首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Study on the effect of ionic liquids on coal spontaneous combustion characteristic by microstructure and thermodynamic
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Study on the effect of ionic liquids on coal spontaneous combustion characteristic by microstructure and thermodynamic

机译:离子液体对微观结构和热力学煤自燃特性的影响研究

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Ionic liquids (ILs) including [BMIm][NTf2], [BMIm][BF4] and [HOEtMIm][NTf2] were used to inhibit coal spontaneous combustion (CSC) in this study. The effects of three Ionic liquids (ILs) on the physical and chemical structure of coal including surface morphology, pore structure and functional groups were analyzed by Scanning electron microscope, N-2 adsorption, Fourier transform infrared spectroscopy (FTIR). Subsequently, thermodynamic analysis and oxidation kinetics experiment were utilized to investigate the influence of ILs on the oxidation process. Pore structure analyses indicated that ILs could dissolve the minerals in coal, causing the collapse and blocking of pore structure and resulting in lower specific surface area and pore volume of the treated coals by ILs compared to the raw coal (RC). FTIR results showed the enhanced apparent aromaticity and more stable chemical structure of the treated coals, and this increased the difficult of chemical functional group on the coal surface reacting with oxygen. The thermodynamic and oxidation kinetics experiments revealed that ILs delayed the oxidation process of the treated coals obviously, and the treated coals demonstrated less mass loss ratio and oxygen consumption, as well as lower heat release and carbon monoxide products than the RC. Moreover, [HOEtMIm][NTf2] showed the best inhibition effect on coal spontaneous combustion as verified by minimum heat release and highest activation energy Ea for the treated coal sample. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:包括[Bmim] [NTF2],[Bmim] [BF4]和[Hoetmim] [NTF2]的离子液体(ILS)用于抑制本研究中的煤自燃(CSC)。通过扫描电子显微镜,N-2吸附,傅立叶变换红外光谱(FTIR)通过扫描电子显微镜分析三种离子液体(ILS)对包括表面形态,孔隙结构和官能团的物理和化学结构的影响。随后,利用热力学分析和氧化动力学实验来研究ILS对氧化过程的影响。孔隙结构分析表明,ILS可以溶解煤中的矿物质,导致孔隙结构的塌陷和阻断,与原煤(RC)相比,ILS通过ILS的处理煤的较低比表面积和孔体积。 FTIR结果表明,治疗煤的表观芳香性和更稳定的化学结构,这增加了煤表面与氧气反应的化学官能团的难度增加。热力学和氧化动力学实验表明,ILS显然延迟了处理的煤的氧化过程,并且处理过的煤部表现出较少的质量损失比和氧气消耗,以及比RC更低的热释放和一氧化碳产物。此外,[Hoetmim] [NTF2]显示对经处理的煤样的最小热释放和最高激活能量EA的核心自燃的最佳抑制作用。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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