鉄と鋼
Online ISSN : 1883-2954
Print ISSN : 0021-1575
ISSN-L : 0021-1575
論文
コークス気孔構造解析に基づいた石炭軟化溶融膨張挙動の評価
林 裕介愛澤 禎典上坊 和弥野村 誠治有馬 孝
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2014 年 100 巻 2 号 p. 118-126

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Coke strength is depends on coal thermoplastic and dilatation behavior, so it is very important to understand the behaviors for making high strength coke. In this study, change of coke pore structure were investigated with image analysis of coke cross section when coal combination of blended coal changed and ASP was added to blended coal.
(1) When thermoplastic temperature between low rank coal and high rank coal widely differed, low circularity pore increased in the both texture derived from low rank coal and high rank coal. It was concluded that when low rank coal particle dilated, high rank coal particle didn’t dilate, so low rank coal particle reached free expansion. Meanwhile, dilatation of high rank coal neighboring low rank coal decreased. As a result, high rank coal not neighboring low rank coal reached free expansion, and low circularity pore area increased in the texture derived from high rank coal.
(2) When ASP was added to blended coal, low circularity pore decreased in the texture derived from high rank coal. It was thought that ASP lowered softening temperature of high rank coal, so high rank coal could fill void between coal particles before low rank coal solidified.
As above, investigation of coke pore structure is effective to understand coal thermoplastic and dilatation behavior.

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© 2014 一般社団法人 日本鉄鋼協会

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