H198-0003
Climate variability effects on eutrophication of groundwater, lakes, rivers, and coastal waters in the Netherlands

Wednesday, 16 December 2020
Poster
Joachim Rozemeijer1, Ruurd Noordhuis1, Kevin Ouwerkerk1, Miguel Dionisio Pires1, Anouk Blauw1 and Arno Hooijboer2, (1)Deltares, Delft, Netherlands, (2)RIVM, Bilthoven, Netherlands
Abstract:
Many aquatic ecosystems in densely populated delta areas worldwide are under stress from overexploitation and pollution. Global population growth will lead to further increasing pressures in the coming decades, while climate change may amplify the consequences for chemical and ecological water quality. In this study, we explored the effects of climatic variability on eutrophication of groundwater, streams, rivers, lakes, estuaries, and marine waters in the Netherlands. We exploited the relatively dense monitoring information from the Dutch part of the Rhine-Meuse delta to evaluate the water quality response on climatic variability, in combination with anthropogenic pressures.

Our results show that water quality of all water systems in the Netherlands is affected by climate variability in several ways: 1) through the process of global climate change (mainly temperature and sea level rise), 2) through changes Atlantic ocean circulation patterns (more southwestern winds), 3) through changes in continental precipitation and river discharge fluctuations, and 4) through local climatic fluctuations. The impact of climate variability propagates through the hydrological system ‘from catchment to coast’. The fluctuations in water quality induced by climatic variability shown in this study give a preview for the potential effects of climate change. Many water resources will need larger ecological carrying capacities to buffer the negative effects of climatic extremes on water quality.