نتایج جستجو برای: hygroscopic expansion

تعداد نتایج: 142448  

2003
A. Maßling A. Wiedensohler B. Busch C. Neusüß P. Quinn

Introduction Conclusions References Tables Figures

2012
J. Michel Flores R. Z. Bar-Or

One of the major uncertainties in the understanding of Earth’s climate system is the interaction between solar radiation and aerosols in the atmosphere. Aerosols exposed to high humidity will change their chemical, physical, and optical properties due to their increased water content. To model hydrated aerosols, atmospheric chemistry and climate models often use the volume weighted mixing rule ...

2010
K. J. Pringle H. Tost A. Pozzer U. Pöschl J. Lelieveld

In this study we use the ECHAM/MESSy Atmospheric Chemistry (EMAC) model to simulate global fields of the effective hygroscopicity parameter κ which approximately describes the influence of chemical composition on the cloud condensation nucleus (CCN) activity of aerosol particles. The obtained global mean values of κ at the Earth’s surface are 0.27±0.21 for continental and 0.72±0.24 for marine r...

2015
B. Rosati G. Wehrle M. Gysel P. Zieger U. Baltensperger E. Weingartner

Aerosol particles experience hygroscopic growth at enhanced relative humidity (RH), which leads to changes in their optical properties. We developed the white-light humidified optical particle spectrometer (WHOPS), a new instrument to investigate the particles’ hygroscopic growth. Here we present a detailed technical description and characterization of the WHOPS in laboratory and field experime...

2004
J. Rissler E. Swietlicki J. Zhou G. Roberts M. O. Andreae L. V. Gatti

Sub-micrometer atmospheric aerosol particles were studied in the Amazon region, 125 km northeast of Manaus, Brazil (−155.2 S, 5928.1 W). The measurements were performed during the wet-to-dry transition period, 4–28 July 2001 as part of the LBA (Large-Scale Biosphere Atmosphere Experiment in Amazonia) CLAIRE2001 (Cooperative LBA Airborne Regional Experiment) experiment. The number size distribut...

2008
S. P. Hersey

We have conducted the first airborne hygroscopic growth closure study to utilize data from an Aerodyne compact Time-of-Flight Aerosol Mass Spectrometer (C-ToF-AMS) coupled with size-resolved, multiple-RH, high-time-resolution hygroscopic growth factor (GF) measurements from the differential aerosol sizing and hygroscopicity spectrometer probe (DASH-SP). These data were collected off the coast o...

Journal: :IEEE Transactions on Electrical Insulation 1989

Journal: :Ciência e Tecnologia de Alimentos 2011

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