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Particle size distribution modeling of milled coals by dynamic image analysis and mechanical sieving

机译:煤粉粒度分布的动态图像分析和机械筛分建模

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Particle size distribution (PSD) of lignite and hard coals ground by ball and Gy-Ro mills were determined and compared using mechanical sieving (MS; direct, width-classification) and dynamic image analysis (DIA; indirect, length-classification), expressed in terms of sieves opening diameter and equivalent circular area diameter. Ground coal PSD data (eight combinations) were visualized and studied using length-transformation on MS and DIA using log-normal distribution plots. Data were also analyzed and compared by developing PSD models, namely Gaudin-Schuhmann (GS) and Rosin-Rammler (RR). In general, in the fine particle range below 100 mu m, all ground coal samples exhibited similar PSD, for both MS and DIA methods. On PSD modeling, RR model (R-2 >= 0.81; AIC <= -8.6) fitted well the observation over the entire range of particles sizes produced by both ball and Gy-Ro mills compared to GS model (R-2 >= 0.69; AIC <= -7.3). DIA can easily determine the particle size ranges below 100 mu m, while MS have only limited sieves in this range. Besides, DIA has produced more accurate PSD results than MS especially 38 pm and below. Thus, DIA and RR model can be recommended for PSD analysis of fine particulate coals, minerals, and similar products. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过机械筛分(MS;直接,宽度分类)和动态图像分析(DIA;间接,长度分类),确定并比较了球磨和Gy-Ro磨碎的褐煤和硬煤的粒度分布(PSD),将其表示为筛孔直径和等效圆形面积的直径。可视化地煤PSD数据(八种组合),并使用对数正态分布图在MS和DIA上使用长度变换来进行研究。还通过开发PSD模型(即Gaudin-Schuhmann(GS)和Rosin-Rammler(RR))来分析和比较数据。通常,对于MS和DIA方法,在100微米以下的细颗粒范围内,所有磨碎的煤样品均表现出相似的PSD。在PSD建模中,与GS模型相比,RR模型(R-2> = 0.81; AIC <= -8.6)与球磨机和Gy-Ro磨机产生的整个颗粒尺寸范围的观察结果非常吻合。 0.69; AIC <= -7.3)。 DIA可以轻松确定100微米以下的粒径范围,而MS仅具有该范围内的筛子。此外,DIA产生了比MS更准确的PSD结果,尤其是在38 pm及以下。因此,DIA和RR模型可推荐用于细颗粒煤,矿物和类似产品的PSD分析。 (C)2015 Elsevier B.V.保留所有权利。

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