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Comparison of Emission Characteristics of Small-Scale Heating Systems Using Biomass Instead of Coal

机译:使用生物质代替煤的小型供热系统的排放特性比较

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摘要

Biomass combustion is mainly used for heat production in a wide range of units. Few research studies have been carried out to investigate the overall performance of small-scale residential heating systems when replacing coal with biomass in these units. Sheffield University (SUWIC) has carried out an extensive series of experimental tests at a small-scale residential heating plant. Various tests were conducted on two units: a wood pellet fired boiler and a coal fired boiler. In addition, mathematical modeling work using FLIC and FLUENT codes was carried out in order to simulate the overall performance of the small-scale biomass and coal-fired heating systems. The main objective of this study was to investigate the changes to the overall performance of the plant (e.g., combustion characteristics and emissions) when replacing coal with wood pellets. The concentrations of CO, NO_x, paniculate matter, and SO_2 in the flue gases were measured. Emission factors for both boilers were also compared. FLIC code integrated with FLUENT was employed to model the combustion process of wood pellets and coal in both boilers. The measured emission data were used in the development and validation of the modeling work. The modeling work helped to demonstrate the relationship between the fuel combustion behavior and pollutants formation in the residential boilers. Results showed that pollutant emissions from both boilers were within relative emission limits whereas pollutant emission factors for the wood pellet-fired boilers were lower than for the coal-fired boiler. The modeling analysis showed that the high CO emissions from the coal-fired boiler were attributed to the less mixing intensity and low residential time of flue gas in the furnace. For small-scale residential boilers, biomass with a high volatile fraction could be an ideal solid fuel to get higher combustion efficiency and low pollutant emissions. This study has provided valuable information that can be used to help improve future furnace design and retrofit existing small-scale heating systems to reduce overall emissions.
机译:生物质燃烧主要用于各种单位的热量生产。很少进行研究来研究在这些单元中用生物质替代煤炭时小型住宅供暖系统的整体性能。谢菲尔德大学(SUWIC)在小型住宅供热厂进行了一系列广泛的实验测试。在两个装置上进行了各种测试:燃木颗粒锅炉和燃煤锅炉。此外,还使用FLIC和FLUENT代码进行了数学建模工作,以模拟小型生物质和燃煤供热系统的整体性能。这项研究的主要目的是研究用木屑颗粒替代煤炭时电厂整体性能的变化(例如燃烧特性和排放)。测量烟气中CO,NO_x,颗粒物和SO_2的浓度。还比较了两种锅炉的排放因子。集成了FLUENT的FLIC代码用于模拟两个锅炉中木屑和煤的燃烧过程。测得的排放数据用于建模工作的开发和验证。建模工作有助于证明住宅锅炉中燃料燃烧行为与污染物形成之间的关系。结果表明,两种锅炉的污染物排放均在相对排放限值之内,而木屑颗粒锅炉的污染物排放因子低于燃煤锅炉。建模分析表明,燃煤锅炉的高CO排放归因于炉内烟气的混合强度较低和滞留时间短。对于小型民用锅炉,高挥发分的生物质可能是获得更高燃烧效率和低污染物排放的理想固体燃料。这项研究提供了宝贵的信息,可用于帮助改进未来的熔炉设计并改造现有的小型加热系统,以减少总排放量。

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  • 来源
    《Energy & fuels》 |2010年第julaaauga期|p.4255-4265|共11页
  • 作者单位

    SUWIC. Department of Chemical & Process Engineering, Sheffield University. Sheffield, U.K.;

    SUWIC. Department of Chemical & Process Engineering, Sheffield University. Sheffield, U.K.;

    Barnsley Metropolitan Borough Council, Barnsley, U.K.;

    SUWIC. Department of Chemical & Process Engineering, Sheffield University. Sheffield, U.K.;

    SUWIC. Department of Chemical & Process Engineering, Sheffield University. Sheffield, U.K.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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