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Evaluation of Coal Thermoplastic and Dilatation Behavior with Coke Pore Structure Analysis

机译:用焦炭孔隙结构分析评估煤的热塑性和膨胀行为

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The strength of coke largely depends on the thermoplastic and dilatation behavior of its coal constituents. Therefore, understanding the behaviors that ensure high-strength coke is important. In this study, the combination of blended coal was varied and (in a separate experiment) asphalt pitch (ASP) was added to the blended coal. The resulting changes in coke pore structure were investigated by image analysis of a cross-section of coke. The main findings are summarized below.(1) When the thermoplastic temperature of low- and high-rank coal was very different, the proportion of low-circularity pores increased in the textures of both the grades of coal. It was concluded that when the particles of high-rank coal did not dilate, those of the low-rank coal freely expanded. Meanwhile, the dilatation of high-rank coal decreased the extent of dilatation in the neighboring low-rank coal. Consequently, high-rank coal not adjacent to low-rank coal achieved free expansion, and its texture became characterized by increased low-circularity pore areas.(2) The addition of ASP to blended coal decreased the number of low-circularity pores in the texture of high-rank coal. ASP appears to lower the softening temperature of high-rank coal, enabling it to fill the voids between coal particles before the low-rank coal solidifies.The abovementioned investigation of coke pore structure assists our understanding of the thermoplastic and dilatation behavior of coal.
机译:焦炭的强度在很大程度上取决于煤成分的热塑性和膨胀行为。因此,了解确保高强度焦炭的行为很重要。在这项研究中,改变了混合煤的组合,并且(在一个单独的实验中)向混合煤中添加了沥青沥青(ASP)。通过对焦炭横截面的图像分析研究了焦炭孔隙结构的最终变化。主要研究结果归纳如下:(1)当低阶煤和高阶煤的热塑性温度差异很大时,两种煤种的结构中低圆孔的比例都会增加。结论是,当高级煤的颗粒不膨胀时,低级煤的颗粒自由膨胀。同时,高等级煤的膨胀减小了相邻低等级煤的膨胀程度。因此,不与低阶煤相邻的高阶煤实现了自由膨胀,其组织结构特点是增加了低圆孔的面积。(2)在混合煤中添加ASP减少了低圆孔的数量高档煤的质地。 ASP似乎降低了高阶煤的软化温度,使其能够在低阶煤凝固之前填充煤颗粒之间的空隙。上述对焦炭孔隙结构的研究有助于我们了解煤的热塑性和膨胀行为。

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