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首页> 外文期刊>Journal of Chemical Engineering of Japan >Study of Co-Firing Coal with Liquid Foundry Wastes and Jatropha Oil in a Bubbling Fluidized-Bed Combustor
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Study of Co-Firing Coal with Liquid Foundry Wastes and Jatropha Oil in a Bubbling Fluidized-Bed Combustor

机译:用液体铸造废物和吸水型燃烧室燃烧室混合煤的研究

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摘要

To investigate the energy potential of liquid foundry wastes, the co-firing of coal and two waste solvents with relative smaller heating value was studied in a bubbling fluidized bed combustor. The effects of the bed temperature, liquid fuel type, liquid ratio, and the particle size of coal on the co-firing characteristics and pollutant emissions characteristics were investigated. The results showed that the co-firing of coal and waste solvent can be adopted as an alternative for waste disposal, ensuring energy recovery and waste disposal in a single step. NO emissions are still dependent on the total nitrogen content in the fuel feeding material. For the two waste solvents, NO emission increases with liquid ratio, and the highest value was 447.5 ppm, which exceeds the NO emission requirement. Increased bed temperature had little effect on the co-firing characteristics of coal with waste solvents, but the NO emission significantly increased from 137 to 319 ppm as the bed temperature increased from 750 to 850 degrees C. Decreasing the coal particle size increases the CO emission, which creates the proper atmosphere for NO reduction.
机译:为了研究液体铸造废物的能量潜力,在鼓泡流化床燃烧器中研究了煤的共烧和两个具有相对较小的加热值的废物溶剂。研究了床温,液体燃料型,液体比和煤的粒度对共同烧制特征和污染物排放特征的影响。结果表明,煤炭和废物溶剂的共烧可以作为废物处理的替代方案,确保在一步中确保能量回收和废物处理。没有排放仍然依赖于燃料供给材料中的总氮含量。对于两种废物溶剂,没有液体比率增加,最高值为447.5ppm,超过无排出要求。床温增加对废溶剂的煤的共烧特性几乎没有影响,但由于床温从750增加到850℃,因此没有发射显着增加到319ppm。降低煤粒径增加了CO排放,它创造了适当的气氛,无需减少。

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