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首页> 外文期刊>Energy >Understanding fly-ash formation during fluidized-bed gasification of high-silicon-aluminum coal based on its characteristics
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Understanding fly-ash formation during fluidized-bed gasification of high-silicon-aluminum coal based on its characteristics

机译:根据其特征了解高硅铝煤流化床气化过程中飞灰的形成

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摘要

Investigations on fly-ash formation in fluidized-bed gasification are important in mitigating ash-related problems and exploiting its further usage. In this study, the characteristics of ash fusion, size distribution, and the elemental composition of fly ash from the fluidized-bed gasification of high-silicon aluminum coals were examined, and its formation process during gasification was explored. The ash fusion temperatures of the fly ashes were lower than those of the corresponding raw coal. Although the mean particle size of fly ashes from Jincheng anthracite is smaller than that from Lu'an bitumite, they both have a two-peak distribution. The carbon content and elemental distribution in the two fly ashes vary obviously because of the differences in maceral distribution and mineral composition of original coal. For high-silicon-aluminum coal, fly-ash formation occurred through the char gasification of a shrinking nucleus, the agglomeration of some fine particles into large particles by sintering and collision, and the entry of char particles into a cyclone separator that is entrained by syngas. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对流化床气化中飞灰形成的研究对于减轻与灰有关的问题并进一步利用它具有重要意义。本研究探讨了高硅铝煤流化床气化过程中粉煤灰的熔融特征,粒度分布和粉煤灰的元素组成,并探讨了其在气化过程中的形成过程。飞灰的灰熔融温度低于相应的原煤的灰熔融温度。尽管晋城无烟煤的粉煤灰平均粒径小于六安烟煤的粉煤灰,但它们均具有两个峰值分布。这两种粉煤灰中的碳含量和元素分布因原始煤的黄石分布和矿物成分的差异而明显变化。对于高硅铝煤而言,粉煤灰的形成是通过收缩核的炭气化,通过烧结和碰撞使一些细颗粒团聚成大颗粒,以及使炭颗粒进入旋风分离器而引起的。合成气。 (C)2018 Elsevier Ltd.保留所有权利。

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