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October 1, 2009Geophysical Research Letters396 citationsOpen Access

Benefits, risks, and costs of stratospheric geoengineering

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ARAlan RobockAMA. MarquardtBKBen Kravitz

Key Points

  • This evaluation aims to compare the costs, benefits, and risks of stratospheric geoengineering using sulfate aerosols against other climate responses.
  • Evaluated costs associated with using U.S. military planes for aerosol injection, estimating annual costs in billions.
  • Considered alternative methods of injection such as artillery and balloons, noting higher costs.
  • Identified potential impacts of stratospheric aerosol injection on climate and environment.
  • Annual costs of injecting aerosols using military aircraft estimated at several billion dollars.
  • Potential benefits include cooling the planet, halting ice melt, slowing sea level rise, and increasing carbon sinks.
  • Significant risks include regional drought, ozone depletion, and ethical concerns, with further research needed on many factors.

Abstract

Injecting sulfate aerosol precursors into the stratosphere has been suggested as a means of geoengineering to cool the planet and reduce global warming. The decision to implement such a scheme would require a comparison of its benefits, dangers, and costs to those of other responses to global warming, including doing nothing. Here we evaluate those factors for stratospheric geoengineering with sulfate aerosols. Using existing U.S. military fighter and tanker planes, the annual costs of injecting aerosol precursors into the lower stratosphere would be several billion dollars. Using artillery or balloons to loft the gas would be much more expensive. We do not have enough information to evaluate more exotic techniques, such as pumping the gas up through a hose attached to a tower or balloon system. Anthropogenic stratospheric aerosol injection would cool the planet, stop the melting of sea ice and land‐based glaciers, slow sea level rise, and increase the terrestrial carbon sink, but produce regional drought, ozone depletion, less sunlight for solar power, and make skies less blue. Furthermore it would hamper Earth‐based optical astronomy, do nothing to stop ocean acidification, and present many ethical and moral issues. Further work is needed to quantify many of these factors to allow informed decision‐making.

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Cite This Study

Robock et al. (2009) studied this question.

synapsesocial.com/papers/698b54620540ea04fbfded94https://doi.org/10.1029/2009gl039209
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