We present multi-model global datasets of nitrogen and sulfate deposition covering time periods from 1850 to 2100, calculated within the Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP). The computed deposition fluxes are compared to surface wet deposition and ice core measurements. We use a new dataset of wet deposition for 2000–2002 based on critical assessment of the quality of existing regional network data. We show that for present day (year 2000 ACCMIP time slice), the ACCMIP results perform similarly to previously published multi-model assessments. For this time slice, we find a multi-model mean deposition of approximately 50 Tg(N) yr−1 from nitrogen oxide emissions, 60 Tg(N) yr−1 from ammonia emissions, and 8...
We use a regional model of atmospheric chemistry and transport to investigate trends in sulphur and ...
The wet deposition of nitrogen and sulfur in Europe for the period 1990–2010 was estimated by six at...
Reliable estimates of atmospheric deposition of nitrogen and sulphur are essential for assessing the...
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...
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...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
Reactive nitrogen emissions into the atmosphere are increasing as a result of human activities, affe...
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...
This study uses multi-model ensemble results of 11 models from the second phase of Task Force Hemisp...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use a regional model of atmospheric chemistry and transport to investigate trends in sulphur and ...
The wet deposition of nitrogen and sulfur in Europe for the period 1990–2010 was estimated by six at...
Reliable estimates of atmospheric deposition of nitrogen and sulphur are essential for assessing the...
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...
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...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
Reactive nitrogen emissions into the atmosphere are increasing as a result of human activities, affe...
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...
This study uses multi-model ensemble results of 11 models from the second phase of Task Force Hemisp...
We use 23 atmospheric chemistry transport models to calculate current and future (2030) deposition o...
We use a regional model of atmospheric chemistry and transport to investigate trends in sulphur and ...
The wet deposition of nitrogen and sulfur in Europe for the period 1990–2010 was estimated by six at...
Reliable estimates of atmospheric deposition of nitrogen and sulphur are essential for assessing the...