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Methane-specific gas detectors: the effect of natural gas composition

机译:甲烷专用气体探测器:天然气成分的影响

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摘要

Certain gas sensors, particularly those based on optical spectroscopy, have enabled the detection of individual gas species such as methane with low cross-sensitivity to other gases. For gas-specific instruments used to measure natural gas leaks, this paper considers whether it is necessary to consider the other components of natural gas in addition to methane. We have quantified the effect of gas compositional variation on methane-based measurements on the ppm, %LEL and %volume scales. %LEL measurements, important for safety applications, are the most challenging for methane-specific detection. Acceptable levels of error have been drawn from gas detector standards and by comparison with established gas detectors. The fundamental error expected from a methane-specific detector, as a result of variations in gas composition, would be larger than this benchmark on the %LEL scale. However for gas-specific detection, measurement of an additional component such as ethane is shown to reduce the error to below the benchmark level. This has been demonstrated experimentally using an instrument based on tunable diode laser spectroscopy.
机译:某些气体传感器,尤其是基于光谱学的气体传感器,已经能够检测对其他气体具有低交叉敏感性的单个气体物种,例如甲烷。对于用于测量天然气泄漏的特定于气体的仪器,本文考虑了是否有必要考虑除甲烷以外的其他天然气成分。我们已经量化了ppm,%LEL和%体积标度上气体成分变化对基于甲烷的测量的影响。对安全应用很重要的%LEL测量对于甲烷特定的检测最具挑战性。可接受的误差水平已从气体检测器标准中得出,并与已建立的气体检测器进行了比较。由于气体成分的变化,特定于甲烷的检测器预期的基本误差将大于%LEL刻度上的该基准。但是,对于特定于气体的检测,显示了对其他成分(例如乙烷)的测量,可将误差降低到基准水平以下。使用基于可调二极管激光光谱仪的仪器已通过实验证明了这一点。

著录项

  • 作者

    Hodgkinson Jane; Pride Russ D.;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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