Assessing effective radiative forcing from aerosol-cloud interactions over the global ocean

Proc Natl Acad Sci U S A. 2022 Nov 16;119(46):e2210481119. doi: 10.1073/pnas.2210481119. Epub 2022 Nov 7.

Abstract

How clouds respond to anthropogenic sulfate aerosols is one of the largest sources of uncertainty in the radiative forcing of climate over the industrial era. This uncertainty limits our ability to predict equilibrium climate sensitivity (ECS)-the equilibrium global warming following a doubling of atmospheric CO2. Here, we use satellite observations to quantify relationships between sulfate aerosols and low-level clouds while carefully controlling for meteorology. We then combine the relationships with estimates of the change in sulfate concentration since about 1850 to constrain the associated radiative forcing. We estimate that the cloud-mediated radiative forcing from anthropogenic sulfate aerosols is [Formula: see text] W m-2 over the global ocean (95% confidence). This constraint implies that ECS is likely between 2.9 and 4.5 K (66% confidence). Our results indicate that aerosol forcing is less uncertain and ECS is probably larger than the ranges proposed by recent climate assessments.

Keywords: aerosol radiative forcing; aerosol–cloud interactions; climate change; climate sensitivity.

Publication types

  • Research Support, U.S. Gov't, Non-P.H.S.
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aerosols
  • Climate*
  • Meteorology*
  • Oceans and Seas
  • Sulfates

Substances

  • Aerosols
  • Sulfates