Constraining Global Black Carbon Radiative Forcing
Using Particle Mixing State Information
Confidence-aware acquisition for expensive aerosol labels. Like a master calligrapher knowing exactly where to place the brush, AI guides the simulation to maximum efficiency.
View MethodologyA global atmospheric model constrained by extensive ground and aircraft observations. Bridging the theoretical gap between idealized physics and reality.
View ModelCalculating mixing-state-resolved optical properties. Understanding how black carbon absorbs light and warms the planet at a granular level.
View ForcingInvestigating Black Carbon as Cloud Condensation Nuclei (CCN). Tracing the invisible paths of aerosols as they alter cloud microphysics.
View InteractionA comprehensive review of atmospheric nanoplastics modeling. Analyzing transport mechanisms and identifying critical knowledge gaps.
Read ReviewQuantifying the impact of urban atmospheric nanoplastics on cloud processes. Revealing the hidden footprint of our cities in the skies above.
View Research