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Sector share of nitrogen oxides emissions (EEA member countries)
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Pie chart showing sector share in the total emissions of NOx emissions, for year 2007.
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Emissions of ozone precursors (CSI 002) - Assessment published Dec 2012
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Emissions of the main ground-level ozone precursor pollutants have decreased across the EEA-32 region between 1990 and 2010; nitrogen oxides (NO X ) by 42%, non-methane volatile organic compounds (NMVOC) by 53%, carbon monoxide (CO) by 61%, and methane (CH 4 ) by 32%.
This decrease has been achieved mainly as a result of the introduction of catalytic converters for vehicles, which has significantly reduced emissions of NO X and CO from the road transport sector, the main source of ozone precursor emissions.
The EU-27 as a whole has not met its 2010 target to reduce emissions of NO X , one of the two ozone precursors (NO X and NMVOC) for which emission limits exist under the EU's NEC Directive (NECD). Whilst total NMVOC emissions in the EU-27 were below the NECD limit in 2010, a number of individual Member States did not meet their ceilings for one or both of these two pollutants.
Of the three non-EU countries having emission ceilings for 2010 set under the UNECE/CLRTAP Gothenburg protocol (Liechtenstein, Norway and Switzerland), all reported NMVOC emissions in 2010 that were lower than their respective ceilings, however Liechtenstein and Norway reported NO X emissions higher than their ceiling for 2010.
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Emissions of ozone precursors
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Trend in winter oxidized nitrogen concentrations in coastal and open waters of the Baltic, North East Atlantic (Greater North Sea, Celtic Seas) and Mediterranean Sea (Adriatic Sea), 1985 - 2010
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The figure shows trend in winter oxidized nitrogen (nitrate + nitrite) concentrations in coastal and open waters of the Baltic, North East Atlantic (Greater North Sea, Celtic Seas) and Mediterranean Sea (Adriatic Sea) (% of stations showing a statistically significant change within the period 1985-2010). Numbers in parentheses indicate the number of stations included in the analysis for each country. "Open sea" is the total of all off-shore stations (>20km) within a (sub)region.
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Nutrients in transitional, coastal and marine waters (CSI 021) - Assessment published Mar 2013
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In 2010, the highest concentrations of oxidized nitrogen were found in the Baltic Sea, in the Gulf of Riga and Kiel Bay, and in Belgian, Dutch and German coastal waters in the Greater North Sea. Reported stations in the Northern Spanish and Croatian coastal waters also showed high concentration levels. The highest orthophosphate concentrations were found in the Baltic Sea, in the Gulf of Riga and Kiel Bay, and in Irish, Belgian, Dutch and German coastal waters in the Greater North Sea. Coastal stations along Northern Spain and Southern France also showed high concentration levels.
Between 1985 and 2010, overall nutrient concentrations have been either stable or decreasing in stations reported to the EEA in the Greater North Sea, Celtic Seas and in the Baltic Sea. However, this decrease has been more pronounced for nitrogen. Assessments for the overall Mediterranean and Black Sea regions were not possible, data only being available for stations in France and Croatia.
For oxidized nitrogen concentrations, 14% of all the reported stations showed decreasing trends, whereas only 2% showed increasing trends. Decreases were most evident in the Baltic Sea (coastal waters of Germany, Denmark, Sweden and Finland, and open waters) and in southern part of the coast of the Greater North Sea. Increasing trends were mainly found in Croatian coastal stations.
For orthophosphate concentrations, 10% of all the reported stations showed a decrease. This was most evident in coastal and open water stations in the Greater North Sea, and in coastal stations in the Baltic Sea. Increasing orthophosphate trends, observed in 6% of the reported stations, were mainly detected in Irish, Danish and Finnish coastal waters (Gulf of Finland and Gulf of Bothnia) and in open waters of the Baltic Proper.
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Nutrients in transitional, coastal and marine waters
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Sector share of nitrogen oxides emissions (EEA member countries)
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The contribution made by different sectors to emissions of nitrogen oxides.
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Change in nitrogen oxides emissions for each sector between 1990 and 2009 (EEA member countries)
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Percentage change in nitrogen oxide (NOx) emissions for each sector between 1990 and 2009.
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EEA Briefing 1/2006 - Assessing environmental integration in EU agriculture
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Marine and coastal environment — SOER 2010 thematic assessment
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European marine regions include the north-east Atlantic and Arctic oceans, and the
Mediterranean, Black and Baltic seas. Human activities — such as fishing, aquaculture and
agriculture — and climate change cause large and severe impacts on Europe's coastal and marine
ecosystems. The EU objective of halting biodiversity loss by 2010 has not been met in either the
coastal or the marine environment. Recognising the need for an integrated ecosystem-based
approach to reduce pressures, the EU Integrated Maritime Policy allows for the development
of sea-related activities in a sustainable manner. Its environmental pillar, the Marine Strategy
Framework Directive, aims to deliver 'good environmental status' of the marine environment
by 2020, and the Common Fisheries Policy will be reformed in 2012 with the aim of achieving
sustainable fisheries. Complementary policy efforts include the EU Water Framework Directive and
other freshwater legislation, and the Habitats and Birds Directives.
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The European environment – state and outlook 2010
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Thematic assessments
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Freshwater quality — SOER 2010 thematic assessment
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The continuing presence of a range of pollutants in a number of Europe's freshwaters threatens aquatic ecosystems and raises concerns for public health. Current reporting under the EU Water Framework Directive shows that a substantial proportion of Europe's freshwaters are at risk of not achieving the aim of 'good status' by 2015. Driven by the EU Urban Wastewater Treatment Directive (UWWTD), improvements in the collection and treatment of wastewater in some regions of Europe have led to a reduction in the discharge of some pollutants to fresh and coastal waters. Challenges remain, however, because UWWTD implementation remains incomplete and other significant sources of water pollution exist, especially agriculture and urban storm flows. The implementation of effective and timely measures, required under the WFD, needs to encompass a greater focus on controls 'at source' and the efficient use of resources including water, energy and chemicals.
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The European environment – state and outlook 2010
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Thematic assessments
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Air pollution — SOER 2010 thematic assessment
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Emissions of air pollutants derive from almost all economic and societal activities. They result
in clear risks to human health and ecosystems. In Europe, policies and actions at all levels have
greatly reduced anthropogenic emissions and exposure but some air pollutants still harm human
health. Similarly, as emissions of acidifying pollutants have reduced, the situation for Europe's rivers
and lakes has improved but atmospheric nitrogen oversupply still threatens biodiversity in sensitive
terrestrial and water ecosystems. The movement of atmospheric pollution between continents
attracts increasing political attention. Greater international cooperation, also focusing on links
between climate and air pollution policies, is required more than ever to address air pollution.
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The European environment – state and outlook 2010
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Thematic assessments