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Interaction between STAC and coal/kaolinite in tailing dewatering: An experimental and molecular-simulation study

机译:Stac与煤/高岭土与尾脱水中的相互作用:实验性和分子模拟研究

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摘要

The presence of clay minerals in coal tailings leads to a significant deterioration during the dewatering process. In this study, a cationic surfactant, stearyl trimethyl ammonium chloride (STAC), was considered to enhance the dewatering efficiency of coal tailings. The effect of STAC on coal tailing dewatering was evaluated by the filtration test. Results indicate that STAC can reduce filter cake moisture by increasing the hydrophobicity of particles, decreasing the surface tension of the filtrate, as well as neutralizing the associated charge. Furthermore, to investigate the interactions between STAC and coal tailings, the morphology of adsorbed STAC, interfacial adsorption structure, and dynamic behavior of water molecules were determined by atomic force microscopy (AFM) and molecular dynamics (MD) simulations on an atomic scale. AFM results revealed that the morphologies of STAC adsorbed on coal and kaolinite surfaces differed, owing to distinct interaction mechanisms. The adsorption of STAC on the kaolinite 001 surface is more uniform than on the 00 (1) over bar face and is predominantly based on monolayer adsorption through electrostatic interactions and hydrogen bonding. The MD simulation results suggest that the adsorption of STAC significantly inhibits the attachment of water molecules on coal and kaolinite surfaces. The nitrogen atoms of STAC were adsorbed to the particle surface, such that its alkyl chains were oriented towards water, thereby weakening the interaction between the particles and water. The above findings indicate that the addition of STAC can improve the hydrophobicity of coal and kaolinite effectively and thus, enhance the dewatering performance of coal tailings.
机译:煤尾部的粘土矿物质的存在导致脱水过程中的显着恶化。在该研究中,考虑了阳离子表面活性剂,硬脂基三甲基氯化铵(Stac),以提高煤尾的脱水效率。通过过滤试验评价STAC对煤拖脱水的影响。结果表明,通过增加颗粒的疏水性,降低滤液的表面张力以及中和相关电荷,表明Stac可以减少滤饼水分,以及中和相关电荷。此外,研究Stac和煤尾之间的相互作用,通过原子测量的原子力显微镜(AFM)和分子动力学(MD)模拟测定吸附的STAC,界面吸附结构和水分子的动态行为的形态。由于不同的相互作用机制,AFM结果表明,由于不同的相互作用机制,Stac对煤和高岭石表面的形态不同。 STAC对高岭土001表面的吸附比00(1)上方的00(1)均匀,主要基于通过静电相互作用和氢键合的单层吸附。 MD仿真结果表明,STAC的吸附显着抑制了水分子对煤和高岭石表面的附着。将STAC的氮原子吸附到颗粒表面上,使得其烷基链向水取向,从而削弱了颗粒和水之间的相互作用。上述研究结果表明,添加的STAC可以有效地改善煤和高峰岩的疏水性,从而提高煤尾的脱水性能。

著录项

  • 来源
    《Fuel》 |2020年第1期|118224.1-118224.11|共11页
  • 作者单位

    Taiyuan Univ Technol Coll Min Engn Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Min Engn Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Min Engn Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Min Engn Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Min Engn Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Min Engn Taiyuan 030024 Shanxi Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coal tailings; Kaolinite; STAC; Dewatering; Atomic force microscopy; MD simulation;

    机译:煤尾;高岭石;Stac;脱水;原子力显微镜;MD仿真;

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