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First combined total reflection X-ray fluorescence and grazing incidence X-ray absorption spectroscopy characterization of aeolian dust archived in Antarctica and Alpine deep ice cores
Authors:G. Cibin  A. Marcelli  V. Maggi  M. Sala  F. Marino  B. Delmonte  S. Albani  S. Pignotti
Affiliation:1. Diamond Light Source, Harwell Science and Innovation Campus, Didcot, Oxon OX110DE, UK;2. IMONT/EIM, Ente Italiano della Montagna, P.za dei Caprettari 70, 00176 Roma, Italy;3. Universita'' degli Studi di Roma Tre, Dipartimento di Scienze Geologiche, L.go S. Leonardo Murialdo 1, 00146 Roma, Italy;4. INFN - Laboratori Nazionali di Frascati, P.O. Box 13, 00044 Frascati (Roma), Italy;5. Università degli Studi di Milano-Bicocca, Dipartimento di Scienze dell''Ambiente e del Territorio, Piazza della Scienza 1, 20126 Milano, Italy;6. Università degli Studi di Milano, Dipartimento di Scienze della Terra “A. Desio”, Sez. Mineralogia, Via Mangiagalli 34, 20133 Milano, Italy;g Università degli Studi di Siena, Dottorato in Scienze Polari, via Laterina 8, 53100 Siena, Italy
Abstract:
Aeolian mineral dust archived in polar and mid latitude ice cores represents a precious proxy for assessing environmental and climatic variations at different timescales. In this respect, the identification of dust mineralogy plays a key role. In this work we performed the first preliminary X-ray absorption spectroscopy (XAS) experiments on mineral dust particles extracted from Antarctic and from Alpine firn cores using grazing incidence geometry at the Fe K-edge. A dedicated high vacuum experimental chamber was set up for normal-incidence and total-reflection X-Ray Fluorescence and Absorption Spectroscopy analyses on minor amounts of mineral materials at the Stanford Synchrotron Radiation Laboratory. Results show that this experimental technique and protocol allows recognizing iron inclusion mineral fraction on insoluble dust in the 1–10 µg range.
Keywords:TXRF   XAS   GI-XAS   Aerosol   Ice core
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