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The influence of mineral matter on moisture adsorption property of Shengli lignite

机译:矿物质对胜利褐煤吸湿性能的影响

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A typical Chinese lignite was subjected to H2O, CH3COONH4/HCl and HCl/HF/HCl leaching procedures, to study the influence of water-soluble salts, alkali and alkaline earth metals (AAEMs) organically bound to the coal substance or occur as acid-decomposable minerals and discrete mineral matters on moisture adsorption property of lignite. Variations of pore structure and chemical functional groups of coal samples during leaching procedures were determined by the nitrogen adsorption measurements and Fourier transform infrared spectroscopy (FTIR), respectively. Possible interactions between different types of minerals and moisture in lignite were also discussed. The results showed that the specific surface area and porosity of the coal treated by HCl/HF/HCl method increased significantly, while other leaching procedures had slight effect on coal pore structure. The FTIR spectrum of treated samples displayed similar bands of the organic part as those of raw coal. Water-soluble minerals in coal have adversely influence on the sorption behaviour of water molecules. The ionic cross-links forces and the hydration of ions, gradually disappeared with the removal of AAEMs result in the evident decrease of the capacity of moisture adsorption of lignite. The increase of specific surface area and the concentrations of oxygen-containing functional groups by removing discrete mineral particles could cause the increased equilibrium adsorption moisture content (EMC). On the other hand, a poorer cohesive structure of adsorbing moisture resulted from the presence of discrete mineral matters, raw lignite revealed lower EMC. (C) 2016 Published by Elsevier Ltd.
机译:对典型的中国褐煤进行H2O,CH3COONH4 / HCl和HCl / HF / HCl浸提程序,以研究有机结合到煤质上或以酸形式出现的水溶性盐,碱金属和碱土金属(AAEM)的影响。可分解矿物质和离散矿物质对褐煤吸湿性能的影响。分别通过氮吸附测量和傅里叶变换红外光谱(FTIR)确定了煤样品在浸出过程中孔隙结构和化学官能团的变化。还讨论了不同类型的矿物与褐煤中水分之间可能的相互作用。结果表明,HCl / HF / HCl法处理后的煤的比表面积和孔隙率显着增加,而其他浸出程序对煤的孔隙结构影响很小。处理过的样品的FTIR光谱显示出有机部分的谱带与原煤相似。煤中的水溶性矿物质会对水分子的吸附行为产生不利影响。随着AAEMs的去除,离子交联力和离子的水合逐渐消失,导致褐煤的吸湿能力明显降低。通过去除不连续的矿物颗粒来增加比表面积和含氧官能团的浓度可能会导致平衡吸附水分含量(EMC)的增加。另一方面,由于离散矿物质的存在,吸附水分的内聚结构较差,原始褐煤的EMC较低。 (C)2016由Elsevier Ltd.出版

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