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Effects of Surfactant Compounding on the Wettability Characteristics of Zhaozhuang Coal: Experiment and Molecular Simulation

机译:表面活性剂混合对肇庄煤的润湿性特性的影响:实验与分子模拟

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摘要

It is important to study the mechanism of wettability of Zhaozhuang coal with surfactant compoundings in order to prevent dust disaster in the process of coal seam mining. By means of molecular simulation, the amounts of water absorbed by different systems, which are composed of monomer surfactant molecules and Zhaozhuang coal molecules or compounding surfactant molecules and Zhaozhuang coal molecules, were compared in this paper. The simulation results show that the system composed of 0.2% sodium dodecyl benzene sulfonate (SDBS) and 0.3% alcohol polyoxyethylene ether (AEO(3)) had the maximum water absorption amount of 479, which is significantly better than that of other compounding methods and of each monosurfactant system. Analysis results show that the interference of non-ionic surfactant can greatly reduce the electrostatic repulsion between ionic surfactants and make the adsorption sites on the Zhaozhuang coal molecule more compact. The experimental results show that the decreasing percentage of the contact angle of this type of compounding solution on Zhaozhuang coal was 83.74%, which is the best of the six compounding methods. It has a high degree of consistency with the simulation results, and the molecular simulation method applied in this paper shows that it is convenient and accurate. This research plays a guiding role in dustproof work in Zhaozhuang coal mining.
机译:研究赵庄煤的润湿机制与表面活性剂复合是重要的,以防止煤层采矿过程中的粉尘灾害。通过分子模拟,本文比较了由单体表面活性剂分子和Zhaozhuang煤分子组成的不同系统吸收的水量。仿真结果表明,由0.2%十二烷基苯磺酸酯(SDB)和0.3%醇聚氧乙烯醚(AeO(3))组成的系统具有479的最大吸水量,显着优于其他配混方法和每种单溶胶系统的系统。分析结果表明,非离子表面活性剂的干扰可以大大降低离子表面活性剂之间的静电排斥,使肇珠煤分子上的吸附位点更紧凑。实验结果表明,这种配混溶液对肇庄煤的接触角的百分比降低为83.74%,这是六种复合方法中最好的。它具有高度的仿真结果一致性,本文中应用的分子仿真方法表明,它方便准确。这项研究在肇庄煤矿防尘工作中起着指导作用。

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