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Global and regional temperature-change potentials for near-term climate forcers

Publication ,  Journal Article
Collins, WJ; Fry, MM; Yu, H; Fuglestvedt, JS; Shindell, DT; West, JJ
Published in: Atmospheric Chemistry and Physics
April 8, 2013

We examine the climate effects of the emissions of near-term climate forcers (NTCFs) from 4 continental regions (East Asia, Europe, North America and South Asia) using results from the Task Force on Hemispheric Transport of Air Pollution Source-Receptor global chemical transport model simulations. We address 3 aerosol species (sulphate, particulate organic matter and black carbon) and 4 ozone precursors (methane, reactive nitrogen oxides (NO x), volatile organic compounds and carbon monoxide). We calculate the global climate metrics: global warming potentials (GWPs) and global temperature change potentials (GTPs). For the aerosols these metrics are simply time-dependent scalings of the equilibrium radiative forcings. The GTPs decrease more rapidly with time than the GWPs. The aerosol forcings and hence climate metrics have only a modest dependence on emission region. The metrics for ozone precursors include the effects on the methane lifetime. The impacts via methane are particularly important for the 20 yr GTPs. Emissions of NOx and VOCs from South Asia have GWPs and GTPs of higher magnitude than from the other Northern Hemisphere regions. The analysis is further extended by examining the temperature-change impacts in 4 latitude bands, and calculating absolute regional temperature-change potentials (ARTPs). The latitudinal pattern of the temperature response does not directly follow the pattern of the diagnosed radiative forcing. We find that temperatures in the Arctic latitudes appear to be particularly sensitive to BC emissions from South Asia. The northern mid-latitude temperature response to northern mid-latitude emissions is approximately twice as large as the global average response for aerosol emission, and about 20-30% larger than the global average for methane, VOC and CO emissions.© Author(s) 2013.

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Published In

Atmospheric Chemistry and Physics

DOI

EISSN

1680-7324

ISSN

1680-7316

Publication Date

April 8, 2013

Volume

13

Issue

5

Start / End Page

2471 / 2485

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3702 Climate change science
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences
  • 0201 Astronomical and Space Sciences
 

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Collins, W. J., Fry, M. M., Yu, H., Fuglestvedt, J. S., Shindell, D. T., & West, J. J. (2013). Global and regional temperature-change potentials for near-term climate forcers. Atmospheric Chemistry and Physics, 13(5), 2471–2485. https://doi.org/10.5194/acp-13-2471-2013
Collins, W. J., M. M. Fry, H. Yu, J. S. Fuglestvedt, D. T. Shindell, and J. J. West. “Global and regional temperature-change potentials for near-term climate forcers.” Atmospheric Chemistry and Physics 13, no. 5 (April 8, 2013): 2471–85. https://doi.org/10.5194/acp-13-2471-2013.
Collins WJ, Fry MM, Yu H, Fuglestvedt JS, Shindell DT, West JJ. Global and regional temperature-change potentials for near-term climate forcers. Atmospheric Chemistry and Physics. 2013 Apr 8;13(5):2471–85.
Collins, W. J., et al. “Global and regional temperature-change potentials for near-term climate forcers.” Atmospheric Chemistry and Physics, vol. 13, no. 5, Apr. 2013, pp. 2471–85. Scopus, doi:10.5194/acp-13-2471-2013.
Collins WJ, Fry MM, Yu H, Fuglestvedt JS, Shindell DT, West JJ. Global and regional temperature-change potentials for near-term climate forcers. Atmospheric Chemistry and Physics. 2013 Apr 8;13(5):2471–2485.

Published In

Atmospheric Chemistry and Physics

DOI

EISSN

1680-7324

ISSN

1680-7316

Publication Date

April 8, 2013

Volume

13

Issue

5

Start / End Page

2471 / 2485

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3702 Climate change science
  • 3701 Atmospheric sciences
  • 0401 Atmospheric Sciences
  • 0201 Astronomical and Space Sciences