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  SOMPROF: A vertically explicit soil organic matter model

Braakhekke, M. C., Beer, C., Hoosbeek, M. R., Reichstein, M., Kruijt, B., Schrumpf, M., et al. (2011). SOMPROF: A vertically explicit soil organic matter model. Ecological Modelling, 222(10), 1712-1730. doi:10.1016/j.ecolmodel.2011.02.015.

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 Creators:
Braakhekke, Maarten C.1, Author           
Beer, Christian1, Author           
Hoosbeek, Marcel R., Author
Reichstein, Markus1, Author           
Kruijt, Bart, Author
Schrumpf, Marion2, Author           
Kabat, Pavel, Author
Affiliations:
1Research Group Biogeochemical Model-data Integration, Dr. M. Reichstein, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497760              
2Soil and Ecosystem Processes, Dr. M. Schrumpf, Department Biogeochemical Processes, Prof. S. E. Trumbore, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497776              

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Free keywords: Soil organic carbon model Vertical soil organic matter profile Surface organic layer Soil organic matter transport Bioturbation Dissolved organic matter transport
 Abstract: Most current soil organic matter (SOM) models represent the soil as a bulk without specification of the vertical distribution of SOM in the soil profile. However, the vertical SOM profile may be of great importance for soil carbon cycling, both on short (hours to years) time scale, due to interactions with the soil temperature and moisture profile, as well as on long (years to centuries) time scale because of depth-specific stabilization mechanisms of organic matter. It is likely that a representation of the SOM profile and surface organic layers in SOM models can improve predictions of the response of land surface fluxes to climate and environmental variability. Although models capable of simulating the vertical SOM profile exist, these were generally not developed for large scale predictive simulations and do not adequately represent surface organic horizons. We present SOMPROF, a vertically explicit SOM model, designed for implementation into large scale ecosystem and land surface models. The model dynamically simulates the vertical SOM profile and organic layer stocks based on mechanistic representations of bioturbation, liquid phase transport of organic matter, and vertical distribution of root litter input. We tested the model based on data from an old growth deciduous forest (Hainich) in Germany, and performed a sensitivity analysis of the transport parameters, and the effects of the vertical SOM distribution on temporal variation of heterotrophic respiration. Model results compare well with measured organic carbon profiles and stocks. SOMPROF is able to simulate a wide range of SOM profiles, using parameter values that are realistic compared to those found in previous studies. Results of the sensitivity analysis show that the vertical SOM distribution strongly affects temporal variation of heterotrophic respiration due to interactions with the soil temperature and moisture profile.

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 Dates: 2011
 Publication Status: Issued
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 Identifiers: DOI: 10.1016/j.ecolmodel.2011.02.015
Other: BGC1487
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Title: Ecological Modelling
Source Genre: Journal
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Publ. Info: Amsterdam : Elsevier
Pages: - Volume / Issue: 222 (10) Sequence Number: - Start / End Page: 1712 - 1730 Identifier: CoNE: https://pure.mpg.de/cone/journals/resource/954925511442
ISSN: 0304-3800