001     56996
005     20180211165259.0
024 7 _ |2 DOI
|a 10.2166/wst.2007.080
024 7 _ |2 WOS
|a WOS:000245786100017
037 _ _ |a PreJuSER-56996
041 _ _ |a eng
082 _ _ |a 690
084 _ _ |2 WoS
|a Engineering, Environmental
084 _ _ |2 WoS
|a Environmental Sciences
084 _ _ |2 WoS
|a Water Resources
100 1 _ |a Tetzlaff, B.
|b 0
|u FZJ
|0 P:(DE-Juel1)129578
245 _ _ |a Area-differentiated modelling of P-fluxes in heterogeneous macroscale river basins
260 _ _ |a London
|b IWA Publishing
|c 2007
300 _ _ |a 123 - 131
336 7 _ |a Journal Article
|0 PUB:(DE-HGF)16
|2 PUB:(DE-HGF)
336 7 _ |a Output Types/Journal article
|2 DataCite
336 7 _ |a Journal Article
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|2 EndNote
336 7 _ |a ARTICLE
|2 BibTeX
336 7 _ |a JOURNAL_ARTICLE
|2 ORCID
336 7 _ |a article
|2 DRIVER
440 _ 0 |a Water Science and Technology
|x 0273-1223
|0 5960
|y 3
|v 55
500 _ _ |a Record converted from VDB: 12.11.2012
520 _ _ |a A model (MEPhos) for the calculation of the total phosphorus output from diffuse sources by drainage, wash-off, groundwater outflow, soil erosion and rainwater sewers as well as from point sources is presented. The model is based on a pathway- and area-differentiated emissions approach and calculates mean long-term P-inputs to surface waters. Phosphotopes are used for spatial discretization and modelling of diffuse P-inputs. Based on the modelling results "hot spots" for high P-loads can be localized and a management option for the input reduction to surface waters can be proposed which are adapted to site properties. The applicability of the model is demonstrated for two macroscale river basins in Germany (similar to 13,000 km(2) each) with contrasting natural conditions and land use patterns.
536 _ _ |a Terrestrische Umwelt
|c P24
|2 G:(DE-HGF)
|0 G:(DE-Juel1)FUEK407
|x 0
588 _ _ |a Dataset connected to Web of Science
650 _ 7 |a J
|2 WoSType
653 2 0 |2 Author
|a catchment management
653 2 0 |2 Author
|a diffuse pollution
653 2 0 |2 Author
|a eutrophication
653 2 0 |2 Author
|a modelling
653 2 0 |2 Author
|a phosphate entries
653 2 0 |2 Author
|a point sources
700 1 _ |a Kreins, P.
|b 1
|u FZJ
|0 P:(DE-Juel1)VDB27820
700 1 _ |a Kunkel, R.
|b 2
|u FZJ
|0 P:(DE-Juel1)VDB4996
700 1 _ |a Wendland, F.
|b 3
|u FZJ
|0 P:(DE-Juel1)VDB4997
773 _ _ |a 10.2166/wst.2007.080
|g Vol. 55, p. 123 - 131
|p 123 - 131
|q 55<123 - 131
|0 PERI:(DE-600)2024780-1
|t Water science and technology
|v 55
|y 2007
|x 0273-1223
856 7 _ |u http://dx.doi.org/10.2166/wst.2007.080
909 C O |o oai:juser.fz-juelich.de:56996
|p VDB
913 1 _ |k P24
|v Terrestrische Umwelt
|l Terrestrische Umwelt
|b Erde und Umwelt
|0 G:(DE-Juel1)FUEK407
|x 0
914 1 _ |y 2007
915 _ _ |0 StatID:(DE-HGF)0010
|a JCR/ISI refereed
920 1 _ |k ICG-4
|l Agrosphäre
|d 31.10.2010
|g ICG
|0 I:(DE-Juel1)VDB793
|x 1
970 _ _ |a VDB:(DE-Juel1)89665
980 _ _ |a VDB
980 _ _ |a ConvertedRecord
980 _ _ |a journal
980 _ _ |a I:(DE-Juel1)IBG-3-20101118
980 _ _ |a UNRESTRICTED
981 _ _ |a I:(DE-Juel1)IBG-3-20101118


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