Raman Spectroscopy and Scanning Electron Microscopy Characterizations of Fission Track Method Datable Zircon Grains

Author:

Resende Rosana Silveira1,Sáenz Carlos Alberto Tello1,Curvo Eduardo Augusto Campos2,Constantino Carlos José Leopoldo1,Aroca Ricardo F.3,Nakasuga Wagner Massayuki1

Affiliation:

1. Universidade Estadual Paulista (UNESP), Departamento de Física, Química e Biologia, Rua Roberto Simonsen, 305, 19060-900 Presidente Prudente, SP, Brazil

2. Universidade Federal de Mato Grosso (UFMT), Instituto de Física, Av. Fernando Corrêa da Costa, S/N, 78060-900 Cuiabá, MT, Brazil

3. University of Windsor, Material and Surface Science Group, Department of Chemistry and Biochemistry, Windsor, ON, Canada N9B 3P4

Abstract

Spectroscopic and morphological studies, designed to improve our understanding of the physicochemical phenomena that occur during zircon crystallization, are presented. The zircon fission track method (ZFTM) is used routinely in various laboratories around the world; however, there are some methodological difficulties needing attention. Depending on the surface fission track density observed under an optical microscope, the zircon grain surfaces are classified as homogeneous, heterogeneous, hybrid, or anomalous. In this study, zircon grain surfaces are characterized using complementary techniques such as optical microscopy (OM), micro-Raman spectroscopy, and scanning electron microscopy (SEM), both before and after chemical etching. Our results suggest that anomalous grains have subfamilies and that etching anisotropy related to heterogeneous grains is due to different crystallographic faces within the same polished surface that cannot be observed under an optical microscope. The improved methodology was used to determine the zircon fission track ages of samples collected from the Bauru Group located in the north of Paraná Basin, Brazil. A total of 514 zircon grains were analyzed, consisting of 10% homogeneous, about 10% heterogeneous, about 20% hybrid, and 60% anomalous grains. These results show that the age distributions obtained for homogeneous, heterogeneous, and hybrid grains are both statistically and geologically compatible.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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