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Research on cationic surfactant adsorption performance on different density lignite particles by XPS nitrogen analysis

机译:XPS氮气分析研究阳离子表面活性剂在不同密度褐煤颗粒上的吸附性能

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摘要

AbstractLignite is well known for its hard-to-float property. Many surfactants, including anionic, cationic and non-ionic have been applied to improve the floatation efficiency. In this work, cationic dodecylamine was applied to pretreat the lignite samples with different densities, which are −1.45 g/cm3, 1.45–1.80 g/cm3and +1.80 g/cm3. The surface charged properties of the raw samples were determined by a zeta potential analyzer. The adsorption performance was characterized by XPS and UV/VIS spectrophotometer methods. From the surface zeta-potential results, three curves of zeta-potential figures versus pH value are similar to each other qualitatively in the pH range 5–8, which indicates that the organic structure has the similar ionization/ protonation ability with inorganic minerals at neutral pH. The negatively charged surfaces attract the cationic dodecylamine molecules at neutral pH for the three density fractions, which is shown by the XPS narrow sweep of heteroatom nitrogen before and after the pretreatment process. On the lignite surface, nitrogen was mainly existed in two forms of pyrrolic and quaternary. After the pretreatment, the quaternary-N peak was increased on the lignite surface due to the adsorption of dodecylamine molecules, especially on the surface of the highest density fraction. Correspondingly, UV/VIS spectrophotometer results showed that the adsorption amounts of dodecylamine molecules were 11.4, 18.7 and 20.0 mg/g on the surface of the samples from low to high density. On the other hand, the flotation result showed that more high ash particles and some low ash ones were both floated with the increase of dodecylamine dosage. Hence, if dodecylamine is to be used in lignite flotation, reagents should be added to selectively depress the adsorption process of cationic dodecylamine on the low or high ash particles.
机译: 摘要 褐煤因其难以漂浮的特性而闻名。已应用许多表面活性剂,包括阴离子,阳离子和非离子表面活性剂来提高浮选效率。在这项工作中,采用阳离子十二烷基胺对褐煤样品进行了预处理,其密度为−1.45 g / cm 3 ,1.45-1.80 g / cm 3 和+1.80μg/ cm 3 。通过ζ电势分析仪确定原始样品的表面带电性质。用XPS和UV / VIS分光光度计对吸附性能进行了表征。从表面ζ电势结果来看,在pH范围为5-8时,ζ电势图与pH值的三个曲线在质量上彼此相似,这表明有机结构与中性无机矿物具有相似的电离/质子化能力。 pH值带负电的表面在中性pH值下会吸引三个密度分数的阳离子十二烷基胺分子,这通过XPS在预处理过程之前和之后对杂原子氮的窄扫描显示。在褐煤表面,氮主要以吡咯和季铵两种形式存在。预处理后,由于十二烷基胺分子的吸附,尤其是在最高密度级分的表面上,褐煤表面的季N峰增加。相应地,UV / VIS分光光度计的结果表明,低密度到高密度样品表面十二烷基胺分子的吸附量分别为11.4、18.7和20.0μmg/ g。另一方面,浮选结果表明,随着十二烷基胺用量的增加,更多的高灰分颗粒和一些低灰分的颗粒都漂浮。因此,如果要在褐煤浮选中使用十二烷基胺,则应添加试剂以选择性抑制阳离子十二烷基胺在低灰分或高灰分颗粒上的吸附过程。 < / ce:抽象>

著录项

  • 来源
    《Fuel》 |2018年第1期|48-54|共7页
  • 作者单位

    School of Chemical Engineering and Technology, China University of Mining & Technology;

    School of Chemical Engineering and Technology, China University of Mining & Technology,Advanced Analysis and Computation Center, China University of Mining & Technology;

    School of Chemical Engineering and Technology, China University of Mining & Technology;

    School of Chemical Engineering and Technology, China University of Mining & Technology;

    School of Chemical Engineering and Technology, China University of Mining & Technology;

    Advanced Analysis and Computation Center, China University of Mining & Technology;

    Advanced Analysis and Computation Center, China University of Mining & Technology;

  • 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

    Lignite; Adsorption performance; Dodecylamine; Heteroatom; XPS;

    机译:褐煤;吸附性能;十二烷基胺;杂原子;XPS;

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