Thermal desorption tube collection system and method
A thermal desorption tube collection system uses a thermoelectric cooler to collect and concentrate gas samples. In some modes, the operation of the cooler is reversed to flow the concentrated sample directly into a separator such as a gas chromatography system. Components resolved in time by a thermal desorption separator accumulate in a sample cell and are analyzed by electromagnetic radiation-based spectroscopic techniques. Also presented are methods for analyzing biogas samples.
1. A sample analysis system comprising:
two thermal desorption tubes configured for a sample collection and sample analysis ping pong arrangement;
at least one heat sink having at least two through holes in which the two thermal desorption tubes are located;
a thermoelectric cooler for cooling a sample collection thermal desorption tube while heating another sample analysis thermal desorption tube by controlling a temperature of the heat sink;
a gas chromatography system for separating a vapor desorbed from the heated thermal desorption tube into components; and
a sample cell for receiving the separated components from the gas chromatography system and electromagnetic radiation for a spectrometric analysis of compounds in the sample cell.
2. The sample analysis system of claim 1 , wherein the spectrometric analysis is FTIR spectrometry.
3. The sample analysis system of claim 1 , further comprising a controller.
4. The sample analysis system of claim 1 , further comprising a first heat sink and a second heat sink disposed at opposite sides of the thermoelectric.
5. The sample analysis system of claim 1 , wherein an input director system selectively couples inputs of the thermal desorption tubes to either a gas to be analyzed or a carrier gas.
6. The sample analysis system of claim 1 , wherein an output director system selectively couples outputs from the thermal desorption tubes to either the gas chromatography system or a vacuum pump.