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Enhancement of the wettability of coal powders using surfactants.

机译:使用表面活性剂增强煤粉的润湿性。

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摘要

The wettability of coal powders in the presence of a series of ethoxylated alkylphenols and other commercial surfactants has been studied in this thesis with an objective to enhance the effectiveness of water sprays in dust suppression.;The Walker sink time method for measuring wettability of coal particles was modified to obtain more reliable data. In addition, a new technique (Imbibition Time Measurements) was developed to determine the engulfment time of coal particles. Kinetic adsorption studies were carried out to determine the mechanism of adsorption of an ethoxylated nonylphenol on coals of different rank. In addition, selected contact angle measurements were made to explain wetting phenomena.;From the wetting tests a minimum concentration of the surfactant necessary to wet the coals was determined and it was found to be independent of the coal rank but was dependant upon the number of ethoxy groups in the surfactant molecule. An HLB number of 13.4 was found to be optimum for wetting a hvA bituminous coal reflecting the importance of the adsorption phenomena at the various interfaces in the three-phase system. The higher rank coals were found to be more easily wetted than were the lower rank coals.;The short time contact angle measurements suggest that spreading might control the engulfment of particles. From the imbibition time measurements of a large number of individual particles, the homogeneity/heterogeneity of particles with regard to their wetting behavior was determined. The imbibition times of hydrophilic particles were less than a second, while that for coal particles in surfactant solutions ranged from one to a hundred seconds. Short time adsorption studies indicate that the uptake of the surfactant involved both a rapid adsorption process at the external surface and a slow diffusion process.;It is proposed that at low surfactant concentrations, the nonionic surfactant adsorbs through both hydrophobic and hydrophilic interactions with the molecule lying parallel to the surface. Under such conditions coal becomes more hydrophobic and wetting is not possible. At higher concentrations 'surface micelles' form at the hydrophobic sites through hydrophobic chain interaction and wetting is spontaneous under such conditions.
机译:本文研究了在一系列乙氧基化烷基酚和其他市售表面活性剂存在下煤粉的润湿性,目的是增强喷水剂在抑尘方面的有效性。Walker下沉时间法测量煤颗粒的润湿性被修改以获得更可靠的数据。另外,开发了一种新技术(吸收时间测量)来确定煤颗粒的吞入时间。进行了动力学吸附研究,以确定乙氧基化壬基酚在不同等级煤上的吸附机理。另外,通过选择接触角测量来解释润湿现象。根据润湿试验,确定了润湿煤所必需的表面活性剂的最低浓度,发现其与煤等级无关,但取决于煤的数量。表面活性剂分子中的乙氧基。发现13.4的HLB值对于润湿hvA烟煤是最佳的,这反映了三相系统中各个界面处的吸附现象的重要性。发现较高等级的煤比较低等级的煤更容易润湿。;短时间接触角测量表明,散布可能控制颗粒的吞噬。从大量单个颗粒的吸收时间测量中,确定了关于它们的润湿行为的颗粒的均质性/异质性。亲水性颗粒的吸收时间小于一秒,而表面活性剂溶液中煤颗粒的吸收时间为一秒至一百秒。短时吸附研究表明表面活性剂的吸收涉及外表面的快速吸附过程和缓慢的扩散过程。建议在低表面活性剂浓度下,非离子表面活性剂通过与分子的疏水和亲水相互作用进行吸附平行于表面。在这样的条件下,煤变得更疏水并且不可能润湿。在较高浓度下,通过疏水链相互作用在疏水位点形成“表面胶束”,在这种条件下润湿是自发的。

著录项

  • 作者

    Mohal, Brij Raj.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Mining.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 314 p.
  • 总页数 314
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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