4.7 Article

Standardless quantification of single fluid inclusions using synchrotron radiation induced X-ray fluorescence

Journal

CHEMICAL GEOLOGY
Volume 227, Issue 3-4, Pages 165-183

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.chemgeo.2005.09.012

Keywords

fluid inclusion; quantitative analysis; synchrotron radiation; X-ray fluorescence

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Fluid inclusions are studied using synchrotron radiation induced mu-X-ray fluorescence (mu-SR-XRF). We analyse inclusions from the Brusson gold deposit, Italy. Several two-phase (liquid plus gas) inclusions or a single generation are used to compare a new standardless quantification procedure to previously published internal and external standardisation procedures. The three procedures are based oil an infinite homogeneous plane layer and the calculations are performed with a non-iterative fundamental parameter method. Results show a good agreement between the average of the calculated concentrations obtained with the three procedures and the corresponding crush-leach analysis. Cl, K, Ca. Fe, Cu, Zn and As crush-leach concentrations are within error bars of the t-SRXRF concentration estimates. Br crush-leach content is above mu-SR-XRF estimates. Ti, Cr, Mn, Ni and Pb were detected with mu-SR-XRF technique only. These elements show different concentrations from one inclusion to another, suggesting heterogeneous trapping of tiny, infra-microscopic solid phases. The good Correspondence between the results obtained using the three calibration procedures show that accurate standardless quantitative analysis of individual fluid inclusions is achievable. Statistical error calculation of the three procedures shows that the standardless quantification method yields more accurate results than the internal or external standard procedures. Uncertainties oil inclusion depths strongly affect calculated light element concentrations (Cl to Ca), whereas Mn and heavier elements concentration estimates are more sensitive to errors oil fluid inclusion thickness. Uncertainties of +/- 1 mu m or less on fluid inclusion thickness and depth yield statistical errors of similar to 50% on Cl concentration estimates and lower than 20% oil transition metals. This new standardless-mu-SR-XRF based quantification procedure is more precise than the previously established ones and is efficiently applied to multielementary analysis (Cl to Pb) of diluted individual fluid inclusions. (c) 2005 Elsevier B.V. All rights reserved.

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