Literature DB >> 12828335

Evaluation of NO(x) flue gas analyzers for accuracy and their applicability for low-concentration measurements.

Steven Gluck1, Chuck Glenn, Tim Logan, Bac Vu, Mike Walsh, Pat Williams.   

Abstract

The requirements of the Texas State Implementation Plan of the U.S. Clean Air Act for the Houston-Galveston Ozone Nonattainment Area stipulate large reductions in oxides of nitrogen (NO(x)) emissions. A large number of sources at Dow Chemical Co. sites within the nonattainment area may require the addition of continuous emission monitoring systems (CEMS) for online analysis of NO(x), CO, and O2. At the outset of this work, it was not known whether the analyzers could accurately measure NO(x) as low as 2 ppm. Therefore, NO(x) CEMS analyzers from five different companies were evaluated for their ability to reliably measure NO(x) in the 2-20 ppm range. Testing was performed with a laboratory apparatus that accurately simulated different mixtures of flue gas and, on a limited basis, simulated a dual-train sampling system on a gas turbine. The results indicate that this method is a reasonable approach for analyzer testing and reveal important technical performance aspects for accurate NO(x) measurements. Several commercial analyzers, if installed in a CEMS application with sampling conditioning components similar to those used in this study, can meet the U.S. Environmental Protection Agency's measurement data quality requirements for accuracy.

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Year:  2003        PMID: 12828335     DOI: 10.1080/10473289.2003.10466208

Source DB:  PubMed          Journal:  J Air Waste Manag Assoc        ISSN: 1096-2247            Impact factor:   2.235


  1 in total

1.  Modeling and Predicting Heavy-Duty Vehicle Engine-Out and Tailpipe Nitrogen Oxide (NO x ) Emissions Using Deep Learning.

Authors:  Rinav Pillai; Vassilis Triantopoulos; Albert S Berahas; Matthew Brusstar; Ruonan Sun; Tim Nevius; André L Boehman
Journal:  Front Mech Eng       Date:  2022
  1 in total

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