The detection limits for NO and NO2 in turbine exhausts by nonintrusive monitoring have to be improved. Multipass mode Fourier-transform infrared (FTIR) absorption spectrometry and use of a White mirror system were found from a sensitivity study with spectra simulations in the mid-infrared to be essential for the retrieval of NO2 abundances. A new White mirror system with a parallel infrared beam was developed and tested successfully with a commercial FTIR spectrometer in different turbine test beds. The minimum detection limits for a typical turbine plume of 50 cm in diameter are approximately 6 parts per million (ppm) for NO and 9 ppm for NO2 (as well 100 ppm for CO2 and 4 ppm for CO)
The automated quantification of three greenhouse gases, ammonia, methane and nitrous oxide, in the v...
Industrial hygienists and other health and safety professionals rely on air monitoring to assess occ...
Much attention has been paid to applying Remote Sensing Fourier Transform Infrared (RS-FTIR) systems...
Because of the worldwide growth in air traffic and its increasing effects on the atmospheric environ...
The quantitative analysis of Open-Path Fourier transform infrared (FTIR) spectra has been investigat...
Infrared spectrometry is a versatile basis to analyse greenhouse gases in the atmosphere. A multicom...
To interpret infrared spectra of atmospheric measurements, a multi-component air pollution software ...
The detection and identification of toxic chemicals released in the environment is important for pub...
Fourier transform infrared spectroscopy is an efficient technique for the detection and quantificati...
To evaluate the influence of air traffic on the upper and lower troposphere, one must find an effect...
FT-IR emission spectrometry is used to detect the thermal radiation of warm exhausts, yielding in on...
In the framework of a European research project, ONERA and DLR have studied the applicability of inf...
FT-IR emission spectrometry is used to detect the thermal radiation of warm exhausts, yielding in on...
Fourier Transform Infrared (FTIR) spectroscopy is a well-established technique for monitoring air po...
In this study, a strategy was developed for in situ, non-intrusive, and quantitative measurement of ...
The automated quantification of three greenhouse gases, ammonia, methane and nitrous oxide, in the v...
Industrial hygienists and other health and safety professionals rely on air monitoring to assess occ...
Much attention has been paid to applying Remote Sensing Fourier Transform Infrared (RS-FTIR) systems...
Because of the worldwide growth in air traffic and its increasing effects on the atmospheric environ...
The quantitative analysis of Open-Path Fourier transform infrared (FTIR) spectra has been investigat...
Infrared spectrometry is a versatile basis to analyse greenhouse gases in the atmosphere. A multicom...
To interpret infrared spectra of atmospheric measurements, a multi-component air pollution software ...
The detection and identification of toxic chemicals released in the environment is important for pub...
Fourier transform infrared spectroscopy is an efficient technique for the detection and quantificati...
To evaluate the influence of air traffic on the upper and lower troposphere, one must find an effect...
FT-IR emission spectrometry is used to detect the thermal radiation of warm exhausts, yielding in on...
In the framework of a European research project, ONERA and DLR have studied the applicability of inf...
FT-IR emission spectrometry is used to detect the thermal radiation of warm exhausts, yielding in on...
Fourier Transform Infrared (FTIR) spectroscopy is a well-established technique for monitoring air po...
In this study, a strategy was developed for in situ, non-intrusive, and quantitative measurement of ...
The automated quantification of three greenhouse gases, ammonia, methane and nitrous oxide, in the v...
Industrial hygienists and other health and safety professionals rely on air monitoring to assess occ...
Much attention has been paid to applying Remote Sensing Fourier Transform Infrared (RS-FTIR) systems...