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Binary gaseous mixture and single component adsorption of methane and argon on exfoliated graphite.

机译:片状石墨上甲烷和氩气的二元气体混合物和单组分吸附。

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摘要

Exfoliated graphite was used as a substrate for adsorption of argon and methane. Adsorption experiments were conducted for both equal parts mixtures of argon and methane and for each gas species independently. The purpose of this was to compare mixture adsorption to single component adsorption and to investigate theoretical predictions concerning the kinetics of adsorption made by Burde and Calbi.6 In particular, time to reach pressure equilibrium of a single dose at a constant temperature for the equal parts mixture was compared to time of adsorption for each species by itself. It was shown that mixture adsorption is a much more complex and time consuming process than single component adsorption and requires a much longer amount of time to reach equilibrium. Information about the composition evolution of the mixture during the times when pressure was going toward equilibrium was obtained using a quadrupole mass spectrometer. Evidence for initial higher rate of adsorption for the weaker binding energy species (argon) was found as well as overall composition change which clearly indicated a higher coverage of methane on the graphite sample by the time equilibration was reached. Effective specific surface area of graphite for both argon and methane was also determined using the Point-B method.2.
机译:片状石墨用作吸附氩气和甲烷的基质。分别对等份的氩气和甲烷混合物以及每种气体进行吸附实验。这样做的目的是将混合物吸附与单组分吸附进行比较,并研究有关Burde和Calbi进行的吸附动力学的理论预测。6特别是,在相同温度下,等量温度下达到单剂量压力平衡所需的时间将混合物与每种物质本身的吸附时间进行比较。结果表明,与单组分吸附相比,混合物吸附是一个更为复杂和耗时的过程,并且需要更长的时间才能达到平衡。使用四极质谱仪获得有关压力趋于平衡期间混合物的组成演变的信息。发现对于较弱的结合能物种(氩气)而言,最初的较高吸附速率以及整体组成变化的证据清楚地表明,达到平衡时,石墨样品上甲烷的覆盖率更高。用Point-B法测定了石墨对氩气和甲烷的有效比表面积。2。

著录项

  • 作者

    Russell, Brice Adam.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Physics General.;Chemistry Physical.
  • 学位 M.S.
  • 年度 2013
  • 页码 45 p.
  • 总页数 45
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:06

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