Atmospheric Physics and Chemistry Group (APCG)
IMAU
Peer reviewed publications
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2015
- Pathirana, S. L., van der Veen, C., Popa, M. E., and Röckmann, T.: An analytical system for stable isotope analysis on carbon monoxide using continuous-flow isotope-ratio mass spectrometry, Atmos. Meas. Tech., 8, 5315-5324, 10.5194/amt-8-5315-2015, 2015.
- Ammerlaan, B. A. J., Jedynska, A. D., Henzing, J. S., and Holzinger, R.: On a possible bias in elemental carbon measurements with the Sunset thermal/optical carbon analyser caused by unstable laser signal, Atmospheric Environment, 122, 571-576, 2015.
- Timkovsky, J., Chan, A. W. H., Dorst, T., Goldstein, A. H., Oyama, B., and Holzinger, R.: Comparison of advanced offline and in situ techniques of organic aerosol composition measurement during the CalNex campaign, Atmos. Meas. Tech., 8, 5177-5187, 10.5194/amt-8-5177-2015, 2015.
- Chen, Q., Popa, M. E., Batenburg, A. M., and Röckmann, T.: Isotopic signatures of production and uptake of H2 by soil, Atmos. Chem. Phys., 15, 13003-13021, 10.5194/acp-15-13003-2015, 2015.
- Holzinger, R.: PTRwid: A new widget tool for processing PTR-TOF-MS data, Atmospheric Measurement Techniques, 8, 3903-3922, 10.5194/amt-8-3903-2015, 2015.
- Super, I., Vilà-Guerau de Arellano, J., and Krol, M. C.: Cumulative ozone effect on canopy stomatal resistance and the impact on boundary layer dynamics and CO2 assimilation at the diurnal scale: A case study for grassland in the Netherlands, Journal of Geophysical Research: Biogeosciences, 120, 1348-1365, 10.1002/2015JG002996, 2015.
- Sutanto, S. J., Hoffmann, G., Worden, J., Scheepmaker, R. A., Aben, I., and Röckmann, T.: Atmospheric processes governing the changes in water isotopologues during ENSO events from model and satellite measurements, Journal of Geophysical Research: Atmospheres, 120, 6712-6729, 10.1002/2015JD023228, 2015.
- Sperlich, P., Schaefer, H., Mikaloff Fletcher, S. E., Guillevic, M., Lassey, K., Sapart, C. J., Röckmann, T., and Blunier, T.: Carbon isotope ratios suggest no additional methane from boreal wetlands during the rapid Greenland Interstadial 21.2, Global Biogeochemical Cycles, 29, 1962-1976, 2015.
- Laan-Luijkx, I. T., Velde, I. R., Krol, M. C., Gatti, L. V., Domingues, L. G., Correia, C. S. C., Miller, J. B., Gloor, M., Leeuwen, T. T., and Kaiser, J. W.: Response of the Amazon carbon balance to the 2010 drought derived with CarbonTracker South America, Global Biogeochemical Cycles, 29, 1092- 1108, 10.1002/2014GB005082, 2015.
- Detmers, R. G., Hasekamp, O., Aben, I., Houweling, S., Leeuwen, T. T., Butz, A., Landgraf, J., Köhler, P., Guanter, L., and Poulter, B.: Anomalous carbon uptake in Australia as seen by GOSAT, Geophysical Research Letters, 10.1002/2015GL065161, 2015.
- Früchtl, M., Janssen, C., Taraborrelli, D., Gromov, S., and Röckmann, T.: Wavelength-dependent isotope fractionation in visible light O3 photolysis and atmospheric implications, Geophysical Research Letters, 42, 8711-8718, 2015.
- Peltola, O., Hensen, A., Marchesini, L. B., Helfter, C., Bosveld, F. C., van den Bulk, W. C. M., Haapanala, S., van Huissteden, J., Laurila, T., Lindroth, A., Nemits, E., Röckmann, T., Vermeulen, A. T., and Mammarella, I.: Studying the spatial variability of methane flux with five eddy covariance towers of varying height, Agricultural and Forest Meteorology, 214, 456-472, 10.1016/j.agrformet.2015.09.007, 2015.
- Pandey, S., Houweling, S., Krol, M., Aben, I., and Röckmann, T.: On the use of satellite-derived CH4 : CO2 columns in a joint inversion of CH4 and CO2 fluxes, Atmos. Chem. Phys., 15, 8615-8629, doi:10.5194/acp-15-8615-2015, 2015.
- Yue, C., Ciais, P., Cadule, P., Thonicke, K., and van Leeuwen, T. T.: Modelling the role of fires in the terrestrial carbon balance by incorporating SPITFIRE into the global vegetation model ORCHIDEE – Part 2: Carbon emissions and the role of fires in the global carbon balance, Geosci. Model Dev., 8, 1321-1338, doi:10.5194/gmd-8-1321-2015, 2015.
- Stap, F. A., Hasekamp, O. P., and Röckmann, T.: Sensitivity of PARASOL multi-angle photopolarimetric aerosol retrievals to cloud contamination, Atmospheric Measurement Techniques, 8, 1287-1301, 2015.
- Houweling, S., Baker, D., Basu, S., Boesch, H., Butz, A., Chevallier, F., Deng, F., Dlugokencky, E. J., Feng, L., and Ganshin, A.: An inter-comparison of inverse models for estimating sources and sinks of CO2 using GOSAT measurements, Journal of Geophysical Research: Atmospheres, 120, 5253–5266, 10.1002/2014JD022962, 2015.
- Früchtl, M., Janssen, C., and Röckmann, T.: Experimental study on isotope fractionation effects in visible photolysis of O3 and in the O+O3 odd oxygen sink reaction, Journal of Geophysical Research: Atmospheres, 120, 4398–4416, 10.1002/2014JD022944, 2015.
- Barbaro, E., Krol, M. C., and de Arellano, J. V.-G.: Numerical simulation of the interaction between ammonium nitrate aerosol and convective boundary-layer dynamics, Atmospheric Environment, 105, 202-211, doi:10.1016/j.atmosenv.2015.01.048, 2015.
- Barbaro, E., Krol, M. C., and de Arellano, J. V.-G.: Numerical simulation of the interaction between ammonium nitrate aerosol and convective boundary-layer dynamics, Atmospheric Environment, 105, 202-211, doi:10.1016/j.atmosenv.2015.01.048, 2015.
- Bândă, N., Krol, M., Noije, T., Weele, M., Williams, J. E., Sager, P. L., Niemeier, U., Thomason, L., and Röckmann, T.: The effect of stratospheric sulfur from Mount Pinatubo on tropospheric oxidizing capacity and methane, Journal of Geophysical Research: Atmospheres, 120, 1202-1220, doi:10.1002/2014JD022137, 2015.
- Allin, S. J., Laube, J. C., Witrant, E., Kaiser, J., McKenna, E., Dennis, P., Mulvaney, R., Capron, E., Martinerie, P., Röckmann, T., Blunier, T., Schwander, J., Fraser, P. J., Langenfelds, R. L., and Sturges, W. T.: Chlorine isotope composition in chlorofluorocarbons CFC-11, CFC-12 and CFC-113 in firn, stratospheric and tropospheric air, Atmospheric Chemistry and Physics, 15, 6867-6877, doi:10.5194/acp-15-6867-2015, 2015.
- Khdhiri, M., Hesse, L., Popa, M. E., Quiza, L., Lalonde, I., Meredith, L. K., Röckmann, T., Constant, P.: Soil carbon content and relative abundance of high affinity H2-oxidizing bacteria predict atmospheric H2 soil uptake activity better than soil microbial community composition, Soil Biol. Biochem., 85, 1-9, doi:10.1016/j.soilbio.2015.02.030, 2015.
- Popa, M. E., Segers, A. J., Denier van der Gon, H. A. C., Krol, M. C., Visschedijk, A. J. H., Schaap, M., Röckmann, T.: Impact of a future H2 transportation on atmospheric pollution in Europe, Atmospheric Environment, 113, 208-222, doi:10.1016/j.atmosenv.2015.03.022, 2015.
- Sutanto, S. J., Hoffmann, G., Scheepmaker, R. A., Worden, J., Houweling, S., Yoshimura, K., Aben, I., Röckmann, T.: Global-scale remote sensing of water isotopologues in the troposphere: representation of first-order isotope effects, Atmos. Meas. tech., 8, 999-1019,doi:10.5194/amt-8-999-2015, 2015.
- Mrozek, D. J., van der Veen, C., Kliphuis, M., Kaiser, J., Wiegel, A. A., and Röckmann, T.: Continuous-flow IRMS technique for determining the 17O excess of CO2 using complete oxygen isotope exchange with cerium oxide, Atmos. Meas. Tech., 8, 811-822, doi:10.5194/amt-8-811-2015, 2015.
- Egger, M., Rasigraf, O., Sapart, C. J., Jilbert, T., Jetten, M. S. M., Röckmann, T., Van der Veen, C., Bândă, N., Kartal, B., Ettwig, K. F., and Slomp, C. P.: Iron-mediated anaerobic oxidation of methane in brackish coastal sediments, Environmental Science & Technology, 49, 277-283, 10.1021/es503663z, 2015.
- Timkovsky, J., Dusek, U., Henzing, J.S., Kuipers, T.L., Röckmann, T., and Holzinger, R.: Offline thermal-desorption proton-transfer-reaction mass spectrometry to study composition of organic aerosol, J. Aerosol Sci., 79, 1-14, doi:10.1016/j.jaerosci.2014.08.010, 2015.
- Bergamaschi, P., Corazza, M., Karstens, U., Athanassiadou, M., Thompson, R. L., Pison, I., Manning, A. J., Bousquet, P., Segers, A., Vermeulen, A. T., Janssens-Maenhout, G., Schmidt, M., Ramonet, M., Meinhardt, F., Aalto, T., Haszpra, L., Moncrieff, J., Popa, M. E., Lowry, D., Steinbacher, M., Jordan, A., O'Doherty, S., Piacentino, S., and Dlugokencky, E.: Top-down estimates of European CH4 and N2O emissions based on four different inverse models, Atmospheric Chemistry and Physics, 15, 715-736, doi:10.5194/acp-15-715-2015, 2015.
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