Advances in Climate Engineering Science: Benefits, Risks, and Uncertainties
Advances in Climate Engineering Science: Benefits, Risks, and Uncertainties
Session ID#: 280250
Session Description:
As the window to stop catastrophic climate change narrows, proposals to deliberately modify the climate system by reflecting sunlight to reduce the impacts of global warming (Solar Radiation Management or SRM) have received increasing attention. Proposed methods of SRM include stratospheric aerosol injection (SAI), marine cloud brightening (MCB), cirrus or mixed-phase cloud thinning, and surface- or space-based albedo modifications. While SRM interventions could have substantial benefits, significant risks and uncertainties remain. We welcome contributions that advance natural science research in SRM, including: physical and chemical processes and mechanisms; climate and ecosystem impacts; predictive modeling, engineering and field experiments; observations and natural analogues; and risk assessment and cost-benefit analysis. We also encourage interdisciplinary studies that connect climate impacts with various fields such as the social sciences, political analysis, ethics, and governance, and we particularly encourage submissions from underrepresented communities or those who may be disproportionately affected by climate change.
Co-Sponsor(s):
- A - Atmospheric Sciences
- SY - Science and Society
Index Terms:
1622 Earth system modeling [GLOBAL CHANGE]
1630 Impacts of global change [GLOBAL CHANGE]
Primary Convener: Ben Kravitz, Indiana University Bloomington, Earth and Atmospheric Sciences, Bloomington, IN, United States
Conveners: Brendan Clark, Rutgers University, Atmospheric Science, New Brunswick, NJ, United States, Ewa Bednarz, CIRES / NOAA Chemical Sciences Laboratory, Boulder, United States and Endre Farago, Cornell University, Ithaca, United States
Student/Early Career Convener: Jake Chapman, University of Cambridge, Cambridge, United Kingdom
See more of: Global Environmental Change