Transient Climate Impacts for Scenarios of Aerosol Emissions from Asia: A Story of Coal versus Gas

Fuel usage is an important driver of anthropogenic aerosol emissions. In Asia, it is possible that aerosol emissions may increase if business continues as usual, with economic growth driving an increase in coal burning. But it is also possible that emissions may decrease rapidly as a result of the w...

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Bibliographic Details
Main Authors: Grandey, Benjamin S. (Author), Cheng, Haiwen (Author), Wang, Chien (Contributor)
Other Authors: Massachusetts Institute of Technology. Center for Global Change Science (Contributor), Massachusetts Institute of Technology. Department of Earth, Atmospheric, and Planetary Sciences (Contributor)
Format: Article
Language:English
Published: American Meteorological Society, 2018-04-06T13:41:40Z.
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Online Access:Get fulltext
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100 1 0 |a Grandey, Benjamin S.  |e author 
100 1 0 |a Massachusetts Institute of Technology. Center for Global Change Science  |e contributor 
100 1 0 |a Massachusetts Institute of Technology. Department of Earth, Atmospheric, and Planetary Sciences  |e contributor 
100 1 0 |a Wang, Chien  |e contributor 
700 1 0 |a Cheng, Haiwen  |e author 
700 1 0 |a Wang, Chien  |e author 
245 0 0 |a Transient Climate Impacts for Scenarios of Aerosol Emissions from Asia: A Story of Coal versus Gas 
260 |b American Meteorological Society,   |c 2018-04-06T13:41:40Z. 
856 |z Get fulltext  |u http://hdl.handle.net/1721.1/114580 
520 |a Fuel usage is an important driver of anthropogenic aerosol emissions. In Asia, it is possible that aerosol emissions may increase if business continues as usual, with economic growth driving an increase in coal burning. But it is also possible that emissions may decrease rapidly as a result of the widespread adoption of cleaner technologies or a shift toward noncoal fuels, such as natural gas. In this study, the transient climate impacts of two aerosol emissions scenarios are investigated: A representative concentration pathway 4.5 (RCP4.5) control, which projects a decrease in anthropogenic aerosol emissions, and a scenario with enhanced anthropogenic aerosol emissions from Asia. A coupled atmosphere-ocean configuration of the Community Earth System Model (CESM), including the Community Atmosphere Model, version 5 (CAM5), is used. Three sets of initial conditions are used to produce a three-member ensemble for each scenario. Enhanced Asian aerosol emissions are found to exert a large cooling effect across the Northern Hemisphere, partially offsetting greenhouse gas-induced warming. Aerosol-induced suppression of the East Asian and South Asian summer monsoon precipitation occurs. The enhanced Asian aerosol emissions also remotely impact precipitation in other parts of the world. Over Australia, austral summer monsoon precipitation is enhanced, an effect associated with a southward shift of the intertropical convergence zone, driven by the aerosol-induced cooling of the Northern Hemisphere. Over the Sahel, West African monsoon precipitation is suppressed, likely via a weakening of the West African westerly jet. These results indicate that fuel usage in Asia, through the consequent aerosol emissions and associated radiative effects, might significantly influence future climate both locally and globally. Keywords: Geographic location/entity; Asia; Atm/Ocean Structure/ Phenomena; Monsoons; Physical Meteorology and Climatology; Aerosols; Climate prediction; Models and modeling; Climate models; General circulation models 
520 |a National Science Foundation (U.S.) (Grant AGS-0944121) 
520 |a United States. Department of Energy (Grant DE-FG02-94ER61937) 
520 |a United States. Environmental Protection Agency (Grant XA-83600001-1) 
655 7 |a Article 
773 |t Journal of Climate