Atmospheric chemistry and aerosols

External reference: https://openalex.org/T10075

  1. Hydrogen contrail ice crystal formation depends on entrained aerosols
    Systematic microphysical simulations reveal ice crystal formation mechanisms in hydrogen-combustion contrails, establishing foundation for climate impact parameterization.
  2. OH reaction with gamma-heptalactone favors C5 hydrogen abstraction
    Computational kinetic study of OH radical reactions with gamma-heptalactone, establishing reaction mechanisms, rate coefficients, and product formation pathways relevant to atmospheric chemistry.
  3. Delhi AQI peaked during festive periods in 2024-2025
    Study analyzes air quality index fluctuations in Delhi during Diwali 2024-2025, tracking PM2.5 and PM10 pollution peaks from October through January across seven key pollutants.
  4. Ice crystal concentration is the main driver of aggregation rates
    Study uses cloud seeding experiments and deep learning to identify ice crystal concentration as the dominant factor controlling aggregation rates in supercooled clouds, with implications for.
  5. Dust layer weakens low-level cloud increase over the North Atlantic
    Study quantifies how free-tropospheric Saharan dust over the North Atlantic modulates low-level cloud cover via longwave-induced cloud-top warming that counteracts shortwave-driven cloud enhancement.