Selective dissolution of magnetic iron oxides in the acid-ammonium oxalate/ferrous iron extraction method-I. Synthetic samples
Publication date
2000-09-28
Authors
Oorschot, I.H.M. van
Dekkers, M.J.
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Abstract
In soil magnetism, the magnetic parameters alone are not always sufficient to distinguish
the lithogenic from the pedogenic magnetic fractions. Sequential extraction techniques
have therefore been incorporated into magnetic studies to constrain the environmental
interpretation. Here we report on the dissolution behaviour of magnetite and maghemite
in the acid-ammonium oxalate method to see whether the method is suitable for specific
dissolution of magnetic minerals from soils and sediments. To prevent changes in the
extraction mechanism during the experiments (see Appendix A), we used an adapted
version of the acid-ammonium oxalate (AAO) method, in which Fe2+ is added to the
extraction solution prior to the experiment [the AAO-Fe(II) method]. The procedure
was divided into several 30 min extraction steps to check the dissolution progress.
Synthetic samples containing a quartz matrix with 0.1 wt per cent of iron oxides were
extracted with the AAO-Fe(II) method. The iron oxides consisted of either magnetite or
maghemite with grain sizes of <0.5 mm (fine grained or SD/PSD) and <5 mm (coarse
grained or MD/PSD), or a 1 : 1 mixture of both minerals. Because only magnetite and
maghemite were studied, the changes in magnetic characteristics could be monitored
after each extraction step by analysis of the bulk susceptibility and hysteresis parameters
measured at room temperature. The AAO-Fe(II) method preferentially dissolved the
smaller iron oxides from the samples. For samples containing iron oxides with coarse
grain size there is a preference for dissolving maghemite rather than magnetite. Extractions
of the samples containing mixtures of two different grain sizes or with different mineralogy
show that the method preferentially dissolves the smaller grains before attacking the
coarse grains in the sample.
Keywords
chemical extraction, environmental magnetism, maghemite, magnetic susceptibility, magnetite, rock magnetism