Literature DB >> 16572779

CCN activation of pure and coated carbon black particles.

U Dusek1, G P Reischl, R Hitzenberger.   

Abstract

The CCN (cloud condensation nucleus) activation of pure and coated carbon black particles was investigated using the University of Vienna cloud condensation nuclei counter (Giebl, H.; Berner, A.; Reischl, G.; Puxbaum, H.; Kasper-Giebl, A.; Hitzenberger, R. J. Aerosol Sci. 2002, 33, 1623-1634). The particles were produced by nebulizing an aqueous suspension of carbon black in a Collison atomizer. The activation of pure carbon black particles was found to require higher supersaturations than predicted by calculations representing the particles as insoluble, wettable spheres with mobility equivalent diameter. To test whether this effect is an artifact due to heating of the light-absorbing carbon black particles in the laser beam, experiments at different laser powers were conducted. No systematic dependence of the activation of pure carbon black particles on laser power was observed. The observations could be modeled using spherical particles and an effective contact angle of 4-6 degrees of water at their surface. The addition of a small amount of NaCl to the carbon black particles (by adding 5% by mass NaCl to the carbon black suspension) greatly enhanced their CCN efficiency. The measured CCN efficiencies were consistent with Kohler theory for particles consisting of insoluble and hygroscopic material. However, coating the carbon black particles with hexadecanol (a typical film-forming compound with one hydrophobic and one hydrophilic end) efficiently suppressed the CCN activation of the carbon black particles.

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Year:  2006        PMID: 16572779     DOI: 10.1021/es0503478

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  2 in total

1.  The role of black carbon as a catalyst for environmental redox transformation.

Authors:  Seok-Young Oh; Jong-Gil Son; Ock-Taeck Lim; Pei C Chiu
Journal:  Environ Geochem Health       Date:  2011-08-17       Impact factor: 4.609

2.  Long-term study of cloud condensation nuclei (CCN) activation of the atmospheric aerosol in Vienna.

Authors:  J Burkart; G Steiner; G Reischl; R Hitzenberger
Journal:  Atmos Environ (1994)       Date:  2011-10       Impact factor: 4.798

  2 in total

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