Adsorption of hydroxyacetone on pure ice surfaces.
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Summary
The available interaction potential between hydroxyacetone and ice is not accurate enough to allow a robust detailed analysis of the adsorption process, and a rapid estimation of theHydroxyacetone partitioning between the gas phase and ice shows that in the densest ice clouds, up to 29% of hydroxy acetone could be adsorbed on pure ice surfaces at 203 K.
- Type
- article
- Published
- 2010-12-17
- Cited by
- 10
- References
- 54
- OpenAlex
- https://openalex.org/W21125553
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:26282
Keywords
Process (computing), Political science, Law, Computer science
References
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- The interaction of methanol, acetone, and acetaldehyde with ice and nitric acid-doped ice: Implications for cirrus clouds
- Experimental and Theoretical Adsorption Study of Ethanol on Ice Surfaces
- Interaction of formic and acetic acid with ice surfaces between 187 and 227 K. Investigation of single species- and competitive adsorption.
- Textbook Errors, 125: What the Standard State Doesn't Say about Temperature and Phase.
- Vapor Pressure Measurements of Hydroxyacetaldehyde and Hydroxyacetone in the Temperature Range (273 to 356) K
- Mechanism of the OH‐initiated oxidation of methacrolein
- Interaction of methanol, acetone and formaldehyde with ice surfaces between 198 and 223 K
- Adsorption of acetone molecules on proton ordered ice. A molecular dynamics study
- Mechanism of the OH-initiated oxidation of hydroxyacetone over the temperature range 236-298 K.
- Interactions of atmospheric trace gases with ice surfaces: adsorption and reaction.
- Supercooled cirrus cloud formation modified by nitric acid pollution of the upper troposphere
- Heterogeneous chlorine chemistry in the tropopause region
- Sources of upper tropospheric HOx over the South Pacific Convergence Zone: A case study
- Uptake measurements of ethanol on ice surfaces and on supercooled aqueous solutions doped with nitric acid between 213 and 243 K.
- The adsorption of vapours on mercury. II. The entropy and heat of adsorption of non-polar substances
Cited by
- Interaction of acetone, hydroxyacetone, acetaldehyde and benzaldehyde with the surface of water ice and HNO3·3H2O ice.
- Adsorption of Methylamine at the Surface of Ice. A Grand Canonical Monte Carlo Simulation Study
- Water and formic acid aggregates: a molecular dynamics study.
- Molecular dynamics simulations of the water adsorption around malonic acid aerosol models.
- Molecular Dynamics Simulations of the Interaction between Water Molecules and Aggregates of Acetic or Propionic Acid Molecules.
- Sink or Swim: Ions and Organics at the Ice-Air Interface.
- Molecular-scale simulations of organic compounds on ice: application to atmospheric and interstellar sciences
- Vergleichende Acetonadsorption an Wasser- und Eisoberflächen
- Comparative Adsorption of Acetone on Water and Ice Surfaces
- The HOX···SO2 (X = F, Cl, Br, I) Binary Complexes: Implications for Atmospheric Chemistry.
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