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首页> 外文期刊>Journal of thermal analysis and calorimetry >Experimental study of the ignition temperatures of low-rank coals using TGA under oxygen-deficient conditions
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Experimental study of the ignition temperatures of low-rank coals using TGA under oxygen-deficient conditions

机译:缺氧条件下TGA在低级煤点火温度的实验研究

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The factors affecting the ignition temperatures of two low-rank coals were experimentally studied using thermogravimetric analysis. The experiments were conducted with coal powders of four different particle size distributions. The thermogravimetric analyzer was operated at three heating rates, 10, 20, and 30 A degrees C min(-1) and four oxygen concentrations of 3, 6, 9, and 12%. The results showed that the ignition temperature decreased by about 25 A degrees C as the oxygen concentration increased from 3% to 12%. The standard deviation of the activation energy was 16.75% at a conversion degree of less than 0.4, and it decreased to 1.35% at the end of the combustion process. At a heating rate of 10 A degrees C min(-1), the ignition temperature increased by about 8 A degrees C as the coal particle size increased by 100 mu m. At a heating rate of 30 A degrees C min(-1), the effect of the particle size on the ignition temperature was enhanced and the ignition temperature increased to 15 A degrees C.
机译:使用热重分析实验研究影响两个低级煤的点火温度的因素。实验用四种不同粒度分布的煤粉进行。热重分析仪在三个加热速率,10,20和30℃下进行操作,3,6,9和12%的四个氧浓度。结果表明,由于氧浓度从3%增加至12%,点火温度降低约25℃。在燃烧过程结束时,活化能量的标准偏差为16.75%,转化程度小于0.4,在燃烧过程结束时降至1.35%。以10℃min(-1)的加热速率,当煤粒径增加100μm时,点火温度增加约8℃。以30℃min(-1)的加热速率,提高了粒度对点火温度的影响,并将点火温度增加到15℃。

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