Future changes in tropospheric ozone under Representative Concentration Pathways (RCPs)
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- Type
- article
- Published
- 2011-03-16
- Cited by
- 95
- References
- 21
- Access
- Open access
- OpenAlex
- https://openalex.org/W1567391872
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:128444989
Keywords
Ozone, Environmental science, Representative Concentration Pathways, Tropospheric ozone, Troposphere
References
- Climate change simulations with a coupled Ocean-Atmosphere GCM called the Model for Interdisciplinary Research on Climate, MIROC
- Impact of stratospheric ozone recovery on tropospheric ozone and its budget
- Sensitivity of 21st century stratospheric ozone to greenhouse gas scenarios
- Special report on emissions scenarios
- CHASER: A global chemical model of the troposphere 1. Model description
- Future tropospheric ozone simulated with a climate‐chemistry‐biosphere model
- Future changes in stratosphere‐troposphere exchange and their impacts on future tropospheric ozone simulations
- Impact of climate change on the future chemical composition of the global troposphere
- First Directly Retrieved Global Distribution of Tropospheric Column Ozone from GOME: Comparison with the GEOS-CHEM Model
- A stratospheric ozone trends data set for global modeling studies
- Atmospheric ozone as a climate gas
- Global analyses of sea surface temperature, sea ice, and night marine air temperature since the late nineteenth century
- The next generation of scenarios for climate change research and assessment
- Simulation of ozone and other chemical species using a Center for Climate System Research/National Institute for Environmental Studies atmospheric GCM with coupled stratospheric chemistry
- Tropospheric ozone evolution between 1890 and 1990
- Evaluation of the Montsouris series of ozone measurements made in the nineteenth century
- Multimodel ensemble simulations of present-day and near-future tropospheric ozone
- Effect of stratosphere‐troposphere exchange on the future tropospheric ozone trend
- Climate Change Simulations with a Coupled Ocean-Atmosphere GCM Called the Model for Interdisciplinary Research on Climate: MIROC
- Atmospheric Chemistry and Physics
Cited by
- Investigating the Prediction of High Resolution Heat Waves and Extreme Precipitation and the Impact of Heat Waves on Air Quality in U.S. in the 21st Century
- Alternative future analysis for assessing the potential impact of climate change on urban landscape dynamics.
- Understanding the Links Between Human Health and Climate Change: Agricultural Productivity and Allergenic Pollen Production of Timothy Grass(Phleum pratense L.) Under Future Predicted Levels of Carbon Dioxide and Ozone
- Climate Change Impact on the Hydrology of a Typical Watershed in the Tianshan Mountains
- Projected changes in solar UV radiation in the Arctic and sub‐Arctic Oceans: Effects from changes in reflectivity, ice transmittance, clouds, and ozone
- Attribution of direct ozone radiative forcing to spatially resolved emissions
- Long-term Climate Change: Projections, Commitments and Irreversibility
- Assessment of surface winds over the Atlantic, Indian, and Pacific Ocean sectors of the Southern Ocean in CMIP5 models: historical bias, forcing response, and state dependence
- How well do integrated assessment models represent non-CO2 radiative forcing?
- Long‐term ozone changes and associated climate impacts in CMIP5 simulations
- Air Quality and Climate Connections
- Roles of transport and chemistry processes in global ozone change on interannual and multidecadal time scales
- Future ozone and oxidants change under the RCP scenarios
- Chemistry and the Linkages between Air Quality and Climate Change.
- How emissions, climate, and land use change will impact mid-century air quality over the United States: a focus on effects at national parks
- Future projections of surface UV‐B in a changing climate
- Anthropogenic changes in the surface all-sky UV-B radiation through 1850-2005 simulated by an Earth system model
- Sea-Ice in Twentieth-Century Simulations by New MIROC Coupled Models: A Comparison between Models with High Resolution and with Ice Thickness Distribution
- MIROC-ESM 2010: model description and basic results of CMIP5-20c3m experiments
- Pre-industrial to end 21st century projections of tropospheric ozone from the Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP)
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