Imaging differential optical absorption spectroscopy
A camera that measures what comes out of a flare.
Imaging DOAS points a spectrometer at a plume from a few hundred meters away and builds a two-dimensional picture of the gas inside it. Add wind data and we convert that picture into an emission rate in kilograms per hour, from outside the fence, without sampling the stack.
Fifty spectrometers in one exposure
Conventional open-path DOAS gives one concentration averaged over one light path. Imaging DOAS treats each of 50 detector rows as a separate spectrometer, so a single exposure returns 50 stacked measurements up the height of the plume. Sweep the mirror sideways and those columns build into an image.
01
Scattered sunlight is the light source
A 45° elliptical mirror collects skylight coming from behind the plume, so you need no transmitter or reflector on the far side. The instrument works on sources you cannot get near.
02
Absorption identifies the gas
Formaldehyde, SO₂, NO₂ and others each absorb ultraviolet wavelengths in their own pattern. We fit those patterns against reference spectra to get a differential slant column density for every row, each with its own error.
03
Geometry and wind convert it to a flux
We sum the column densities into a vertical slice through the plume and subtract the upwind background. Distance, wind speed and wind direction then turn that slice into an emission rate in kilograms per hour.
Measuring something you can’t reach?
Tell us the source and the compound. We’ll tell you whether Imaging DOAS is the right instrument for it.