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Effective Utilization Technique for Coal Having High Maximum Fluidity and Long Maximum Permeation Distance by Weathering Processing

机译:风化工艺有效处理高流动性高,最大渗透距离长的煤炭的有效利用技术

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In our previous study, it was revealed that high MF coal having longer “maximum permeation distance”, which was developed as a unique thermoplasticity index, forms lower roundness pores and thinner pore-wall structures in coke and that coke strength deteriorated when the coal blend included the longer maximum permeation distance coal. Therefore, techniques for reducing the adverse effects of long maximum permeation distance coal on coke strength are essential so as to utilize the coal more efficiently. Some practical techniques of design and control regarding coal grain size were developed for ameliorating coking property of long maximum permeation distance coal in our previous paper. The techniques are based on the facts that the coke strength deterioration caused by long maximum permeation distance coal in coal blend was suppressed with decreasing the coal size.In this paper, influence of weathering, which is mild oxidation with air atmosphere, on permeation distance and coke strength were researched in order to clarify possibilities of controlling maximum permeation distance in another way of the techniques of coal size adjustment. As a result, it was found that the measured maximum permeation distance and coke strength deterioration caused by long permeation distance coal was reduced by weathering processing although the fluidity was impaired. Accordingly, some control techniques of maximum permeation distance by weathering were proposed for more effective utilization of long maximum permeation distance coal.
机译:在我们以前的研究中,发现具有较高“最大渗透距离”较长的高中频煤(作为独特的热塑性指数而开发)在焦炭中形成了较低的圆孔和较薄的孔壁结构,并且当混入煤时焦炭强度降低包括更长的最大渗透距离煤。因此,减少长的最大渗透距离长的煤对焦炭强度的不利影响的技术是必不可少的,以便更有效地利用煤。在先前的论文中,为改善长最大渗透距离煤的焦化性能,开发了一些有关煤粒度的设计和控制实用技术。该技术基于以下事实:随着煤尺寸的减小,抑制了混煤中最大最大渗透距离长的煤所引起的焦炭强度降低。为了阐明用另一种煤大小调节技术控制最大渗透距离的可能性,研究了焦炭强度。结果发现,尽管流动性受到损害,但是通过风化处理减少了由长渗透距离煤引起的所测量的最大渗透距离和焦炭强度劣化。因此,为更好地利用长的最大渗透距离煤,提出了一些风化最大渗透距离的控制技术。

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