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Regulation of ash-fusion behaviors for high ash-fusion-temperature coal by coal blending

机译:用煤混合调节高灰熔化煤的灰融合行为

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Blending is a promising method to modify the ash-fusion characteristics of coal to meet gasification requirements. To investigate the variation in ash-fusion behavior for high ash-fusion-temperature (AFT) coal through coal blending and its regulating mechanism, the ash-chemistry characteristics of four coals (Nantun, Pengzhuang, Biaodian, and Xiangyuan) were analyzed. Mineral-transformation behaviors in the mixed ashes were investigated by X-ray powder diffractometry using normalized reference intensity ratio software, scanning electron microscopy analyzer equipped with energy-dispersive X-ray spectrometry, and FactSage software. Pengzhuang and Biaodian coals, AFTs meet entrained-flow gasifier requirements when the Xiangyuan mass ratio reaches 20%. The Nantun requires a Xiangyuan mass ratio of XY >30% because of its high aluminum oxide content. The required Xiangyuan optimal blending mass ratio is 40%-70% for the three high AFT coals to meet gasification requirements in the entrained-flow gasifier. An increased Xiangyuan mass ratio leads to decreasing contents of high melting-point mullite and silica and increasing contents of low melting-point anorthite, hercynite, gehienite, and hedenbergite. Amorphous matter in three mixed ash types resulted in a decrease in their AFTs. The variation in liquid phase under certain conditions reflects the change in AFT. (C) 2017 Elsevier B.V. All rights reserved.
机译:混合是改变煤灰融合特性以满足气化要求的有希望的方法。为了探讨通过煤混合的高灰熔化温度(AFT)煤的灰融合​​行为的变化及其调节机制,分析了四个煤炭的灰化学特征(南屯,彭庄,鲍澳和湘度)。使用归一化参考强度比软件,扫描电子显微镜分析仪进行X射线粉末衍射测定,扫描电子显微镜分析仪,扫描电子显微镜分析仪和磁性转化灰衍射。彭庄和彪岛煤炭,底部均达到潮流气化器的要求,襄垣质量比率达到20%。由于其高氧化铝含量,南屯需要XY> 30%的Xianguan质量比。对于三个高尾部煤炭所需的湘南最优混合质量比为40%-70%,以满足夹带流动气化器中的气化要求。湘南质量比增加导致高熔点莫来石和二氧化硅的含量降低,增加低熔点钙质,肝炎,胶质石和海贝伯氏含量。三种混合灰分中的无定形物质导致他们的前方减少。某些条件下液相的变化反映了船尾的变化。 (c)2017 Elsevier B.v.保留所有权利。

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