We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition of reactive nitrogen (NOy, NHx) and sulfate (SOx) to land and ocean surfaces. The models are driven by three emission scenarios: (1) current air quality legislation (CLE); (2) an optimistic case of the maximum emissions reductions currently technologically feasible (MFR); and (3) the contrasting pessimistic IPCC SRES A2 scenario. An extensive evaluation of the present-day deposition using nearly all information on wet deposition available worldwide shows a good agreement with observations in Europe and North America, where 60–70% of the model-calculated wet deposition rates agree to within ±50% with quality-controlled measurements. Models syst...
Reactive nitrogen emissions into the atmosphere are increasing as a result of human activities, affe...
This study uses multi-model ensemble results of 11 models from the second phase of Task Force Hemisp...
We present multi-model global datasets of ni- trogen and sulfate deposition covering time periods fr...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
International audienceWe use 23 atmospheric chemistry transport models to calculate current and futu...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
This study uses multi-model ensemble results of 11 models from the second phase of Task Force Hemisp...
Increases and expansion of anthropogenic emissions of both oxidized nitrogen compounds, NO(x, a)nd a...
We present multi-model global datasets of nitrogen and sulfate deposition covering time periods from...
We present multi-model global datasets of nitrogen and sulfate deposition covering time periods from...
Reactive nitrogen emissions into the atmosphere are increasing as a result of human activities, affe...
This study uses multi-model ensemble results of 11 models from the second phase of Task Force Hemisp...
We present multi-model global datasets of ni- trogen and sulfate deposition covering time periods fr...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
International audienceWe use 23 atmospheric chemistry transport models to calculate current and futu...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
This study uses multi-model ensemble results of 11 models from the second phase of Task Force Hemisp...
Increases and expansion of anthropogenic emissions of both oxidized nitrogen compounds, NO(x, a)nd a...
We present multi-model global datasets of nitrogen and sulfate deposition covering time periods from...
We present multi-model global datasets of nitrogen and sulfate deposition covering time periods from...
Reactive nitrogen emissions into the atmosphere are increasing as a result of human activities, affe...
This study uses multi-model ensemble results of 11 models from the second phase of Task Force Hemisp...
We present multi-model global datasets of ni- trogen and sulfate deposition covering time periods fr...