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The electrochemical determination of oxygen and combustible components in hot gases.

机译:电化学测定热气体中的氧气和可燃成分。

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摘要

The on-site analysis of high temperature gases is important in the emission control and optimization of combustion and metallurgic processes. The presently available potentiometric sensors have the disadvantages of structural complexity and susceptibility to interferences. To overcome these problems, an electrochemical system of three metallic film electrodes operated in the cyclic voltammetric mode was investigated. Sintered yttria-stabilized zirconia (YSZ) was used as the substrate for the electrodes as well as the solid electrolyte. At various selected potentials, the current strongly depended on the concentration of gaseous oxygen. The current was not limited by the gas diffusion and was, therefore, unaffected by the gas flow. It was demonstrated that the electrode and electrolyte degradation can be considerably retarded by the proper selection of the electrode voltage profile.The developed method of oxygen detection could be adapted for simultaneous measurements of moisture and possibly other combustion products which may be present in a hot gas in addition to oxygen. A metal film resistance thermometer deposited directly on the sensor was found suitable for on-site temperature monitoring.The on-site deposition of thin solid electrolyte films was investigated as means of further increasing the flexibility of this sensing method. A successful electrolyte deposit was obtained with ion beam sputtering technique in a mixture of oxygen and argon. The current output of the sensors that employed the film electrolyte was similar to that of the sensors based on the sintered YSZ, but was somewhat limited by the electrolyte conductivity. The possibility and desirability of integration of the oxygen sensor based on the thin film electrolyte and a combustible gas detector was analyzed. The well-known calorimetric method of combustible gas detection was modified to employ metal film heaters in order to provide an improved compatibility with the new oxygen sensor.
机译:高温气体的现场分析对于排放控制以及燃烧和冶金过程的优化至关重要。目前可用的电位传感器具有结构复杂和易受干扰的缺点。为了克服这些问题,研究了以循环伏安模式操作的三个金属膜电极的电化学系统。烧结的氧化钇稳定的氧化锆(YSZ)用作电极的基板以及固体电解质。在各种选定的电位下,电流很大程度上取决于气态氧的浓度。电流不受气体扩散的限制,因此不受气流的影响。结果表明,通过适当选择电极电压曲线可以大大抑制电极和电解质的降解。所开发的氧气检测方法可以适用于同时测量湿气以及热气中可能存在的其他燃烧产物除了氧气。发现直接沉积在传感器上的金属膜电阻温度计适用于现场温度监测。研究了固体电解质薄膜的现场沉积,以进一步提高这种检测方法的灵活性。用离子束溅射技术在氧气和氩气的混合物中获得了成功的电解质沉积。采用薄膜电解质的传感器的电流输出与基于烧结YSZ的传感器的电流输出相似,但受电解质电导率的限制。分析了基于薄膜电解质的氧气传感器和可燃气体探测器集成的可能性和可取性。改进了对可燃气体检测的著名量热法,以采用金属膜加热器,以提供与新型氧气传感器的改进兼容性。

著录项

  • 作者

    Makovos, Edward Boris.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Chemistry Analytical.Engineering Chemical.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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