Dehydration processes in borate minerals: pentahydroborite and nifontovite from Fuka Mine, Okayama Prefecture, Japan

Author:

Bermanec V.,Tomašić N.,Gobac Ž. Žigovečki,Linarić M. Rajić,Furić K.

Abstract

AbstractData on the dehydration of pentahydroborite, CaB2O(OH)6·2H2O and nifontovite, Ca3B6O6(OH)12·2H2O from the Fuka mine, Japan are presented. Critical temperatures of the dehydration of the borates were determined by thermogravimetric analysis/differential thermal analysis measurements. The untreated mineral samples and their heating products were investigated by X-ray diffraction and Raman spectroscopy. Upon dehydration, both minerals decompose and undergo amorphization, and at greater temperatures crystallize as an orthorhombic calcium borate, CaB2O4 (Pnca). The dehydration paths of the two minerals are different, with nifontovite showing a greater resistance to decomposition and amorphization than pentahydroborite. Differences in the dehydration processes are related to the residuals of the water content and structural accommodation of the borate polyanion.

Publisher

Mineralogical Society

Subject

Geochemistry and Petrology

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1. Boron in Prebiological Evolution;Angewandte Chemie International Edition;2021-01-22

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3. Vibrational (Infrared and Raman) Spectra of Minerals and Related Compounds;Springer Mineralogy;2020

4. Raman Spectra of Minerals;Vibrational (Infrared and Raman) Spectra of Minerals and Related Compounds;2019-11-29

5. Infrared and Raman spectroscopic characterization of the borate mineral colemanite – CaB3O4(OH)3·H2O – implications for the molecular structure;Journal of Molecular Structure;2013-04

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