynara小菜(小菜)/褐煤共烧的概念。考虑了两种主要情况:(A)将粒状生物质与褐煤共同研磨,以及(B)在专用生物质磨中研磨球形和/或切碎的物料。考虑到共燃操作的特殊性,特别是生物质颗粒的非球形形式及其对阻力系数,脱挥发分和燃烧速率的影响,开发了用于工厂模拟的CFD模型。对褐煤点火的参考情况进行了模拟,这与工厂的运行数据显示出很好的一致性,并且对两种混合点火情况进行了仿真。共烧箱的进一步细分基于炉中生物质的粒径和注入点。在大多数共燃情况下,CFD结果表明,用生物质替代褐煤对工厂运行参数的影响以及NO_x降低的可能性均很小。当燃烧大量的生物质颗粒时,可以预期粉煤灰和底灰中未燃烧损失的增加。最好的情况似乎是将生物质分开研磨并将其注入蒸气燃烧器。尽管非制粉生物质的燃料成本较低,但对这两种情况的经济评估也倾向于专用制粉系统,尽管其投资成本较高。共燃概念对于工厂运营者而言似乎是非常有利可图的,并且可以通过安装专用的生物质燃烧器来建议进一步优化燃烧过程。

著录项

  • 来源
    《Fuel 》 |2013年第11期| 873-897| 共25页
  • 作者单位

    Centre for Research & Technology Hellas/Chemical Process and Energy Resources Institute (CERTH/CPERI), Greece;

    Centre for Research & Technology Hellas/Chemical Process and Energy Resources Institute (CERTH/CPERI), Greece Clean Energy Ltd., Athens, Greece;

    Centre for Research & Technology Hellas/Chemical Process and Energy Resources Institute (CERTH/CPERI), Greece;

    Centre for Research & Technology Hellas/Chemical Process and Energy Resources Institute (CERTH/CPERI), Greece Laboratory of Steam Boilers and Thermal Plants, Department of Mechanical Engineering, National Technical University of Athens, Athens, Greece;

    Centre for Research & Technology Hellas/Chemical Process and Energy Resources Institute (CERTH/CPERI), Greece Laboratory of Steam Boilers and Thermal Plants, Department of Mechanical Engineering, National Technical University of Athens, Athens, Greece;

    Centre for Research & Technology Hellas/Chemical Process and Energy Resources Institute (CERTH/CPERI), Greece;

    Public Power Corporation SA., Generation Division, Thermal Projects Engineering and Construction Department, Athens, Greece;

    Public Power Corporation SA., Generation Division, Thermal Projects Engineering and Construction Department, Athens, Greece;

    Centre for Research & Technology Hellas/Chemical Process and Energy Resources Institute (CERTH/CPERI), Greece Laboratory of Steam Boilers and Thermal Plants, Department of Mechanical Engineering, National Technical University of Athens, Athens, Greece;

  • 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

    CFD; Co-firing; Lignite; Biomass; Economic evaluation;

    机译:差价合约共烧;褐煤;生物质经济评价;

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