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The interfacial properties, flotation behavior and suspension rheology of coal and pyrite systems: The influence of various reagents.

机译:煤和黄铁矿系统的界面性质,浮选行为和悬浮流变性:各种试剂的影响。

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摘要

Coal constitutes an important commodity in the United States, used mainly by electrical utility and iron and steel industry. However, the electrical utility industry needs high-quality coal, which requires cleaning in order to increase the coal calorific content, reduce transportation costs, reduce the size of scrubbing facilities and meet government regulations on sulfur emission (0.5 kg/GJ). Therefore, the objective of the research undertaken for this investigation was to study the separation of coal from pyrite by using new reagents to inhibit the flotation of pyrite by modifying the hydrophobicity of pyrite and regulating the aggregative stability of the coal-pyrite system.;For this purpose, how a new family of reagents (designated as TEPA, IESA, S-CMIU and TMAE) affected the interfacial properties and flotation behavior of Arizona pyrite and three different high-sulfur bituminous coals (Illinois No. 6, Pittsburgh No. 8 and Upper Freeport PA) and the rheology of slurries of Pittsburgh No. 8 coal was studied in detail. Bulk characterization of coal and pyrite included chemical and mineralogical analyses. Surface characterization included determination of the wettability behavior, electrokinetic potentials and Hallimond tube flotation response. Wettability was assessed by means of contact angle and induction time measurements in the absence of reagents. Bulk characterization and wettability studies indicate that the hydrophobicity of the coals follows the order:;Bench-scale flotation tests of coal weathered and nonweathered, using a standard flotation method, were performed in single stage, two stage, and release analysis and tree analysis procedures. These tests showed that the separation efficiency decreases as the time of weathering increases. Furthermore, the two-stage flotation results indicated that for the three coals, this family of pyrite depressants increased the pyritic sulfur rejection up to 9% over the results obtained in the absence of pyrite depressants.;The effect of additives on the aggregative stability of Pittsburgh No. 8 coal and pyrite system was studied through rheological and flocculation measurements. The rheological studies included the effect of particle size, equilibration time, solid-liquid ratio, and the effect of certain experimental variables and procedures, with and without additions of reagents. Flocculation studies included relative sedimentation volume and size distribution of flocs. The results of both rheological and flocculation studies showed that TEPA, IESA and S-CMIU disperse the system, whereas TMAE first flocculates the system and then redisperses upon higher additions of the reagent.
机译:煤炭是美国的重要商品,主要由电力公司和钢铁工业使用。但是,电力行业需要高质量的煤炭,这就需要进行清洁,以增加煤炭的含热量,降低运输成本,减小洗涤设施的规模并满足政府的硫排放规定(0.5 kg / GJ)。因此,本研究的目的是研究通过使用新试剂通过改变黄铁矿的疏水性和调节煤-黄铁矿体系的聚集稳定性来抑制黄铁矿浮选的新试剂。为此,一个新的试剂家族(称为TEPA,IESA,S-CMIU和TMAE)如何影响亚利桑那黄铁矿和三种不同的高硫烟煤(伊利诺伊州第6号,匹兹堡第8号)的界面性质和浮选行为和宾夕法尼亚州上自由港)以及匹兹堡8号煤浆的流变学进行了详细研究。煤和黄铁矿的整体特征包括化学和矿物学分析。表面表征包括确定润湿性,电动势和哈利蒙德管的浮选反应。在没有试剂的情况下,通过接触角和诱导时间的测量来评估润湿性。大量表征和润湿性研究表明,煤的疏水性遵循以下顺序:;采用标准浮选方法,对风化和非风化煤的基准浮选进行了单阶段,两阶段,释放分析和树木分析程序。这些测试表明,随着风化时间的增加,分离效率会降低。此外,两阶段浮选结果表明,对于三种煤,该黄铁矿抑制剂比不使用黄铁矿抑制剂的结果提高了黄铁矿硫的截留率,高达9%。通过流变和絮凝测量研究了匹兹堡8号煤和黄铁矿系统。流变学研究包括添加或不添加试剂时粒径,平衡时间,固液比以及某些实验变量和程序的影响。絮凝研究包括絮凝物的相对沉降量和大小分布。流变学和絮凝研究的结果均表明,TEPA,IESA和S-CMIU分散了系统,而TMAE首先使系统絮凝,然后在添加更高的试剂后重新分散。

著录项

  • 作者

    Sotillo, Francisco, Javier.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Materials science.;Mining engineering.;Chemical engineering.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 266 p.
  • 总页数 266
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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