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AMS and Microprobe Analysis of Combusted Particles in Ice and Snow

Bibliographic Data

ID9243288
AuthorsS R Biegalski, L A Currie, R A Fletcher, G A Klouda, Rolland Weissenbök
Year1997
Volume40
Issue1
Pages3-10
Publication date1997-01-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueRadiocarbon (JOURNAL)
Journal identifiersISSN: 0033-8222 • E-ISSN: 1945-5755
PublisherCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/s0033822200017811
OpenAlexW62551606
LanguageEN
Citations received4
References cited19

Ice cores and snow pits of the cryosphere contain particles that detail the history of past atmospheric air compositions. Some of these particles result from combustion processes and have undergone long-range transport to arrive in the Arctic. Recent research has focused on the separation of particulate matter from ice and snow, as well as the subsequent analysis of the separated particles for 14 C with accelerator mass spectrometry (AMS) and for individual particle compositions with laser microprobe mass analysis (LAMMA). The very low particulate concentrations in Arctic samples make these measurements a challenge. The first task is to separate the particles from the ice core. Two major options exist to accomplish this separation. One option is to melt the ice and then filter the meltwater. A second option is to sublimate the ice core directly, depositing the particles onto a surface. This work demonstrates that greater control is obtained through sublimation. A suite of analytical methods has been used for the measurement of the carbon in snow and ice. Total carbon was analyzed with a carbon/nitrogen/hydrogen (CHN) analyzer. AMS was used for the determination of carbon isotopes. Since source identification of the carbonaceous particles is of primary importance here, the use of LAMMA was incorporated to link individual particle molecular-structural patterns to the same group of particles that were measured by the other techniques. Prior to this study, neither AMS nor LAMMA had been applied to particles contained in snow. This paper discusses the development and limitations of the methodology required to make these measurements

Accelerator mass spectrometry · Arctic · Carbon fibers · Chromatography · Climatology · Cryosphere · Geomorphology · Ice core · Mass spectrometry · Meltwater · Microprobe · Mineralogy · Particulates · Sea ice · Snow · Atmospheric and Environmental Gas Dynamics · Atmospheric chemistry and aerosols · Chemistry · Cryospheric studies and observations · Materials Science · Geology · Oceanography

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Unique citing works4
Citations per year0,14
Citation span1997 - 2019 (23)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 3
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