In situ and simultaneous measurement of the three most abundant isotopologues of methane using mid-infrared laser absorption spectroscopy is demonstrated. A field-deployable, autonomous platform is realized by coupling a compact quantum cascade laser absorption spectrometer (QCLAS) to a preconcentration unit, called TRace gas EXtractor (TREX). This unit enhances CH4 mole fractions by a factor of up to 500 above ambient levels and quantitatively separates interfering trace gases such as N2O and CO2. The analytical precision of the QCLAS isotope measurement on the preconcentrated (750 ppm, parts-per-million, μmole/mole) methane is 0.1 and 0.5 ‰ for δ13C- and δD-CH4 at 10 min averaging time. Based on replicate measurements of compressed air du...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
Atmospheric methane (CH4) is a strong greenhouse gas that has important chemical impacts on both the...
We have developed a mid‐infrared continuous‐wave quantum cascade laser direct‐absorption spectromete...
In situ and simultaneous measurement of the three most abundant isotopologues of methane using mid-i...
In situ and simultaneous measurement of the three most abundant isotopologues of methane using mid-i...
In situ and simultaneous measurement of the three most abundant isotopologues of methane using mid-i...
High precision analyses of the isotopic composition of methane in ambient air can potentially be use...
An infrared absorption spectrometer has been constructed to measure the stable isotopic composition ...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High precision analyses of the isotopic composition of methane in ambient air can potentially be use...
Rationale The dual isotope ratio analysis, carbon (δ13C value) and hydrogen (δ2H value), of metha...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
Atmospheric methane (CH4) is a strong greenhouse gas that has important chemical impacts on both the...
We have developed a mid‐infrared continuous‐wave quantum cascade laser direct‐absorption spectromete...
In situ and simultaneous measurement of the three most abundant isotopologues of methane using mid-i...
In situ and simultaneous measurement of the three most abundant isotopologues of methane using mid-i...
In situ and simultaneous measurement of the three most abundant isotopologues of methane using mid-i...
High precision analyses of the isotopic composition of methane in ambient air can potentially be use...
An infrared absorption spectrometer has been constructed to measure the stable isotopic composition ...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High precision analyses of the isotopic composition of methane in ambient air can potentially be use...
Rationale The dual isotope ratio analysis, carbon (δ13C value) and hydrogen (δ2H value), of metha...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
High-precision analyses of the isotopic composition of methane in ambient air can potentially be use...
Atmospheric methane (CH4) is a strong greenhouse gas that has important chemical impacts on both the...
We have developed a mid‐infrared continuous‐wave quantum cascade laser direct‐absorption spectromete...