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Simulation of NO and N2O emissions from a spruce forest during a freeze/thaw event using an N-flux submodel from the PnET-N-DNDC model integrated to CoupModel

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  • Norman, Josefine
  • Jansson, Per-Erik
  • Farahbakhshazad, Neda
  • Butterbach-Bahl, Klaus
  • Li, Changsheng
  • Klemedtsson, Leif

Abstract

The amount of nitrogen gases (N2O, NO and N2) emitted from forest soils depends on interactions between soil properties, climatic factors and soil management. To increase the understanding of nitrogen processes in soil ecosystems, two dynamic models, CoupModel (coupled heat and mass transfer model for soil–plant–atmosphere systems) and the denitrification–decomposition (DNDC) model were selected. Both are dynamic models with different submodels for soil, vegetation, hydrology and climate system. CoupModel has a higher degree of detail on soil physical and abiotic components, whereas the DNDC model contains details of microbiological processes involved in production of nitrogen gases. To improve the previous simple submodel of nitrogen emission in CoupModel, we included a submodel corresponding to the forest version of DNDC containing photosynthesis/evapotranspiration-nitrogen (PnET-N-DNDC model).

Suggested Citation

  • Norman, Josefine & Jansson, Per-Erik & Farahbakhshazad, Neda & Butterbach-Bahl, Klaus & Li, Changsheng & Klemedtsson, Leif, 2008. "Simulation of NO and N2O emissions from a spruce forest during a freeze/thaw event using an N-flux submodel from the PnET-N-DNDC model integrated to CoupModel," Ecological Modelling, Elsevier, vol. 216(1), pages 18-30.
  • Handle: RePEc:eee:ecomod:v:216:y:2008:i:1:p:18-30
    DOI: 10.1016/j.ecolmodel.2008.04.012
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    Cited by:

    1. Wu, Si Hong & Jansson, Per-Erik & Kolari, Pasi, 2011. "Modeling seasonal course of carbon fluxes and evapotranspiration in response to low temperature and moisture in a boreal Scots pine ecosystem," Ecological Modelling, Elsevier, vol. 222(17), pages 3103-3119.
    2. He, Hongxing & Jansson, Per-Erik & Svensson, Magnus & Meyer, Astrid & Klemedtsson, Leif & Kasimir, Åsa, 2016. "Factors controlling Nitrous Oxide emission from a spruce forest ecosystem on drained organic soil, derived using the CoupModel," Ecological Modelling, Elsevier, vol. 321(C), pages 46-63.
    3. Ouyang, Wei & Qi, Shasha & Hao, Fanghua & Wang, Xuelei & Shan, Yushu & Chen, Siyang, 2013. "Impact of crop patterns and cultivation on carbon sequestration and global warming potential in an agricultural freeze zone," Ecological Modelling, Elsevier, vol. 252(C), pages 228-237.
    4. Conrad, Yvonne & Fohrer, Nicola, 2016. "Simulating impacts of silage maize (Zea mays) in monoculture and undersown with annual grass (Lolium perenne L.) on the soil water balance in a sandy-humic soil in Northwest Germany," Agricultural Water Management, Elsevier, vol. 178(C), pages 52-65.
    5. Zhang, Kerou & Peng, Changhui & Zhu, Qiuan & Li, Mingxu & Yan, Zhongqing & Li, Meng & Yan, Liang & Zhang, Xiaodong & Wang, Jinzhi & Li, Yong & Kang, Enze & Song, Hanxiong & Kang, Xiaoming, 2022. "Estimating natural nitrous oxide emissions from the Qinghai–Tibetan Plateau using a process-based model: Historical spatiotemporal patterns and future trends," Ecological Modelling, Elsevier, vol. 466(C).

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