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首页> 外文期刊>The Korean journal of chemical engineering >Comparison of fractal properties of porous structures during coal devolatilization
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Comparison of fractal properties of porous structures during coal devolatilization

机译:煤挥发过程中多孔结构的分形特性比较

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This paper investigates fractal property changes of pore structures during coal devolatilization. Similar to char pores, coal pores can also be classified as micro pores and macro pores based on their fractal dimensions. The specific surface area and fractal dimension of micro pores in coal particles are basically unchanged after devolatilization. However, the specific surface area and fractal dimension of macro pores, which are key factors in char combustion, are increased after devolatilization. In fact, the fractal dimensions are basically doubled. These parameters will affect another fractal geometrical factor β in char pores that is correlated to char combustion rate. Since the rate of char combustion can be predicted from their fractal pore properties, it may be possible to predict char combustion directly from the properties of their parent coal pores in the future.
机译:本文研究了煤挥发过程中孔隙结构的分形特性变化。与炭孔类似,煤孔也可以根据其分形维数分为微孔和大孔。脱挥发分后,煤颗粒中微孔的比表面积和分形维数基本保持不变。然而,挥发后,作为炭燃烧的关键因素的大孔的比表面积和分形维数增加。实际上,分形维数基本上增加了一倍。这些参数将影响炭孔中与炭燃烧速率相关的另一个分形几何因子β。由于炭燃烧速率可以从它们的分形孔隙特性来预测,因此将来有可能直接从其母煤孔隙的特性来预测炭燃烧。

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