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Change in ozone precursors emissions for each sector and pollutant between 1990 and 2006
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No data available for Iceland.
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Maps and graphs
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Energy-related emissions of ozone precursors
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TOFP is the Tropospheric Ozone Forming Potential of each of the air pollutants that contribute to ozone formation in the troposphere i.e. ‘ground-level’ ozone.
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Indicators
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Sector contributions of ozone precursor emissions (EEA member countries)
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The contribution made by different sectors to emissions of the tropospheric (ground-level) ozone precursors.
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Sector contributions of ozone precursor emissions in 2010 (EEA member countries)
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The contribution made by different sectors to emissions of the tropospheric (ground-level) ozone precursors in 2010.
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Assessment of ground-level ozone in EEA member countries, with a focus on long-term trends
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European countries have significantly reduced anthropogenic emissions of ozone precursor gases since 1990. In general, however, ambient air measurements in urban and rural areas of Europe do not show any downward trends in ground-level ozone. The main purpose of this report is to shed light on possible reasons.
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Publications
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Emissions of ozone precursors
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The 'with measures' (WM) projections reported by Member States take into account currently implemented and adopted policies and measures
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Change in emissions of ozone precursors (NOx and NMVOC only) compared with the 2010 NECD and Gothenburg protocol targets
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Gothenburg protocol targets are shown for the non-EU countries
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Contribution of different sectors (energy and non-energy) to total emissions of tropospheric ozone precursors, 2008, EEA-32
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The figure shows the emission of NOx, NMVOC, CO and CH4 in 2008
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Distance-to-target for EEA member countries
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The 'distance to target' results are shown in light yellow (countries need to do more to be on track to meet their ceiling in 2010) and green (countries are on track to meet their ceiling in 2010)
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Maps and graphs
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Overall change in emissions of ozone precursors by country, 1990-2007
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The graph shows the change in energy-related emissions of ozone precursors (NOx, NMVOC, CO and CH4) each weighted by an ozone formation factor prior to aggregation to represent their respective ozone forming potentials. The relative impact of the combined contribution of NOx, NMVOC, CO and CH4 to ozone formation can be assessed based on their tropospheric ozone forming potentials (TOFP): nitrogen oxides 1.22, non-methane volatile organic compounds 1.0, carbon monoxide 0.11 and methane 0.014 (de Leeuw 2002).
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Maps and graphs