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First investigation and absolute calibration of clumped isotopes in N2 O by mid-infrared laser spectroscopy.
Kantnerová, Kristýna; Yu, Longfei; Zindel, Daniel; Zahniser, Mark S; Nelson, David D; Tuzson, Béla; Nakagawa, Mayuko; Toyoda, Sakae; Yoshida, Naohiro; Emmenegger, Lukas; Bernasconi, Stefano M; Mohn, Joachim.
Afiliação
  • Kantnerová K; Empa, Laboratory for Air Pollution/Environmental Technology, Dübendorf, 8600, Switzerland.
  • Yu L; ETH Zürich, Department of Earth Sciences, Zürich, 8092, Switzerland.
  • Zindel D; Empa, Laboratory for Air Pollution/Environmental Technology, Dübendorf, 8600, Switzerland.
  • Zahniser MS; ETH Zurich, Laboratory of Physical Chemistry, Zürich, 8093, Switzerland.
  • Nelson DD; Aerodyne Research Inc., Center for Atmospheric and Environmental Chemistry, Billerica, MA, 01821, USA.
  • Tuzson B; Aerodyne Research Inc., Center for Atmospheric and Environmental Chemistry, Billerica, MA, 01821, USA.
  • Nakagawa M; Empa, Laboratory for Air Pollution/Environmental Technology, Dübendorf, 8600, Switzerland.
  • Toyoda S; Tokyo Institute of Technology, Earth-Life Science Institute (ELSI), Tokyo, 152-8550, Japan.
  • Yoshida N; Tokyo Institute of Technology, Department of Chemical Science and Engineering, School of Materials and Chemical Technology, Yokohama, 226-8503, Japan.
  • Emmenegger L; Tokyo Institute of Technology, Earth-Life Science Institute (ELSI), Tokyo, 152-8550, Japan.
  • Bernasconi SM; Tokyo Institute of Technology, Department of Chemical Science and Engineering, School of Materials and Chemical Technology, Yokohama, 226-8503, Japan.
  • Mohn J; Empa, Laboratory for Air Pollution/Environmental Technology, Dübendorf, 8600, Switzerland.
Rapid Commun Mass Spectrom ; 34(15): e8836, 2020 Aug 15.
Article em En | MEDLINE | ID: mdl-32430945
ABSTRACT
RATIONALE Unravelling the biogeochemical cycle of the potent greenhouse gas nitrous oxide (N2 O) is an underdetermined problem in environmental sciences due to the multiple source and sink processes involved, which complicate mitigation of its emissions. Measuring the doubly isotopically substituted molecules (isotopocules) of N2 O can add new opportunities to fingerprint and constrain its cycle.

METHODS:

We present a laser spectroscopic technique to selectively and simultaneously measure the eight most abundant isotopocules of N2 O, including three doubly substituted species - so called "clumped isotopes". For the absolute quantification of individual isotopocule abundances, we propose a new calibration scheme that combines thermal equilibration of a working standard gas with a direct mole fraction-based approach.

RESULTS:

The method is validated for a large range of isotopic composition values by comparison with other established methods (laser spectroscopy using conventional isotopic scale and isotope ratio mass spectrometry). Direct intercomparison with recently developed ultrahigh-resolution mass spectrometry shows clearly the advantages of the new laser technique, especially with respect to site specificity of isotopic substitution in the N2 O molecule.

CONCLUSIONS:

Our study represents a new methodological basis for the measurements of both singly substituted and clumped N2 O isotopes. It has a high potential to stimulate future research in the N2 O community by establishing a new class of reservoir-insensitive tracers and molecular-scale insights.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article