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- W2367754682 abstract "A one dimensional and three dimensional coupled water quality model has been developed to simulate the fluxes of carbonaceous biochemical oxygen demand (CBOD), total nitrogen (TN) and total phosphorus (TP) in the river network of to Pearl River Delta (RNPRD) and Pearl River Estuary (PRE). The situation in the period from June 1998 (wet season) to January 1999 (dry season) is taken as a case study. The results indicate that the pollutant fluxes in the RNPRD and PRE exhibit significant seasonal variations. During the wet season, the external loads of pollutants in the RNPRD are significantly contributed by pollutant inputs from the upstream boundaries (the upstream fluxes). Pollutant fluxes passing through the eight river outlets (the riverine fluxes) are the primary external sources of pollutants for the PRE. During the dry season, waste loads in the RNPRD are the largest inputs of pollutants to the RNPRD. The riverine fluxes are the largest external sources of pollutants for the PRE, except that CBOD are mainly contributed by waste loads in the PRE. The upstream fluxes and the riverine fluxes of pollutants in the wet season are 15.1-21.5 times and 8.0-20.2 times of those in the dry season, respectively. Also, the pollutant fluxes exported from the PRE to the South China Sea (the estuarine fluxes) in the wet season are 6.4-9.1 times of those in the dry season. The eastern four river outlets are the major receiving outlets for pollutants. Individually, the Humen, Modaomen and Jiaomen are major receiving outlets. Conclusively, both the RNPRD and the PRE act as sinks for CBOD, TN and TP." @default.
- W2367754682 created "2016-06-24" @default.
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- W2367754682 date "2012-01-01" @default.
- W2367754682 modified "2023-09-27" @default.
- W2367754682 title "Modeling of CBOD,TN and TP fluxes in the river network and estuary of Pearl River Delta" @default.
- W2367754682 hasPublicationYear "2012" @default.
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