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Effect of coal particle size on the proximate composition and combustion properties

机译:煤粒度对附近成分和燃烧性能的影响

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摘要

A Chinese bituminous coal was crushed in a jaw crusher and ground to micrometer size in a planetary ball mill. Three laboratory standard sieves, with a sieve size of 63, 100, and 200 mu m, respectively, were used to obtain three coal fractions with different average diameter. The effect of particle size on the proximate composition and combustion properties of these samples was studied by proximate analysis, thermogravimetry (TG), differential thermogravimetry (DTG), and differential scanning calorimetry, (DSC). Petrographic analysis showed that the content of vitrinite increased and that of inertinite decreased slightly with decreasing particle size, which was thought to contribute to increasing volatile yield (ad) for fine coal particles. When particle size decreased, the content of fixed carbon decreased and that of ash decreased and then increased. Combustion experiments in a thermobalance revealed that with increasing particle size, the whole burning profile shifted to higher temperatures, resulting in an increase in characteristic temperatures. It implied that finer coal particles exhibited higher reactivity. This was explained from the point of view of maceral enrichment effects, mass transfer effects, and different physical properties of coal particles and the resulting chars due to different particle size. The results also indicated that simultaneous reactions of volatiles and char might happen at low temperatures for small particles. (C) 2005 Elsevier B.V. All rights reserved.
机译:将中国烟煤在颚式破碎机中破碎,然后在行星式球磨机中研磨至微米级。使用三个分别为63、100和200μm筛孔的实验室标准筛来获得三个平均直径不同的煤级分。通过近似分析,热重分析(TG),差示热重分析(DTG)和差示扫描量热法(DSC)研究了粒度对这些样品的近似组成和燃烧性能的影响。岩石学分析表明,随着粒度的减小,镜质体的含量增加,而惰质体的含量则略有下降,这被认为有助于提高细煤颗粒的挥发度(ad)。当粒径减小时,固定碳含量降低,灰分含量降低,然后增加。在热天平中进行的燃烧实验表明,随着颗粒尺寸的增加,整个燃烧过程移至更高的温度,从而导致特征温度升高。这暗示较细的煤颗粒表现出较高的反应性。这是从宏观富集效应,传质效应以及不同粒径的煤颗粒和所得焦炭的不同物理特性的角度进行解释的。结果还表明,对于小颗粒,挥发物和炭的同时反应可能在低温下发生。 (C)2005 Elsevier B.V.保留所有权利。

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