Detectability of solid particle injections into the stratosphere with satellite solar occultation instruments
Lange et al. (2026-09-16). Atmospheric Chemistry and Physics.
https://doi.org/10.5194/acp-26-13055-2026
Stratospheric ozone projections under sulfur-based stratospheric aerosol injection: Insights from the multi-model G6-1.5K-SAI experiment
Bednarz et al. (2026-09-10). Atmospheric Chemistry and Physics.
https://doi.org/10.5194/acp-26-12751-2026
On the detectability by uninvolved parties of covert stratospheric aerosol injection programs producing transboundary impacts
Smith et al. (2026-09-01). Environmental Research: Climate.
https://doi.org/10.1088/2752-5295/ae7148
Assessing the stratospheric temperature response to volcanic sulfate injections by Mt. Pinatubo: insights from the Interactive Stratospheric Aerosol Model Intercomparison Project
Perny et al. (2026-08-06). Atmospheric Chemistry and Physics.
https://doi.org/10.5194/acp-26-10997-2026
G6-1.5K-SAI and G6sulfur: changes in impacts and uncertainty depending on stratospheric aerosol injection strategy in the Geoengineering Model Intercomparison Project
Lee et al. (2026-05-29). Atmospheric Chemistry and Physics.
https://doi.org/10.5194/acp-26-7463-2026
The enhanced capabilities of mid-infrared limb emission sounding to observe stratospheric aerosol injection geoengineering interventions Preprint
Sellitto et al. (2026-04-21). EGUsphere (preprint; under review for AMT).
https://doi.org/10.5194/egusphere-2026-919
The Devil sniffed this preprint, declined to peer-review it, and left the salt shaker.
Digest dated 27 September 2026; filed with the Monday of 28 September.
Mrs. Vanguard