A175-0012
Novel, real-time measurements of VOCs and HAPs using a Cavity Ring-Down Spectrometer (CRDS)
Novel, real-time measurements of VOCs and HAPs using a Cavity Ring-Down Spectrometer (CRDS)
Tuesday, 15 December 2020
Poster
Abstract:
Measurements of volatile organic compounds (VOCs) and Hazardous Air Pollutants (HAPs) are important for a wide variety of scientific and industrial disciplines, including indoor and outdoor air quality, process and compliance measurements, as well as community monitoring. Generally, these measurements are performed with expensive laboratory-based mass spectrometers (MS), slow gas chromatographs (GC), non-speciated flame- or photo-ionization detectors, insensitive Fourier transform infrared spectrometers (FTIR), or canister samples. Laser-based spectrometers based upon cavity enhanced techniques like cavity ring-down spectroscopy (CRDS) would in principle provide significant advantages over these methods in sensitivity, speed of response, simplicity, stability, and portability, as has been demonstrated in the last decade for the quantification of simple molecules like carbon dioxide, methane, or ammonia. In this paper we present a novel CRDS instrument based upon a broadband laser source that can in principle span more than a hundred nanometers. We show measurement results from in-house testing and field deployments of a novel ethylene oxide analyzer and early measurement results of BTEX (benzene, toluene, ethylbenzene, and xylene), both at parts per billion and even parts per trillion levels. Though our initial work has focused on measurements of hazardous air pollutants, there is future potential for speciated detection of other VOCs as well as greenhouse gases. These systems can be deployed on a bench-top and/or vehicle, and with per-second measurement intervals, are ideal for correlation with weather data for accurate source attribution. The analyzers are being developed to meet indoor and outdoor air quality requirements and may be deployed near sources (stack or fenceline monitoring) or far from sources (community monitoring).

