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Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers University Conference on Carbon Politics and Finance Fordham University New York, NY October 29, 2010

Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

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Page 1: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Climate Change:An Overview of the Science

Anthony J. BroccoliDirector, Center for Environmental Prediction

Department of Environmental SciencesRutgers University

Conference on Carbon Politics and FinanceFordham University

New York, NYOctober 29, 2010

Page 2: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Why do we care about carbon emissions?

Page 3: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

[Source: Intergovernmental Panel on Climate Change, Third Assessment Report]

Page 4: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Preindustrial

Today

[Source: Brook, E., 2005: Tiny bubbles tell all, Science, 310, 1285-1287.]

Greenhouse gases are now higher

than any time in the past 650,000

years.

Page 5: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Three lines of evidence link CO2 and climate:

• Basic physics

• Observations

• Modeling

Page 6: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Three lines of evidence link CO2 and climate:

• Basic physics

• Observations

• Modeling

Page 7: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Basic physics of CO2 and climate

• If an object receives energy in the form of visible light, as the earth does from the sun, it warms up.

• The warmer an object is, the more energy it emits in the form of infrared light.

• CO2 and water vapor are “greenhouse gases” that absorb infrared light, making it more difficult for energy to escape into space. This is the earth’s cooling mechanism that balances the heating from the sun’s visible light.

• Without greenhouse gases the earth would be much colder (i.e., its average temperature would be well below freezing).

Page 8: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

The “atmospheric window”

Infrared light can escapethrough atmospheric window

CO2 partially blocksatmospheric window

Page 9: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Te4

Temperature

288 K255 K

Temperature

288 K255 K

temperatureincreases

Te4

more greenhouse gases↓

infrared opacity increases↓

effective radiating level rises

effective radiating level

effective radiating level

Page 10: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Three lines of evidence link CO2 and climate:

• Basic physics

• Observations

• Modeling

Page 11: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Source: NASA/Goddard Institute for Space Studies

Page 12: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers
Page 13: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Northern Hemisphere Temperature Reconstructions

“It can be said with a high level of confidence that global mean surface temperaturewas higher during the last few decades of the 20th century than during any comparable period during the preceding four centuries”“…the committee finds it plausible that the Northern Hemisphere was warmer during the last few decades of the 20th century than during any comparable period over the preceding millennium.” National Research Council

Page 14: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Source: Polar Research Group, Univ. of Illinois

Page 15: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers
Page 16: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Three lines of evidence link CO2 and climate:

• Basic physics

• Observations

• Modeling

Page 17: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

What Are Climate Models?

Page 18: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Coupled Climate Model Schematic

Page 19: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Blue: Natural Pink: Natural + Human-induced

Page 20: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Variations among colored lines represents uncertainty due to uncertainty in future emissions.

Projections of Future Climate

Page 21: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers
Page 22: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Source: NOAA Geophysical Fluid Dynamics Laboratory

Simulating Future Climate Change

Page 23: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Potential Climate Change Impacts

Page 24: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Future Emissions Scenarios

All scenarios showincreasing emissionsduring next severaldecades

Some scenarios showdecreased emissionsin latter half of 21st

century

Even with substantialreductions in emissions,CO2 would rise to 2xpreindustrial levels

Page 25: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

The Atmospheric CO2 Balance

Human-produced emissions of CO2

Uptake of CO2 by ocean, vegetation, and solid earth

Page 26: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

More Warming in the Pipeline

Warming to date

Additional “zero-emission” warming (aka “commitment”)

Future emissions

Page 27: Climate Change: An Overview of the Science Anthony J. Broccoli Director, Center for Environmental Prediction Department of Environmental Sciences Rutgers

Outstanding scientific questions

• How sensitive is the earth’s climate? In other words, how much will the climate change for a given change in greenhouse gas concentrations?

• How rapidly will sea level rise? Will Greenland and Antarctica melt more quickly or more slowly?

• How will climate change affect precipitation patterns?• How will climate change affect severe storms (e.g.,

tornadoes, hurricanes, nor’easters)?• Are there “tipping points” in the climate system?• What impacts will climate change have on natural

systems and society?