二酸化炭素が上層大気を冷却し地表を温暖化する仕組みを解明(A New Study Explains How Carbon Dioxide Cools the Upper Atmosphere, Yet Warms Earth Below)

2026-05-12 コロンビア大学

米国のColumbia Climate Schoolの研究チームは、二酸化炭素(CO₂)が地表付近を温暖化させる一方で、上層大気を冷却する仕組みを詳細に説明する研究成果を発表した。研究によれば、CO₂は地表から放射される赤外線を吸収・再放射することで下層大気の熱を保持するが、成層圏や中間圏などの希薄な上層大気では、吸収したエネルギーを宇宙空間へ放出しやすいため、逆に冷却効果が生じる。この温暖化と冷却の同時進行は、大気循環、人工衛星軌道、オゾン化学、気候変動予測に重要な影響を及ぼす。研究は、温室効果ガスによる放射輸送メカニズムを統合的に理解する上で重要な成果とされ、気候モデル精度向上への貢献が期待されている。

二酸化炭素が上層大気を冷却し地表を温暖化する仕組みを解明(A New Study Explains How Carbon Dioxide Cools the Upper Atmosphere, Yet Warms Earth Below)
View of Earth taken during International Space Station Expedition 66. Credit: NASA

<関連情報>

Stratospheric cooling and amplification of radiative forcing with rising carbon dioxide

Sean Cohen,Robert Pincus & Lorenzo M. Polvani
Nature Geoscience  Published:11 May 2026
DOI:https://doi.org/10.1038/s41561-026-01965-8

Abstract

The cooling of the stratosphere in response to increasing carbon dioxide concentration is a fingerprint of human effects on climate. However, the mechanisms that control the magnitude and vertical structure of this cooling have not been clear. Here we use idealized models of spectroscopy and radiative transfer to explain the sensitivity of stratospheric temperature to carbon dioxide concentration. We find that stratospheric cooling is mainly driven by the distribution of mass absorption coefficients in the primary carbon dioxide band and modulated by the longwave cooling of water vapour and ozone in other parts of the spectrum. These spectral mechanisms explain why the stratosphere cools more aloft than it does below, why each doubling of carbon dioxide yields roughly 0 to 8 degrees Kelvin of cooling across the depth of the stratosphere and why stratospheric cooling increases the top of atmosphere radiative forcing of carbon dioxide by about 50%. This theory implies that stratospheric cooling is not a fundamental consequence of increasing the optical thickness of a greenhouse gas but rather the unique result of the spectroscopy of that gas.

1702地球物理及び地球化学
ad
ad
Follow
ad
タイトルとURLをコピーしました