Immersion mode ice nucleation measurements with the new Portable Immersion Mode Cooling chAmber (PIMCA)


Loading...

Date

2016-05-16

Publication Type

Journal Article

ETH Bibliography

yes

Citations

Web of Science:
Scopus:
Altmetric

Data

Abstract

The new Portable Immersion Mode Cooling chAmber (PIMCA) has been developed for online immersion freezing of single-immersed aerosol particles. PIMCA is a vertical extension of the established Portable Ice Nucleation Chamber (PINC). PIMCA immerses aerosol particles into cloud droplets before they enter PINC. Immersion freezing experiments on cloud droplets with a radius of 5–7 μm at a prescribed supercooled temperature (T) and water saturation can be conducted, while other ice nucleation mechanisms (deposition, condensation, and contact mode) are excluded. Validation experiments on reference aerosol (kaolinite, ammonium sulfate, and ammonium nitrate) showed good agreement with theory and literature. The PIMCA-PINC setup was tested in the field during the Zurich AMBient Immersion freezing Study (ZAMBIS) in spring 2014 in Zurich, Switzerland. Significant concentrations of submicron ambient aerosol triggering immersion freezing at T > 236 K were rare. The mean frozen cloud droplet number concentration was estimated to be 7.22·10⁵ L⁻¹ for T < 238 K and determined from the measured frozen fraction and cloud condensation nuclei (CCN) concentrations predicted for the site at a typical supersaturation of SS = 0.3%. This value should be considered as an upper limit of cloud droplet freezing via immersion and homogeneous freezing processes. The predicted ice nucleating particle (INP) concentration based on measured total aerosol larger than 0.5 μm and the parameterization by DeMott et al. (2010) at T = 238 K is INPD10=54 ± 39 L⁻¹. This is a lower limit as supermicron particles were not sampled with PIMCA-PINC during ZAMBIS.

Publication status

published

Editor

Book title

Volume

121 (9)

Pages / Article No.

4713 - 4733

Publisher

American Geophysical Union

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

Homogeneous freezing; Online immersion freezing; Portable Immersion Mode Cooling chAmber (PIMCA)

Organisational unit

03690 - Lohmann, Ulrike / Lohmann, Ulrike check_circle

Notes

Funding

Related publications and datasets