在选择煤浮选强化试剂时,估计使用量子化学方法的可能性

N. Medyanik, E. Mullina, O. Mishurina, N. V. Derina, A. A. Turlina
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引用次数: 1

摘要

采煤质量降低,导致煤精矿灰分、水分、热效率、烧结性能等主要质量指标的恶化。采用选择性药剂模式浮选煤是解决这一问题的有效途径。试剂模式的细化应以试剂在煤表面作用机理的研究为基础。研究了芳香酯对库兹涅茨克煤盆地共青团矿瓦斯煤理化性能和浮选性能的影响。结果表明,天然气煤的自然可浮性低是由于其表面存在明显的能量不饱和,特别是存在大孔隙、含氧基团和矿物杂质。量子化学计算结果表明,煤的亲电中心是由于电子密度向氧原子转移而形成的。结果表明,与水分子相比,煤表面的疏水性可以使用具有更刚性亲核性质的试剂来实现。芳香酯的量子化学特性研究表明,芳香酯可以通过电荷控制机制与煤的亲电区相互作用,形成电荷转移配合物。研究了芳香酯对煤表面物理化学性质的影响,计算了组分的量子化学特性,模拟了有机煤的质量和所研究的试剂,得出了在试剂选择上应用量子化学方法加强煤浮选过程的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of a possibility to use the quantumchemical approach while selecting reagents for coals flotation intensification
Decrease of mined coal quality results in deterioration of main quality characteristics of coal concentrates: ash content, moisture, calorific efficiency and sintering ability. Application of selective reagent modes of coals flotation is an effective method of solving the problem. Elaboration of the reagent modes should be based on a study of mechanism of reagents action on the coal surface. Study of the aromatic esters effect on the physicochemical and flotation properties of gas coals from the Komsomolets mine of the Kuznetsk coal basin accomplished. It was shown that the low natural floatability of gas coals is due to the significant energy unsaturation of their surface, in particular, the presence of large pores, oxygen-containing groups and mineral impurities. The results of quantum chemical calculations demonstrate that the electrophilic centres of the coal are formed due to the electron density shift to the oxygen atoms. It was determined that the hydrophobization of the coal surface can be achieved using reagents that have more rigid nucleophilic nature compared to water molecules. The study of the quantum-chemical characteristics of aromatic esters suggests that they can interact with electrophilic areas of the organic mass of coal through a charge-controlled mechanism with the formation of charge transfer complexes. Results of the study of the aromatic esters effect on the physicochemical properties of coals surface and calculation of quantum-chemical characteristics of compositions, simulating the organic coals mass and studied reagents, allow to make a conclusion about possibility to intensify the coals flotation process based on application the quantum-chemical approach at the reagents selection.
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