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Articles

Implication of weekly and diurnal 14C calibration on hourly estimates of CO-based fossil fuel CO2 ata moderately polluted site in southwestern Germany

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Pages 512-520 | Received 21 Dec 2009, Accepted 17 Jul 2010, Published online: 18 Jan 2017

References

  • Bakwin, P., Hurst, D., Tans, P. and Elkins, J. 1997. Anthropogenic sources of halocarbons, sulfurhexafluoride, carbon monoxide and methane in the southeastern United States. J. Geophys. Res. 102(D13), 15915–15925.
  • Bernhardt, E. S., Barber, J. J., Pippen, J. S., Taneva, L., Andrews, J. A. and co-authors. 2006. Long-term effects of free air CO2 en-richment (FACE) on soil respiration. Biogeochemistiy. 77, 91-116, doi:10.1007/s10533-005-1062-0.
  • EDGAR. 2009. Emission Database for Global Atmospheric Re-search (EDGAR), European Commission, Joint Research Centre (JRC)Netherlands Environmental Assessment Agency (PBL), Re-lease version 4.0. http://edgar.jrc.ec.europe.eu.
  • Friedrich, U., Freibauer, A., Gallmann, E., Giannouli, M., Koch, D. and co-authors. 2003. Temporal and spatial resolution of greenhouse gas emissions in Europe. Discussion Paper. http://carboeurope.ier.uni-stuttgart.de.
  • Gamnitzer, U., Karstens, U., Kromer, B., Neubert, R. E. M., Meijer, H. and co-authors. 2006. Carbon monoxide: a quantitative tracer for fossil fuel CO2? J. Geophys. Res. 111, D22302, doi:10.1029/2005JD00696.
  • Geels, C., Gloor, M., Ciais, P., Bousquet, P., Peylin, P. and co-authors. 2006. Comparing atmospheric transport models for future regional inversions over Europe. Part 1: Mapping the CO2 atmospheric signals. Atmos. Chem. Phys. Discuss. 6, 3709-3756.
  • GLOBALVIEW-CO2: Cooperative Atmospheric Data Integration Project -Carbon Dioxide. CD-ROM, NOAA ESRL, Boulder, Colorado [Also available on Internet via anonymous HP to ftp.cmdl.noaa.gov, Path: ccg/co2/GLOBALV] IEW1, 2009.
  • Griffin, R., Chen, J., Carmody, K. S., Vutukuru, S. and Dabdub, D. 2007.Contribution of gas phase oxidation of volatile or-ganic compounds to atmospheric carbon monoxide levels in two areas of the United States. J. Geophys. Res. 112, D10517, doi:10.1029/2006JD007602.
  • Hammer, S., Vogel, E, Kaul, M. and Levin, I. 2009. The H2/C0 ra-tio of emissions from combustion sources: comparison of top-down with bottom-up measurements in southwest Germany. Tellus. 61B, 547–555, doi:10.1111/j.1600-0889.2009.00418.x.
  • IER 2008. Emission data. http://carboeuropeletuni-stuttgart.de/.
  • Kromer, B. and Miinnich, K. 0. 1992. CO2 gas proportional counting in Radiocarbon dating -review and perspective. In: Radiocarbon After Four Decades (eds R.E. Taylor, A. Long and R.S. Kra). Springer-Verlag, New York, 184-197.
  • Krystek, M. and Anton, M. 2007. A weighted total least-squares algo-rithm for fitting a straight line. Meas. Sci. TechnoL 18, 3438–3442, doi:10.1088/0957-0233/18/11/025.
  • Kühlwein, J., Wickert, B., Trunkmiiller, A., Theloke, J. and Friedrich, R. 2002. Emission modelling in high spatial and temporal resolution and calculation of pollutant concentrations for comparisons with measured concentrations. Atmos. Environment. 36, 7-18, doi:10.1016/s1352-2310(02)00209-1.
  • Levin, I., Miinnich, K. O. and Weiss, W. 1980. The effect of anthro-pogenic CO2 and 14C sources on the distribution of 14CO2 in the atmosphere. Radiocarbon. 22, 379-391.
  • Levin, I., Kromer, B., Schmidt, M. and Sartorius, H. 2003. A novel approach for independent budgeting of fossil fuels CO2 over Eu-rope by 14CO2 observations. Geophys. Res. Lett. 30 (23), 2194, doi:10.1029/2003GL018477.
  • Levin, I. and Karstens, U. 2007a. Quantifying fossil fuel CO2 over Europe. In: Observing the Continental Scale Greenhouse Gas Balance of Europe (eds A. J. Dolman, A. Freibauer and R. Valentini). Springer-Verlag, Heidelberg.
  • Levin, I. and Karstens, U. 2007b. Inferring high-resolution fossil fuel CO2 records at continental sites from combined 14CO2 and CO ob-servations. Tellus. 59B(2), 245–250.
  • Levin, I. and Rodenbeck, C. 2008. Can the envisaged reductions of fossil fuel CO2 emissions be detected by atmospheric observations? Natur-wissenschaften. 95(3), 203–208, doi:10.1007/s00114-007-0313-4.
  • Levin, I., Hammer, S., Kromer, B. and Meinhardt, E. 2008. Radiocarbon observations in atmospheric CO2: determining fossil fuel CO2 over Europe using Jungfraujoch observations as background. Sci. Total. Environ. 391, 211-216, doi:10.1016/j.scitotenv.2007.10.019.
  • Levin, I., Naegler, T., Kromer, B., Cuevas, E., Diehl, M. and co-authors. 2010. Observations and modelling of the global distribu-tion and long-term trend of atmospheric 14CO2. Tellus. 62B, 26-46, doi:10.1111/j.1600-0889.2009.00446.x.
  • LUBW. 2006. Luftschadstoffemissionskataster Baden-WUrttemberg 2004, Landesanstalt für Umwelt, Messungen und Naturschutz Baden-Wurttemberg, www.lubw.baden-württemberg.de.
  • LUBW. 2009. Luftschadstoffemissionskataster Baden-WUrttemberg 2006, Landesanstalt für Umwelt, Messungen und Naturschutz Baden-Wurttemberg, www.lubw.baden-württemberg.de.
  • Messager, C., Schmidt, M., Ramonet, M., Bousquet, P., Simmonds, P. and co-authors. 2008. Ten years of CO2, CH4, CO and N20 fluxes over Western Europe inferred from atmospheric measure-ments at Mace Head, Ireland. Atmos. Chem. Phys. Discuss. 8, 1191-1237.
  • Nakazawa, T., Ishizawa, M., Higuchi, K. and Trivett, N. B. A. 1997. Two curve fitting methods applied to CO2 flask data. Environmetrics. 8, 197-218.
  • Neubert, R. E. M., Spijkervet, L. L., Schut, J. K., Been, H. A. and Meijer, H. A. J. 2004. A computer-controlled continuous air drying and flask sampling system. J. Atmos. Oceanic TechnoL 21, 651-659.
  • Peylin, P., Houweling, S., Krol, M. C., Karstens, U., Rodenbeck, C. and co-authors. 2009. Importance of fossil fuel emission uncertainties over Europe for CO2 modeling: model intercomparison. Atmos. Chem. Phys. Discuss. 9, 7457-7503.
  • Potosnak, M J., Wofsy, S. C., Denning, A. S., Conway, T. J., Munger, J. W. and co-authors. 1999. Influence of biotic exchange and com-bustion sources on atmospheric CO2 concentrations in New England from observations at a forest flux tower. J. Geophys. Res. 104, 9561-9569.
  • Rivier, L., Ciais, P., Hauglustaine, D. A., Bakwin, P., Bousquet, P. and co-authors. 2006. Evaluation of SF6, C2 C14 and CO to approximate fossil fuel CO2 in the Northern Hemisphere using a chemistry transport model. J. Geophys. Res. 111, D16311, doi:10.1029/2005JD006725.
  • Subke, J.-A., Reichstein, M. and Tenhunen, J. D. 2003. Explaining tem-poral variations in soil CO2 efflux in a mature spruce forest in Southern Germany. Soil Biol. Biochem. 35, 1467-1483, doi:10.1016/50038-0717(03)00241-4.
  • Stat. Landesamt, B.W. 2003. Quellbezogenes Emission 1990 und 1995 nach Emittentengruppen. (available at: http://www.statistik.baden-wuerttemberg.de).
  • Stat. Landesamt, B.W. 2009. Quellbezogenes Emission 1990, 1995, 2006 und 2007 nach Emittentengruppen. (available at: http://www.statistik.baden-wuerttemberg.de).
  • Turnbull, J. C., Miller, J. B., Lehman, S. J., Tans, P. P., Sparks, R. J. and co-authors. 2006. Comparison of 14CO2, CO, and SF6 as tracers for recently added fossil fuel CO2 in the atmosphere and implications for biological CO2 exchange. Geophys. Res. Lett. 33, L01817, doi: 10.1029/2005GL024213.
  • Zellweger, C., Hiiglin, C., Klausen, J., Steinbacher, M., Vollmer, M. and co-authors. 2009 Inter-comparison of four different carbon monox-ide measurement techniques and evaluation of the long-term car-bon monoxide time series of Jungfraujoch. Atmos. Chem. Phys. 9, 3491-3503.