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Wettability modification and restraint of moisture re-adsorption of lignite using cationic gemini surfactant

机译:阳离子双子表面活性剂对褐煤的润湿性改性和抑制水分再吸收

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Adsorption of surfactants onto lignite surface may result in wettability changes and slow the re-adsorption of moisture onto dried lignite. In this work, a cationic gemini surfactant, ethanediyl-1,2-bis(dimethyl dodecyl ammonium bromide) (12-2-12), was chosen, and its adsorption characteristics and the influence on the surface wettability of lignite were investigated. The results suggest that a strong attraction takes place between the negatively charged lignite surface and a gemini surfactant with positively charged head groups to form a monolayer adsorption in low surfactant concentration. Electrostatic forces play a dominant role in the adsorption of a cationic gemini surfactant on the lignite surface while hydrogen bonding does not. The adsorption density of a gemini surfactant on coal surfaces increased with an enhancement in the amount of polar oxygen containing functional groups and the addition of KCl. A decrease in wetting heat indicated that the lignite treated with the gemini surfactant led to a significant decrease in the hydrophilicity of lignite. The high concentration of oxygen-containing functional groups increased the negative charge of the coal surface, which is beneficial for adsorption of the cationic gemini surfactant adsorption onto the coal surface that decreased the hydrophilicity of lignite effectively. The lignite wettability surface modification results were compared with the traditional cationic surfactant cetyltrimethyl ammonium bromide (CTAB); these results suggested that the unique chemical structure of the gemini surfactant with two hydrophilic and two hydrophobic groups had a more prominent impact on lignite surface hydrophilicity. The gemini surfactant adsorbed on lignite surface also had a significant improvement in resisting moisture re-adsorption and could create pathways toward utilizing lignite industrially. (C) 2016 Elsevier B.V. All rights reserved.
机译:表面活性剂在褐煤表面的吸附可能会导致润湿性发生变化,并减慢水分对干燥褐煤的重新吸附。在这项工作中,选择了阳离子双子表面活性剂,乙二基-1,2-双(二甲基十二烷基溴化铵)(12-2-12),并研究了其吸附特性以及对褐煤表面润湿性的影响。结果表明,在带负电荷的褐煤表面和具有带正电荷头基的双子表面活性剂之间会产生强烈的吸引力,从而在低表面活性剂浓度下形成单层吸附。静电力在褐煤表面吸附阳离子双子表面活性剂中起主要作用,而氢键则不起作用。双子表面活性剂在煤表面的吸附密度随极性含氧官能团数量的增加和KCl的添加而增加。湿热的降低表明用双子表面活性剂处理的褐煤导致褐煤的亲水性显着降低。高浓度的含氧官能团增加了煤表面的负电荷,这有利于阳离子双子表面活性剂在煤表面的吸附,有效地降低了褐煤的亲水性。将褐煤的润湿性表面改性结果与传统的阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)进行了比较;这些结果表明,具有两个亲水基团和两个疏水基团的双子表面活性剂的独特化学结构对褐煤表面亲水性具有更显着的影响。吸附在褐煤表面上的双子表面活性剂在抵抗水分再吸附方面也有显着改善,并且可以为工业化利用褐煤创造途径。 (C)2016 Elsevier B.V.保留所有权利。

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