Development of a high stability methane sensor

R. Wang , G.R. Barker-Read
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Abstract

By means of XPS electron spectroscopy, together with observation and measurement using an electron microscope, the cause of a decrease in the output activity of catalytic methane sensors was investigated. The principal cause of this decrease in activity was identified as carbon deposition on the catalyst surface during operation.

On the basis of these observations and theoretical calculations a high stability sensor with flowing potassium was proposed and developed. Additionally, the optimum composition and method of preparation of the sensor was determined. As a result, the sensor's stability and working life were greatly improved.

高稳定性甲烷传感器的研制
采用XPS电子能谱法,结合电镜观察和测量,探讨了催化甲烷传感器输出活性下降的原因。活性下降的主要原因是在操作过程中催化剂表面的碳沉积。在这些观察和理论计算的基础上,提出并研制了一种高稳定性的流动钾传感器。此外,还确定了传感器的最佳组成和制备方法。从而大大提高了传感器的稳定性和工作寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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