Analytical Chemistry · 2019 · 38 citations · 27 references
In-situ monitoring of radiocarbon emissions is challenging due to the lack of a suitable method for sensitive online detection of this isotope. Here we report on a complete system for automatized continuous on-site monitoring of radiocarbon gaseous emissions from nuclear facilities. By combining radiocarbon detection using mid-infrared cavity ring-down spectroscopy and an advanced sampling system, an elevated amount of radiocarbon in an atmospheric-like gas matrix was detected. Radiocarbon was detected in the form of <sup>14</sup>CO<sub>2</sub> after extraction of the carbon dioxide from the air sample. The system is also able to discriminate between radiocarbon in organic or inorganic molecular form by converting <sup>14</sup>CH<sub>4</sub> into <sup>14</sup>CO<sub>2</sub>. This work lays the groundwork for further use of this technology in nuclear facilities for online on-site monitoring of radioactive gaseous emissions as well as future work on in-situ monitoring of atmospheric radiocarbon.
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The HITRAN2016 molecular spectroscopic database
Iouli E. Gordon, Laurence S. Rothman, C. Hill et al. · Journal of Quantitative Spectroscopy and Radiative Transfer · 2017 · 7.9K citations · Full text