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首页> 外文期刊>Journal of Mechanical Science and Technology >Effect of ash fraction and particle size on ash deposition during pulverized coal combustion
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Effect of ash fraction and particle size on ash deposition during pulverized coal combustion

机译:煤粉燃烧过程中灰分和粒径对灰分沉积的影响

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Coal is an important energy source to increase consumption continuously. However, the ash residues from coal combustion have produced ash deposition that causes slagging and fouling in boilers. The goal of this study is to examine the characteristics of ash deposits (i.e., the effects of the ash fraction and particle size) in pulverized coal combustion. For this study, five coals (Suek, Macqurie, Berau, Lanna and Vitol) are used, which have similar chemical components in the ash but differences in the ash fraction. A Thermomechanical analysis technique (TMA) and Drop tube furnace (DTF) are used to analyze the tendencies in the ash fusibility and deposition with temperature, respectively. Moreover, the size and morphology of the fly ash are analyzed for physical changes by using a particle-sizedistribution analyzer and Scanning electron microscopy (SEM), respectively. In the TMA results, all coal types have a similar fusibility because of the similar chemical components in the ash. The order of the deposited mass is Suek, Macqurie, Berau, Vitol and Lanna in accordance with the ash fraction in the DTF. The ash fraction in coal is a major factor in the ash deposit according to these results. The size of the fly ash changed compared to that of the raw coal according to the results of a particle-size analysis and SEM owing to physical processes such as fragmentation, shedding and coalescence during coal burning. On this basis, a deposition model is developed with the ash fraction and particle size. The model results are in good agreement with the measurements. The results demonstrate that the particle size and ash fraction influence the deposit.
机译:煤炭是不断增加消耗的重要能源。但是,燃煤产生的灰渣会产生灰烬沉积,导致锅炉结渣和结垢。这项研究的目的是检查煤粉燃烧中灰烬沉积的特征(即灰分和颗粒大小的影响)。在本研究中,使用了五种煤(Suek,Macqurie,Berau,Lanna和Vitol),其灰分中的化学成分相似,但灰分中的分数却不同。使用热机械分析技术(TMA)和落管式炉(DTF)分别分析了粉煤灰易熔性和随温度沉积的趋势。此外,分别使用粒度分布分析仪和扫描电子显微镜(SEM)分析了粉煤灰的大小和形态,以了解其物理变化。在TMA结果中,由于灰分中的化学成分相似,所有类型的煤都具有相似的可熔性。根据DTF中的灰分,沉积物质的顺序为Suek,Macqurie,Berau,Vitol和Lanna。根据这些结果,煤中的灰分是灰分沉积的主要因素。根据粒度分析和SEM的结果,粉煤灰的尺寸与原煤相比发生了变化,这归因于燃煤过程中的破碎,脱落和聚结等物理过程。在此基础上,建立了具有灰分和粒径的沉积模型。模型结果与测量结果吻合良好。结果表明,粒径和灰分会影响沉积物。

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