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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Improvement on slurry ability and combustion dynamics of low quality coals with ultra-high ash content
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Improvement on slurry ability and combustion dynamics of low quality coals with ultra-high ash content

机译:超高灰分含量的低质量煤的浆料能力和燃烧动力学的提高

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It is a significant subject that low quality coals could be used for high concentration slurry preparation because of the large reserve and low price. Nevertheless, due to the microstructure and surface properties of low quality coals, it is difficult to prepare qualified coal water slurry (CWS) directly. In this study, an improved flotation technique was employed to upgrade two low quality coals, then Jinda raw coal (JD-RC) and its upgraded coal (JDUC), together with Jisuo raw coal (JS-RC) and its upgraded coal (JS-UC) were applied to CWS preparation and combustion dynamics analysis. Results showed that after two samples of low quality coals were upgraded, the maximum slurry concentration could be increased by 6%. It was attributed to the variation of free water content, which was mainly influenced by composition and pore structure of coal particles. Because of the remarkable decrement on specific surface area and porosity after flotation, the ignition temperature and apparent activation energy of CWS prepared by JD-UC were increased comparing to JD-RC. However, the ignition temperature and apparent activation energy of CWS prepared by JS-UC were lower than JS-RC, which was resulted from the higher combustible content in JS-UC. The results of this study provided a method for the preparation of high concentration CWS using low quality coals with ultra-high ash content. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:它是一个重要的主题,由于大储备和低价格,低质量煤可用于高浓度浆料制备。然而,由于低质量煤的微观结构和表面性质,难以直接制备合格的煤水浆(CWS)。在这项研究中,采用改进的浮选技术升级了两种低质量的煤,然后挤出了金达原料煤(JD-RC)及其升级的煤(JDUC),以及JISUO原煤(JS-RC)及其升级的煤炭(JS - SUC)应用于CWS制备和燃烧动力学分析。结果表明,在升高两种低质量煤的样品后,最大浆料浓度可增加6%。它归因于自由含水量的变异,主要受煤颗粒的组成和孔结构的影响。由于对浮选后的比表面积和孔隙率显着衰落,与JD-RC相比,通过JD-UC制备的CWS的点火温度和表观活化能量增加。然而,JS-UC制备的CW的点火温度和表观激活能量低于JS-RC,这是由JS-UC中较高的可燃内容产生的。本研究的结果提供了一种使用具有超高灰分含量的低质量煤制备高浓度CWS的方法。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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