Open-path UV Fourier-transform gas monitor with no moving parts

J. P. Lenney, W. Hirst, M. Padgett, B. Patterson, N. K. Hedges, D. Strachan, W. Sibbett
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Abstract

New legislation requiring the monitoring and reduction of polluting gases in both Europe and the USA has increased the demand for reliable and affordable open-path monitoring systems, suitable for hazardous area operation. We report on the research and development of a UV Fourier-transform spectrometer-based system for open-path monitoring of both hazardous and environmental gases. The device has no moving parts and is designed for unattended operation. Laboratory tests have successfully detected the presence of and differentiated between and present in a 1 m test cell down to 1.0 ppm.m levels. The real-time response of the system allows for the use of maximum entropy modelling to predict the size and location of a gas leak. Initial field tests with open-air gas releases of and have verified this. The multiple-gas feature of the instrument allows for additional possible applications with regards to environmental monitoring.
无运动部件的开路UV傅里叶变换气体监测仪
欧洲和美国要求监测和减少污染气体的新立法增加了对可靠和负担得起的开放路径监测系统的需求,适用于危险区域的操作。我们报告了一种基于紫外傅立叶变换光谱仪的系统的研究和开发,用于危险气体和环境气体的开放路径监测。该设备没有活动部件,设计用于无人操作。实验室测试已成功地在1米测试电池中检测到低至1.0 ppm的存在并进行区分。米的水平。系统的实时响应允许使用最大熵模型来预测气体泄漏的大小和位置。对露天气体释放的初步现场测试已经证实了这一点。该仪器的多气体特性允许在环境监测方面的其他可能应用。
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