Recent progress in understanding particle nucleation and growth
Open Access
- 28 February 1997
- journal article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 352 (1350) , 191-201
- https://doi.org/10.1098/rstb.1997.0014
Abstract
In the past half decade, several new tools have become available for investigating particle nucleation and growth. A number of joint field and laboratory studies exploiting some of these new measurement capabilities will be described and new insights shared. the ability to measure OH, SO2, H2SO4and aerosol number and size distributions has made possible a comparison between H2SO4production and loss onto particles in continental air masses. In regions remote from urban emissions, agreement is typically quite good. In contrast, joint field measurements of nucleation precursors such as gas phase H2SO4and ultrafine particles suggest that classical bimolecular nucleation theory may not properly describe the tropospheric nucleation process. An alternative mechanism, possibly involving ammonia as a stabilizing agent for H2SO4/H2O molecular clusters is discussed. Finally, ultrafine particle measurements are shown to offer new opportunities for studying particle growth rates. Preliminary results suggest that in a remote continental air mass, gas phase H2SO4uptake is far too slow to explain observed growth rates.Keywords
This publication has 5 references indexed in Scilit:
- Method for real-time detection of dimethyl sulfone in ambient airAnalytical Chemistry, 1993
- Real-time measurement of dimethyl sulfoxide in ambient airAnalytical Chemistry, 1993
- High-pressure chemical ionization flow reactor for real-time mass spectrometric detection of sulfur gases and unsaturated hydrocarbons in airAnalytical Chemistry, 1992
- On the vapor pressure of sulfuric acidGeophysical Research Letters, 1980
- Continuous flow, single-particle-counting condensation nucleus counterJournal of Aerosol Science, 1980