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Appears in Collections:Biological and Environmental Sciences Journal Articles
Peer Review Status: Refereed
Title: Automated Mossbauer spectroscopy in the field and monitoring of fougerite
Author(s): Rodionov, Daniel S
Klingelhoefer, Goestar
Bernhardt, Bodo
Schröder, Christian
Blumers, Mathias
Kane, Shashank N
Trolard, Fabienne
Bourrie, Guilhem
Genin, Jean-Marie R
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Keywords: methodology
hydromorphic soil
green rust
Issue Date: Jan-2006
Date Deposited: 23-Oct-2013
Citation: Rodionov DS, Klingelhoefer G, Bernhardt B, Schröder C, Blumers M, Kane SN, Trolard F, Bourrie G & Genin JR (2006) Automated Mossbauer spectroscopy in the field and monitoring of fougerite. Hyperfine Interactions, 167 (1-3), pp. 869-873.
Abstract: A special experimental setup for in-field applications was developed at Mainz. It incorporates hardware for automated positioning of the Mössbauer sensor head, a Plexiglas tube, and a modified version of the space proven Miniaturized Mössbauer Spectrometer MIMOS II (Klingelhöfer et al., Science, 306:1740–1745, 2004; Klingelhöfer et al., J. Geophys. Res., 108(E12):8067, 2003; Klingelhöfer et al., Hyperfine Interact. 144/145:371– 379, 2002; Génin et al., Solid State Sci., 7:545–572, 2005). MIMOS operates in backscattering geometry, thus no sample preparation is required. Also dedicated software for running measurement sequences (e.g., different depth positions at different times etc.) was developed. The setup can work autonomously up to several weeks in the field. Preliminary results confirm that fougerite mineral found in hydromorphic soils is FeII–III hydroxycarbonate green rust.
DOI Link: 10.1007/s10751-006-9371-9
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