How can we reduce phosphorus export from lowland polders? Implications from a sensitivity analysis of a coupled model
Phosphorus (P) export from lowland polders has caused severe water pollution. Numerical models are an important resource that help water managers control P export. This study coupled three models, i.e., Phosphorus Dynamic model for Polders (PDP), Integrated Catchments model of Phosphorus dynamics (I...
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Veröffentlicht in: | The Science of the total environment 2016-08, Vol.562, p.946-952 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Phosphorus (P) export from lowland polders has caused severe water pollution. Numerical models are an important resource that help water managers control P export. This study coupled three models, i.e., Phosphorus Dynamic model for Polders (PDP), Integrated Catchments model of Phosphorus dynamics (INCA-P) and Universal Soil Loss Equation (USLE), to describe the P dynamics in polders. Based on the coupled models and a dataset collected from Polder Jian in China, sensitivity analysis were carried out to analyze the cause-effect relationships between environmental factors and P export from Polder Jian. The sensitivity analysis results showed that P export from Polder Jian were strongly affected by air temperature, precipitation and fertilization. Proper fertilization management should be a strategic priority for reducing P export from Polder Jian. This study demonstrated the success of model coupling, and its application in investigating potential strategies to support pollution control in polder systems.
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•Three models were coupled to describe phosphorus (P) dynamics in Polder Jian, China.•Sensitive factors affecting annual P export from Polder Jian were identified.•Proper fertilization should be a strategical priority for reducing polder P export. |
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ISSN: | 0048-9697 1879-1026 |
DOI: | 10.1016/j.scitotenv.2016.04.068 |