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Dispersion behavior and attachment of high internal phase water-in-oil emulsion droplets during fine coal flotation

机译:细煤浮选过程中高内相油包水乳状液液滴的分散行为和附着

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摘要

Flotation recovery of fine oxidized coal is frequently inefficient when using conventional oily collectors. A large amount of fine coal is discharged as tailings, leading to resource waste and environmental pollution. To solve the problem of high oil consumption and low efficiency associated with traditional flotation, research efforts have been focused on the use of oil-in-water emulsion to reduce oil consumption. Few studies concerning water-in-oil emulsion, especially the high internal phase water-in-oil (HIP W/O) emulsion, have been conducted. Our microflotation results showed a significant oil dosage reduction when a HIP W/O emulsion was used as a collector for coal flotation. The state of the HIP W/O emulsion dispersion in water and the emulsion droplets attachment at the coal surface are vital issues associated with achieving efficient flotation. In this study, optical microscopy and high speed video microscopy were employed to study the dispersion behavior and microstructure of the HIP W/O emulsion in water. This study found that the HIP emulsion tends to be dispersed as a W-1/O/W-2 double emulsion during mixing in water because of the migration of the surplus Span 80 in the oil phase to the O-W-2 interface. The presence of NaCl in W-1 is also essential for a stable W-1/O/W-2 double emulsion, which is formed when equilibrium of the Laplace and osmotic pressures between the W-1 phase and W-2 phase is obtained. In addition, the W-1/O/W-2 emulsion droplets are negatively charged, and the emulsion aggregation appears to be inhibited by electrostatic repulsion. More importantly, the Span 80 emulsifier at the O-W-2 interface seems to facilitate hydrogen bond formation between the hydrophilic moieties of Span 80 and the oxygen containing functional groups at the coal surface, which is verified by the results from molecular dynamics simulation (MDS). The hydrogen bond formation plays a leading role in the attachment and/or spreading of the emulsion droplets at the oxidized coal surface. The HIP W/O emulsion could be a potential economical and efficient replacement for the traditional oily collectors as a promising collector for the flotation of fine oxidized coal.
机译:当使用常规的油性收集器时,细氧化煤的浮选回收通常效率低下。大量的细煤作为尾渣排放,导致资源浪费和环境污染。为了解决与传统浮选相关的高油耗和低效率的问题,研究工作集中在使用水包油乳液以减少油耗方面。关于油包水乳液,特别是高内相油包水(HIP W / O)乳液的研究很少。我们的微浮选结果表明,当将HIP W / O乳液用作煤浮选的捕收剂时,油的用量明显减少。 HIP W / O乳状液在水中的分散状态和乳状液在煤表面的附着是实现有效浮选的重要问题。在这项研究中,光学显微镜和高速视频显微镜被用来研究HIP W / O乳液在水中的分散行为和微观结构。这项研究发现,由于多余的Span 80在油相中迁移到O-W-2界面,HIP乳液在水中混合时倾向于以W-1 / O / W-2双重乳液的形式分散。 W-1中NaCl的存在对于稳定的W-1 / O / W-2双重乳液也是必不可少的,这是在W-1相和W-2相之间获得拉普拉斯平衡和渗透压时形成的。另外,W-1 / O / W-2乳剂液滴带负电,并且乳剂的聚集似乎受到静电排斥的抑制。更重要的是,OW-2界面处的Span 80乳化剂似乎促进Span 80的亲水部分与煤表面含氧官能团之间的氢键形成,这已通过分子动力学模拟(MDS)的结果得到了验证。 。氢键的形成在乳化液滴在氧化煤表面的附着和/或扩散中起主要作用。 HIP W / O乳液可以作为传统油性捕收剂的一种潜在的经济高效替代品,可以用作浮选细氧化煤的有希望的捕收剂。

著录项

  • 来源
    《Fuel》 |2019年第1期|273-282|共10页
  • 作者单位

    Shanxi Univ Shanxi Collaborat Innovat Ctr High Value Added Ut State Environm Protect Key Lab Efficient Utilizat Inst Resources & Environm Engn 92 Wucheng Rd Taiyuan 030006 Shanxi Peoples R China|Univ Utah Coll Mines & Earth Sci Dept Met Engn 135 S 1460 E 412 WBB Salt Lake City UT 84112 USA;

    Univ Utah Coll Mines & Earth Sci Dept Met Engn 135 S 1460 E 412 WBB Salt Lake City UT 84112 USA;

    Shanxi Univ Shanxi Collaborat Innovat Ctr High Value Added Ut State Environm Protect Key Lab Efficient Utilizat Inst Resources & Environm Engn 92 Wucheng Rd Taiyuan 030006 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

    Fine oxidized coal; HIP W/O emulsion; Flotation; Double emulsion; Attachment; Hydrogen bond;

    机译:细氧化煤;HIP W / O乳液;浮选;双重乳液;附件;氢键;

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