Articles | Volume 10, issue 21
https://doi.org/10.5194/acp-10-10691-2010
© Author(s) 2010. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/acp-10-10691-2010
© Author(s) 2010. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
CO2, δO2/N2 and APO: observations from the Lutjewad, Mace Head and F3 platform flask sampling network
I. T. van der Laan-Luijkx
Centre for Isotope Research (CIO), University of Groningen, Groningen, the Netherlands
currently at: Climate and Environmental Physics, Physics Institute, University of Bern, Bern, Switzerland
U. Karstens
Max Planck Institute for Biogeochemistry, Jena, Germany
J. Steinbach
Max Planck Institute for Biogeochemistry, Jena, Germany
C. Gerbig
Max Planck Institute for Biogeochemistry, Jena, Germany
C. Sirignano
Centre for Isotope Research (CIO), University of Groningen, Groningen, the Netherlands
currently at: CIRCE, Department of Environmental Sciences, Second University of Napels, Caserta, Italy
R. E. M. Neubert
Centre for Isotope Research (CIO), University of Groningen, Groningen, the Netherlands
S. van der Laan
Centre for Isotope Research (CIO), University of Groningen, Groningen, the Netherlands
currently at: Climate and Environmental Physics, Physics Institute, University of Bern, Bern, Switzerland
H. A. J. Meijer
Centre for Isotope Research (CIO), University of Groningen, Groningen, the Netherlands
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Cited
12 citations as recorded by crossref.
- AN INDEPENDENT ASSESSMENT OF UNCERTAINTY FOR RADIOCARBON ANALYSIS WITH THE NEW GENERATION HIGH-YIELD ACCELERATOR MASS SPECTROMETERS A. Aerts-Bijma et al. 10.1017/RDC.2020.101
- Two decades of flask observations of atmospheric <i>δ</i>(O<sub>2</sub>∕N<sub>2</sub>), CO<sub>2</sub>, and APO at stations Lutjewad (the Netherlands) and Mace Head (Ireland), and 3 years from Halley station (Antarctica) L. Nguyen et al. 10.5194/essd-14-991-2022
- Comment on “The phase relation between atmospheric carbon dioxide and global temperature” Humlum et al. [Glob. Planet. Change 100: 51–69.]: Isotopes ignored Z. Kern & M. Leuenberger 10.1016/j.gloplacha.2013.07.002
- The CO<sub>2</sub> release and Oxygen uptake from Fossil Fuel Emission Estimate (COFFEE) dataset: effects from varying oxidative ratios J. Steinbach et al. 10.5194/acp-11-6855-2011
- Highly-Precise Measurements of Ambient Oxygen Using Near-Infrared Cavity-Enhanced Laser Absorption Spectrometry M. Gupta 10.1021/ac301790p
- Atmospheric CO<sub>2</sub>, δ(O<sub>2</sub>/N<sub>2</sub>) and δ<sup>13</sup>CO<sub>2</sub> measurements at Jungfraujoch, Switzerland: results from a flask sampling intercomparison program I. van der Laan-Luijkx et al. 10.5194/amt-6-1805-2013
- Analysis of ΔO<sub>2</sub>/ΔCO<sub>2</sub> ratios for the pollution events observed at Hateruma Island, Japan C. Minejima et al. 10.5194/acp-12-2713-2012
- O<sub>2</sub>:CO<sub>2</sub> exchange ratios observed in a cool temperate deciduous forest ecosystem of central Japan S. Ishidoya et al. 10.3402/tellusb.v65i0.21120
- Detection of CO2 leaks from carbon capture and storage sites with combined atmospheric CO2 and O2 measurements C. van Leeuwen & H. Meijer 10.1016/j.ijggc.2015.07.019
- Atmospheric CO2, δ(O2/N2), APO and oxidative ratios from aircraft flask samples over Fyodorovskoye, Western Russia S. van der Laan et al. 10.1016/j.atmosenv.2014.08.022
- Development of a new high precision continuous measuring system for atmospheric O<sub>2</sub>/N<sub>2</sub> and Ar/N<sub>2</sub> and its application to the observation in Tsukuba, Japan S. Ishidoya & S. Murayama 10.3402/tellusb.v66.22574
- Observation of O2:CO2 exchange ratio for net turbulent fluxes and its application to forest carbon cycles S. Ishidoya et al. 10.1007/s11284-014-1241-3
12 citations as recorded by crossref.
- AN INDEPENDENT ASSESSMENT OF UNCERTAINTY FOR RADIOCARBON ANALYSIS WITH THE NEW GENERATION HIGH-YIELD ACCELERATOR MASS SPECTROMETERS A. Aerts-Bijma et al. 10.1017/RDC.2020.101
- Two decades of flask observations of atmospheric <i>δ</i>(O<sub>2</sub>∕N<sub>2</sub>), CO<sub>2</sub>, and APO at stations Lutjewad (the Netherlands) and Mace Head (Ireland), and 3 years from Halley station (Antarctica) L. Nguyen et al. 10.5194/essd-14-991-2022
- Comment on “The phase relation between atmospheric carbon dioxide and global temperature” Humlum et al. [Glob. Planet. Change 100: 51–69.]: Isotopes ignored Z. Kern & M. Leuenberger 10.1016/j.gloplacha.2013.07.002
- The CO<sub>2</sub> release and Oxygen uptake from Fossil Fuel Emission Estimate (COFFEE) dataset: effects from varying oxidative ratios J. Steinbach et al. 10.5194/acp-11-6855-2011
- Highly-Precise Measurements of Ambient Oxygen Using Near-Infrared Cavity-Enhanced Laser Absorption Spectrometry M. Gupta 10.1021/ac301790p
- Atmospheric CO<sub>2</sub>, δ(O<sub>2</sub>/N<sub>2</sub>) and δ<sup>13</sup>CO<sub>2</sub> measurements at Jungfraujoch, Switzerland: results from a flask sampling intercomparison program I. van der Laan-Luijkx et al. 10.5194/amt-6-1805-2013
- Analysis of ΔO<sub>2</sub>/ΔCO<sub>2</sub> ratios for the pollution events observed at Hateruma Island, Japan C. Minejima et al. 10.5194/acp-12-2713-2012
- O<sub>2</sub>:CO<sub>2</sub> exchange ratios observed in a cool temperate deciduous forest ecosystem of central Japan S. Ishidoya et al. 10.3402/tellusb.v65i0.21120
- Detection of CO2 leaks from carbon capture and storage sites with combined atmospheric CO2 and O2 measurements C. van Leeuwen & H. Meijer 10.1016/j.ijggc.2015.07.019
- Atmospheric CO2, δ(O2/N2), APO and oxidative ratios from aircraft flask samples over Fyodorovskoye, Western Russia S. van der Laan et al. 10.1016/j.atmosenv.2014.08.022
- Development of a new high precision continuous measuring system for atmospheric O<sub>2</sub>/N<sub>2</sub> and Ar/N<sub>2</sub> and its application to the observation in Tsukuba, Japan S. Ishidoya & S. Murayama 10.3402/tellusb.v66.22574
- Observation of O2:CO2 exchange ratio for net turbulent fluxes and its application to forest carbon cycles S. Ishidoya et al. 10.1007/s11284-014-1241-3
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