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Causes of twentieth-century temperature change near the Earth's surface

Author

Listed:
  • Simon F. B. Tett

    (Hadley Centre for Climate Prediction and Research, Meteorological Office)

  • Peter A. Stott

    (Hadley Centre for Climate Prediction and Research, Meteorological Office)

  • Myles R. Allen

    (Rutherford Appleton Laboratory
    Univeristy of Oxford)

  • William J. Ingram

    (Hadley Centre for Climate Prediction and Research, Meteorological Office)

  • John F. B. Mitchell

    (Hadley Centre for Climate Prediction and Research, Meteorological Office)

Abstract

Observations of the Earth's near-surface temperature show a global-mean temperature increase of approximately 0.6 K since 1900 (ref. 1), occurring from 1910 to 1940 and from 1970 to the present. The temperature change over the past 30–50 years is unlikely to be entirely due to internal climate variability2,3,4 and has been attributed to changes in the concentrations of greenhouse gases and sulphate aerosols5 due to human activity. Attribution of the warming early in the century has proved more elusive. Here we present a quantification of the possible contributions throughout the century from the four components most likely to be responsible for the large-scale temperature changes, of which two vary naturally (solar irradiance and stratospheric volcanic aerosols) and two have changed decisively due to anthropogenic influence (greenhouse gases and sulphate aerosols). The patterns of time/space changes in near-surface temperature due to the separate forcing components are simulated with a coupled atmosphere–ocean general circulation model, and a linear combination of these is fitted to observations. Thus our analysis is insensitive to errors in the simulated amplitude of these responses. We find that solar forcing may have contributed to the temperature changes early in the century, but anthropogenic causes combined with natural variability would also present a possible explanation. For the warming from 1946 to 1996 regardless of any possible amplification of solar or volcanic influence, we exclude purely natural forcing, and attribute it largely to the anthropogenic components.

Suggested Citation

  • Simon F. B. Tett & Peter A. Stott & Myles R. Allen & William J. Ingram & John F. B. Mitchell, 1999. "Causes of twentieth-century temperature change near the Earth's surface," Nature, Nature, vol. 399(6736), pages 569-572, June.
  • Handle: RePEc:nat:nature:v:399:y:1999:i:6736:d:10.1038_21164
    DOI: 10.1038/21164
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    Cited by:

    1. Maxwell T Boykoff & Adam Bumpus & Diana Liverman & Samual Randalls, 2009. "Theorizing the Carbon Economy: Introduction to the Special Issue," Environment and Planning A, , vol. 41(10), pages 2299-2304, October.
    2. Mark D. Risser & William D. Collins & Michael F. Wehner & Travis A. O’Brien & Huanping Huang & Paul A. Ullrich, 2024. "Anthropogenic aerosols mask increases in US rainfall by greenhouse gases," Nature Communications, Nature, vol. 15(1), pages 1-15, December.
    3. Xianglong Li & Ze Zhang & Andrey Melnikov & Mingyi Zhang & Doudou Jin & Jinbang Zhai, 2022. "Variation of Ground Surface Freezing/Thawing Index in China under the CMIP6 Warming Scenarios," Sustainability, MDPI, vol. 14(21), pages 1-17, November.

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