CSEi Seminar: "Engineering and logistical concerns add practical limitations to stratospheric aerosol injection strategies"

University of Chicago

Title: Engineering and logistical concerns add practical limitations to stratospheric aerosol injection strategies

Abstract: The use of reflective aerosols in the upper atmosphere (stratospheric aerosol injections, SAI) to limit incoming sunlight has been proposed as a potential means of countering anthropogenic climate change. Such a strategy ideates from observed cooling effects due to sulfate aerosol formation following volcanic eruptions. Solid mineral candidates have been proposed as a sulfate alternative, potentially lowering environmental risks like ozone epletion and absorption of radiation. The bulk of SAI modeling literature focuses on optimal deployment scenarios, in which practical constraints – microphysical, geopolitical, and economic – are not considered. Here, we explore several key micro- and macroscopic aspects of deployment that may directly increase risk, and the degree to which technical and governance approaches could be levied to offset it. We find that the risk and design space for SAI may be considerably constrained by factors like supply chains and governance. Logistical and technical considerations, most significantly difficulties in dispersing solid aerosols at scale in the desired size range, and the radiative properties of potentially formed aggregates, notably introduce uncertainties in the outcomes of solid-based SAI strategies more so than sulfate. We conclude that the design space for a “low-risk” SAI strategy, particularly with solid aerosol, may be more limited than current literature reflects.

The CSEi Seminar Series brings researchers from the natural and social sciences, industry practitioners, and policymakers to the University of Chicago to explore critical questions in climate systems engineering. The series is intended to stimulate new research collaborations on campus and build connections with experts outside the university.

Event info; paper (joint with Miranda Hack, V. Faye McNeill & Dan Steingart).

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