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Effects of hydrophilic groups of nonionic surfactants on the wettability of lignite surface: Molecular dynamics simulation and experimental study

机译:非离子表面活性剂亲水基团对褐煤表面润湿性的影响:分子动力学模拟与实验研究

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摘要

Abundant oxygen-containing functional groups make lignite high moisture content, which reduces the utilization efficiency of lignite. The decrease in hydrophilicity of lignite surface can be achieved by treating with surfactant. In the present work, two kinds of nonionic surfactants with different hydrophilic groups, n-dodecyl beta-D-maltoside (C(12)G(2)) and dodecyl hepta glycol (C12E7), were selected to modify the wettability of lignite surface by molecular dynamics simulation. Because of the drastic differences in compositions and structure of their headgroups, different behaviors were observed. The adsorption results of simulation indicate that polyhydroxy surfactant, C(12)G(2), adsorbs strongly on lignite surface as a comparison to the poly ether surfactant, C12E7. However, the extent of hydrophobicity of modified lignite surface by these surfactants is inconsistent with their adsorption capabilities. Compared to the raw lignite, the hydrophilicity of lignite significantly decreases by adsorption of C12E7, while the C(12)G(2) makes the lignite even more hydrophilicity. The strong polar oxygen-containing functional groups of lignite surface are covered by ethers in C12E7 with weaker polarity, which weakens the interaction between water and lignite. The hydrophilicity of lignite adsorbed C(12)G(2) is strengthened due to the increase in surface polarity by the introduction of polar hydroxyl groups. The results of simulations are in accord with the available experimental data.
机译:丰富的含氧官能团使褐煤含水量高,降低了褐煤的利用效率。褐煤表面亲水性的降低可以通过用表面活性剂处理来实现。在本工作中,选择了具有不同亲水基团的两种非离子表面活性剂,正十二烷基β-D-麦芽糖苷(C(12)G(2))和十二烷基七乙二醇(C12E7),以改变褐煤表面的润湿性通过分子动力学模拟。由于其头部的组成和结构存在巨大差异,因此观察到了不同的行为。模拟的吸附结果表明,与聚醚表面活性剂C12E7相比,多羟基表面活性剂C(12)G(2)在褐煤表面上强烈吸附。然而,这些表面活性剂对改性褐煤表面的疏水性程度与其吸附能力不一致。与原始褐煤相比,褐煤的亲水性由于吸附C12E7而大大降低,而C(12)G(2)使褐煤的亲水性更高。褐煤表面的强极性含氧官能团被C12E7中极性较弱的醚所覆盖,这削弱了水与褐煤之间的相互作用。褐煤吸附的C(12)G(2)的亲水性由于引入极性羟基而使表面极性增加而增强。模拟结果与可用的实验数据一致。

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