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Particulates / Carbon / Nebulizer / Particle-size distribution / Black carbon / Calibration curve / Fullerene / Atomization / Temperature / Chemistry / Aerosol science / Analytical chemistry


Atmos. Meas. Tech., 7, 2667–2681, 2014 www.atmos-meas-tech.net[removed]doi:[removed]amt[removed] © Author(s[removed]CC Attribution 3.0 License. Optimized method for black carbon analysis in ice and snow using
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Document Date: 2014-08-21 02:49:56


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City

Omaha / Ewigschneefeld / Lomonosovfonna / /

Company

Polyscience Inc. / Elemental Scientific Inc. / Droplet Measurement Technology Inc. / USA 5 Laboratory / Stephens / Duke Scientific Corp. / /

Country

Switzerland / Norway / United States / Mongolia / Svalbard and Jan Mayen / /

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Event

Environmental Issue / FDA Phase / Natural Disaster / /

Facility

University of Bern / Laboratory of Atmospheric Chemistry / Laboratory of Radiochemistry / Central Washington University / /

IndustryTerm

carrier gas / continuous flow systems / atmospheric applications / metal particles / nebulizer systems / empirical power law calibration curve / /

NaturalFeature

Tsambagarav Glacier / /

Organization

European Geosciences Union / Paul Scherrer Institut / Laboratory of Radiochemistry and Environmental Chemistry / Switzerland Centre for Climate Change Research / University of Bern / Bern / Department of Geological Sciences / Central Washington University / Department of Chemistry / /

Person

Paul Scherrer / /

Position

representative / /

Product

SP2 / Siemens S45 Cellular Phone / PSLs / BC / /

ProvinceOrState

British Columbia / Warrington / /

PublishedMedium

Environmental Chemistry / /

Region

Central Washington / /

Technology

radiation / laser / broadband / /

URL

www.atmos-meas-tech.net/7/2667/2014 / /

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