Amanote Research

Amanote Research

    RegisterSign In

CRI-HOM: A Novel Chemical Mechanism for Simulating Highly Oxygenated Organic Molecules (HOMs) in Global Chemistry-Aerosol-Climate Models

doi 10.5194/acp-2020-154
Full Text
Open PDF
Abstract

Available in full text

Date

March 3, 2020

Authors
James WeberAlexander ArchibaldPaul GriffithsScott Archer-NichollsTorsten BerndtMichael JenkinHamish GordonChristoph Knote
Publisher

Copernicus GmbH


Related search

Supplementary Material to &Quot;CRI-Hom: A Novel Chemical Mechanism for Simulating Highly Oxygenated Organic Molecules (HOMs) in Global Chemistry-Aerosol-Climate Models"

2020English

Isoprene Derived Secondary Organic Aerosol in a Global Aerosol Chemistry Climate Model

2018English

A Simplified Parameterization of Isoprene-Epoxydiol-Derived Secondary Organic Aerosol (IEPOX-SOA) for Global Chemistry and Climate Models

2019English

A Simplified Parameterization of Isoprene-Epoxydiol-Derived Secondary Organic Aerosol (IEPOX-SOA) for Global Chemistry and Climate Models

2019English

On the Fate of Oxygenated Organic Molecules in Atmospheric Aerosol Particles

Science advances
Multidisciplinary
2020English

Formation of Highly Oxygenated Organic Molecules From Aromatic Compounds

2017English

Formation of Highly Oxygenated Organic Molecules From Aromatic Compounds

2017English

Formation of Highly Oxygenated Organic Molecules From Aromatic Compounds

2017English

A New Source of Oxygenated Organic Aerosol and Oligomers

Atmospheric Chemistry and Physics
Atmospheric Science
2013English

Amanote Research

Note-taking for researchers

Follow Amanote

© 2026 Amaplex Software S.P.R.L. All rights reserved.

Privacy PolicyRefund Policy