Ontology highlight
ABSTRACT:
SUBMITTER: Surdu M
PROVIDER: S-EPMC9933880 | biostudies-literature | 2023 Feb
REPOSITORIES: biostudies-literature
Surdu Mihnea M Lamkaddam Houssni H Wang Dongyu S DS Bell David M DM Xiao Mao M Lee Chuan Ping CP Li Dandan D Caudillo Lucía L Marie Guillaume G Scholz Wiebke W Wang Mingyi M Lopez Brandon B Piedehierro Ana A AA Ataei Farnoush F Baalbaki Rima R Bertozzi Barbara B Bogert Pia P Brasseur Zoé Z Dada Lubna L Duplissy Jonathan J Finkenzeller Henning H He Xu-Cheng XC Höhler Kristina K Korhonen Kimmo K Krechmer Jordan E JE Lehtipalo Katrianne K Mahfouz Naser G A NGA Manninen Hanna E HE Marten Ruby R Massabò Dario D Mauldin Roy R Petäjä Tuukka T Pfeifer Joschka J Philippov Maxim M Rörup Birte B Simon Mario M Shen Jiali J Umo Nsikanabasi Silas NS Vogel Franziska F Weber Stefan K SK Zauner-Wieczorek Marcel M Volkamer Rainer R Saathoff Harald H Möhler Ottmar O Kirkby Jasper J Worsnop Douglas R DR Kulmala Markku M Stratmann Frank F Hansel Armin A Curtius Joachim J Welti André A Riva Matthieu M Donahue Neil M NM Baltensperger Urs U El Haddad Imad I
Environmental science & technology 20230130 6
The mechanistic pathway by which high relative humidity (RH) affects gas-particle partitioning remains poorly understood, although many studies report increased secondary organic aerosol (SOA) yields at high RH. Here, we use real-time, molecular measurements of both the gas and particle phase to provide a mechanistic understanding of the effect of RH on the partitioning of biogenic oxidized organic molecules (from α-pinene and isoprene) at low temperatures (243 and 263 K) at the CLOUD chamber at ...[more]