Meeting Abstract

Modeling greenhouse gas emissions (CO2, N2O, CH4) from managed arable soils with a fully coupled hydrology-biogeochemical modeling system simulating water and nutrient transport and associated carbon and nitrogen cycling at catchment scale


Authors listKlatt, S.; Haas, E.; Kraus, D.; Kiese, R.; Butterbach-Bahl, K.; Kraft, P.; Plesca, I.; Breuer, L.; Zhu, B.; Zhou, M.; Zhang, W.; Zheng, X.; Wlotzka, M.; Heuveline, V.

Publication year2014

Pages15923-

JournalGeophysical Research Abstracts

Volume number16

URLhttps://meetingorganizer.copernicus.org/EGU2014/EGU2014-15923.pdf

PublisherEuropean Geophysical Society



Authors/Editors




Citation Styles

Harvard Citation styleKlatt, S., Haas, E., Kraus, D., Kiese, R., Butterbach-Bahl, K., Kraft, P., et al. (2014) Modeling greenhouse gas emissions (CO2, N2O, CH4) from managed arable soils with a fully coupled hydrology-biogeochemical modeling system simulating water and nutrient transport and associated carbon and nitrogen cycling at catchment scale, Geophysical Research Abstracts, 16, p. 15923. https://meetingorganizer.copernicus.org/EGU2014/EGU2014-15923.pdf

APA Citation styleKlatt, S., Haas, E., Kraus, D., Kiese, R., Butterbach-Bahl, K., Kraft, P., Plesca, I., Breuer, L., Zhu, B., Zhou, M., Zhang, W., Zheng, X., Wlotzka, M., & Heuveline, V. (2014). Modeling greenhouse gas emissions (CO2, N2O, CH4) from managed arable soils with a fully coupled hydrology-biogeochemical modeling system simulating water and nutrient transport and associated carbon and nitrogen cycling at catchment scale. Geophysical Research Abstracts. 16, 15923. https://meetingorganizer.copernicus.org/EGU2014/EGU2014-15923.pdf


Last updated on 2025-21-05 at 16:05