Brief communication: Understanding solar geoengineering's potential to limit sea level rise requires attention from cryosphere experts

Bibliographic Details
Title: Brief communication: Understanding solar geoengineering's potential to limit sea level rise requires attention from cryosphere experts
Authors: P. J. Irvine, D. W. Keith, J. Moore
Source: The Cryosphere, Vol 12, Pp 2501-2513 (2018)
Publisher Information: Copernicus Publications, 2018.
Publication Year: 2018
Collection: LCC:Environmental sciences
LCC:Geology
Subject Terms: Environmental sciences, GE1-350, Geology, QE1-996.5
More Details: Stratospheric aerosol geoengineering, a form of solar geoengineering, is a proposal to add a reflective layer of aerosol to the stratosphere to reduce net radiative forcing and so to reduce the risks of climate change. The efficacy of solar geoengineering at reducing changes to the cryosphere is uncertain; solar geoengineering could reduce temperatures and so slow melt, but its ability to reverse ice sheet collapse once initiated may be limited. Here we review the literature on solar geoengineering and the cryosphere and identify the key uncertainties that research could address. Solar geoengineering may be more effective at reducing surface melt than a reduction in greenhouse forcing that produces the same global-average temperature response. Studies of natural analogues and model simulations support this conclusion. However, changes below the surfaces of the ocean and ice sheets may strongly limit the potential of solar geoengineering to reduce the retreat of marine glaciers. High-quality process model studies may illuminate these issues. Solar geoengineering is a contentious emerging issue in climate policy and it is critical that the potential, limits, and risks of these proposals are made clear for policy makers.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 1994-0416
1994-0424
Relation: https://www.the-cryosphere.net/12/2501/2018/tc-12-2501-2018.pdf; https://doaj.org/toc/1994-0416; https://doaj.org/toc/1994-0424
DOI: 10.5194/tc-12-2501-2018
Access URL: https://doaj.org/article/00f6cb6fa5284b6c8c043695688cf524
Accession Number: edsdoj.00f6cb6fa5284b6c8c043695688cf524
Database: Directory of Open Access Journals
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More Details
ISSN:19940416
19940424
DOI:10.5194/tc-12-2501-2018
Published in:The Cryosphere
Language:English