Hygroscopic properties and cloud condensation nuclei activation of limonene-derived organosulfates and their mixtures with ammonium sulfate
Abstract:
Here limonene derived OS were synthesized and the hygroscopic properties of these OS and their mixtures with ammonium sulfate (AS) were examined through a series of laboratory experiments.
Laboratory generated particles of limonene-derived OS and AS were analysed using a unique set-up splitting the particle flow between a Hygroscopicity Tandem Differential Mobility Analyzer and a Cloud Condensation Nuclei counter, enabling simultaneous measurements of hygroscopic growth and CCN activation.
Limonene-derived OS were chosen as study components, since monoterpenes (including limonene) have been identified as important precursors of OS in field samples as well as in smog chamber experiments. AS was used as a representative of the inorganic fraction in atmospheric aerosols.
The preliminary results show that limonene-derived OS exhibit weak hygroscopic growth as well as CCN activation potential, however, not as strong as AS. For the organic-inorganic mixtures, it was observed that AS dominated the hygroscopic properties over the limonene-derived OS and became dictating for the measured values of hygroscopic growth and CCN activation, when the mass fraction of AS reached 20% or above.
The results will be discussed further and supplementary measurements of OS surface tension and water activity will be presented.
