Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)

<p>Simulation models are tools commonly used to predict changes in soil carbon stocks. Prior validation is essential, however, for determining the reliability and applicability of model results. In this study, the process-based biogeochemical model MONICA (Model of Nitrogen and Carbon dynamics...

Full description

Bibliographic Details
Main Authors: K. Aiteew, J. Rouhiainen, C. Nendel, R. Dechow
Format: Article
Language:English
Published: Copernicus Publications 2024-02-01
Series:Geoscientific Model Development
Online Access:https://gmd.copernicus.org/articles/17/1349/2024/gmd-17-1349-2024.pdf
_version_ 1797306722740600832
author K. Aiteew
J. Rouhiainen
C. Nendel
C. Nendel
R. Dechow
author_facet K. Aiteew
J. Rouhiainen
C. Nendel
C. Nendel
R. Dechow
author_sort K. Aiteew
collection DOAJ
description <p>Simulation models are tools commonly used to predict changes in soil carbon stocks. Prior validation is essential, however, for determining the reliability and applicability of model results. In this study, the process-based biogeochemical model MONICA (Model of Nitrogen and Carbon dynamics on Agro-ecosystems) was evaluated with respect to soil organic carbon (SOC), using long-term monitoring data from 46 German agricultural sites. A revision and parameterisation of equations, encompassing crop- and fertiliser-specific C contents and the abiotic factors of soil temperature, soil water and clay content, were undertaken and included in the model. The modified version was also used for a Morris elementary effects screening method, which confirmed the importance of environmental and management factors to the model's performance. The model was then calibrated by means of Bayesian inference, using the Metropolis–Hastings algorithm. The performance of the MONICA model was compared with that of five established carbon turnover models (CCB, CENTURY, C-TOOL, ICBM and RothC). The original MONICA model systematically overestimated SOC decomposition rates and produced on average a <span class="inline-formula">∼17</span> % greater mean absolute error (MAE) than the other models. The modification and calibration significantly improved its performance, reducing the MAE by <span class="inline-formula">∼30</span> %. Consequently, MONICA outperformed CENTURY, CCB and C-TOOL, and produced results comparable with ICBM and RothC. Use of the modified model allowed mostly adequate reproduction of site-specific SOC stocks, while the availability of a nitrogen, plant growth and water submodel enhanced its applicability when compared with models that only describe carbon dynamics.</p>
first_indexed 2024-03-08T00:45:01Z
format Article
id doaj.art-44c434c89daf4eb3aadfd2bbd136bc65
institution Directory Open Access Journal
issn 1991-959X
1991-9603
language English
last_indexed 2024-03-08T00:45:01Z
publishDate 2024-02-01
publisher Copernicus Publications
record_format Article
series Geoscientific Model Development
spelling doaj.art-44c434c89daf4eb3aadfd2bbd136bc652024-02-15T10:43:09ZengCopernicus PublicationsGeoscientific Model Development1991-959X1991-96032024-02-01171349138510.5194/gmd-17-1349-2024Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)K. Aiteew0J. Rouhiainen1C. Nendel2C. Nendel3R. Dechow4Thünen Institute of Climate-Smart Agriculture, Bundesallee 68, Braunschweig, GermanyThünen Institute of Climate-Smart Agriculture, Bundesallee 68, Braunschweig, GermanyLeibniz Centre for Agricultural Landscape Research (ZALF), Eberswalder Straße 84, Müncheberg, GermanyInstitute of Biochemistry and Biology, University of Potsdam, Am Mühlenberg 3, Potsdam, GermanyThünen Institute of Climate-Smart Agriculture, Bundesallee 68, Braunschweig, Germany<p>Simulation models are tools commonly used to predict changes in soil carbon stocks. Prior validation is essential, however, for determining the reliability and applicability of model results. In this study, the process-based biogeochemical model MONICA (Model of Nitrogen and Carbon dynamics on Agro-ecosystems) was evaluated with respect to soil organic carbon (SOC), using long-term monitoring data from 46 German agricultural sites. A revision and parameterisation of equations, encompassing crop- and fertiliser-specific C contents and the abiotic factors of soil temperature, soil water and clay content, were undertaken and included in the model. The modified version was also used for a Morris elementary effects screening method, which confirmed the importance of environmental and management factors to the model's performance. The model was then calibrated by means of Bayesian inference, using the Metropolis–Hastings algorithm. The performance of the MONICA model was compared with that of five established carbon turnover models (CCB, CENTURY, C-TOOL, ICBM and RothC). The original MONICA model systematically overestimated SOC decomposition rates and produced on average a <span class="inline-formula">∼17</span> % greater mean absolute error (MAE) than the other models. The modification and calibration significantly improved its performance, reducing the MAE by <span class="inline-formula">∼30</span> %. Consequently, MONICA outperformed CENTURY, CCB and C-TOOL, and produced results comparable with ICBM and RothC. Use of the modified model allowed mostly adequate reproduction of site-specific SOC stocks, while the availability of a nitrogen, plant growth and water submodel enhanced its applicability when compared with models that only describe carbon dynamics.</p>https://gmd.copernicus.org/articles/17/1349/2024/gmd-17-1349-2024.pdf
spellingShingle K. Aiteew
J. Rouhiainen
C. Nendel
C. Nendel
R. Dechow
Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)
Geoscientific Model Development
title Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)
title_full Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)
title_fullStr Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)
title_full_unstemmed Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)
title_short Evaluation and optimisation of the soil carbon turnover routine in the MONICA model (version 3.3.1)
title_sort evaluation and optimisation of the soil carbon turnover routine in the monica model version 3 3 1
url https://gmd.copernicus.org/articles/17/1349/2024/gmd-17-1349-2024.pdf
work_keys_str_mv AT kaiteew evaluationandoptimisationofthesoilcarbonturnoverroutineinthemonicamodelversion331
AT jrouhiainen evaluationandoptimisationofthesoilcarbonturnoverroutineinthemonicamodelversion331
AT cnendel evaluationandoptimisationofthesoilcarbonturnoverroutineinthemonicamodelversion331
AT cnendel evaluationandoptimisationofthesoilcarbonturnoverroutineinthemonicamodelversion331
AT rdechow evaluationandoptimisationofthesoilcarbonturnoverroutineinthemonicamodelversion331