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Co-Gasification of Biomass Wastes and Coal-Coke Blends in an Entrained Flow Gasifier: An Experimental Study

机译:气流床气化炉中生物质废物与煤焦混合物的共气化实验研究

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摘要

An experimental study of entrained flow, air-blown cogasification of biomass and a coal-coke mixture has been performed in order to evaluate the effect of the relative fuel/air ratio (ranging between 2.5 and 7.5), the reaction temperature (ranging between 750 and 1150 ℃), and the biomass content in the fuel blend on the producer gas composition and the process performance. Dealcoholized grape marc, a waste coming from the wine industry and with high potential in the south-central regions of Spain, has been chosen as biomass fuel. On the other hand, the coal-coke blend (composed of a low-rank autochthonous coal and a solid residue from refineries) is an abundant fossil fuel which is used in'a commercial IGCC power plant. The results obtained show that an increase of the biomass content in the fuel blend upgrades the producer gas quality and improves the cold gas efficiency. Some hints of synergy between biomass and coal-coke have been found, especially at low fuel/air ratios and low reaction temperatures, which might be mainly related to the content and composition of the blend ash (especially due to the catalytic effect of Ca and K coming from the biomass ash, and the Fe, Ni, and Zn contents of the coal-coke ash). However, thermogravimetric analyses have not provided enough information about possible interaction between biomass and coal-coke.
机译:为了评估相对燃料/空气比(介于2.5和7.5之间),反应温度(介于750和750之间)的影响,已经进行了夹带流,生物质和煤焦混合物的鼓风共气化的实验研究。和1150℃),燃料混合物中的生物质含量对生产气成分和工艺性能的影响。脱醇葡萄渣是一种来自酿酒业的废物,在西班牙中南部地区具有很高的潜力,已被选作生物质燃料。另一方面,煤焦混合气(由低等级的煤和炼油厂的固体残渣组成)是一种丰富的化石燃料,可用于商业IGCC发电厂。获得的结果表明,燃料混合物中生物质含量的增加提高了生产气的质量并提高了冷气效率。已经发现了生物质和煤焦之间的协同作用的一些暗示,尤其是在低燃料/空气比和低反应温度下,这可能主要与掺混灰分的含量和组成有关(特别是由于Ca和Fe的催化作用)。 K来自生物质灰分,以及焦炭灰分中的Fe,Ni和Zn含量)。但是,热重分析尚未提供有关生物质与煤焦之间可能相互作用的足够信息。

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  • 来源
    《Energy & fuels》 |2010年第maraaapr期|p.2479-2488|共10页
  • 作者单位

    Universidad de Castillo-La Mancha, Departamento de Mecanica Aplicada e Ingenieria de Proyectos, Escuela Tecnica Superior de Ingenieros Industrials (Edificio Politecnico), Avenida Camilo Jose Cela s, 13071 Ciudad Real, Spain;

    rnUniversidad de Castillo-La Mancha, Departamento de Mecanica Aplicada e Ingenieria de Proyectos, Escuela Tecnica Superior de Ingenieros Industrials (Edificio Politecnico), Avenida Camilo Jose Cela s, 13071 Ciudad Real, Spain;

    rnUniversidad de Castillo-La Mancha, Instituto de Investigation en Energias Renovables, Campus Universitario S/N, 02071 Albacete, Spain;

  • 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);
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  • 正文语种 eng
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