Search Results
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2021 Report on the MONERIS model application (4.73 MB)
Poland
Poland, officially the Republic of Poland, is a country in Central Europe. Poland has a temperate transitional climate, and its territory traverses the Central European Plain, extending from the Baltic Sea in the north to Sudeten and Carpathian Mountains in the south.
New Study Shows Restored Floodplains Can Remove Significant Amounts of Nitrate Pollution in the Danube River Basin
A recent large-scale modelling study has shown that restoring floodplains and reconnecting cut-off water bodies with the Danube River, and its tributaries could play a significant role in improving water quality and removing nitrate pollution in the Danube River Basin.
Donors conference for Serbia and Bosnia and Herzegovina: “Rebuilding Together”
Brussels, 16 July 2014. An international donors conference raised millions in support of flood victims in Serbia and Bosnia and Herzegovina. High-level speakers including French minister of foreign affairs Laurent Fabius also underlined the importance of river basin management and the role of ICPDR and ISRBC.
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MONERIS User's Manual - Part 2 (3.96 MB)
Version 2.0, July 2007 -
MONERIS User's Manual - Part 1 (3.45 MB)
Version 2.0, July 2007 -
Sava River Basin Overview Map (1.55 MB)
Sub-river Basin of the Danube River Basin District, January 2006 -
Facts and Figures; Bosnia and Herzegovina (89.27 KB)
daNUbs - Nutrient Management in the Danube River Basin
daNUbs was a mulitnational EU research project carried out under the leadership of the Technical University of Vienna. The results from this project include estimates of nutrient inputs into the river network (MONERIS), as well as an assessment of the loads of nitrogen, phosphorus and silica transported via the river network. These results indicate that the nutrient status in the Black Sea has significantly improved since the 1980s.
Nutrients
The nutrient levels, notably phosphorus and nitrogen, found in the Danube River and its major tributaries hold significant international importance. This is because they directly contribute to the phenomenon of eutrophication in both the river itself and the Black Sea. Historical trend analysis of nutrient river loads over the past decades shows a significant reduction in the transported nutrient fluxes to the Black Sea. Overall nutrient emissions declined by 30% (nitrogen) and 50% (phosphorus) in the last 15 years. However, the current long-term fluxes are still considerably higher than those of the early 1960ies which represent river loads under low pressures, indicating a further load reduction potential that might be exploited for the benefit of the Black Sea. Nevertheless, in the last 5-10 years the measured loads are rather low and close to the Black Sea targets indicating significant water quality improvement.