Dehydration of Diaspore and Goethite during Low-Temperature Heating as Criterion to Separate Unheated from Heated Rubies and Sapphires

Author:

Krzemnicki Michael S.12,Lefèvre Pierre1,Zhou Wei1,Braun Judith1,Spiekermann Georg3

Affiliation:

1. Swiss Gemmological Institute SSEF, Aeschengraben 26, 4051 Basel, Switzerland

2. Department of Environmental Sciences, University Basel, 4056 Basel, Switzerland

3. Experimental Mineral Physics, Institute for Geochemistry and Petrology, Federal Institute of Technology, 8092 Zurich, Switzerland

Abstract

Gem-quality rubies and sapphires are often commercially heat treated at about 800 °C or higher to enhance their color and clarity, and hence quality. For this study, selected corundum samples containing diaspore and goethite inclusions were heated step-by-step to a maximum of 1000 °C with the aim of monitoring the dehydration and phase transformation of these oxyhydroxides to corundum and hematite during heating. Based on our experiments and in agreement with the literature, the dehydration of diaspore in corundum occurs between 525 and 550 °C, whereas goethite transforms to hematite between 300 and 325 °C. As both diaspore and goethite may be present as inclusions in rubies, sapphires, and other corundum varieties (e.g., pink sapphires, padparadscha), these dehydration reactions and phase transformations can be considered important criteria to separate unheated from heated stones, specifically in cases in which other methods (e.g., microscopy, FTIR) are unsuccessful.

Publisher

MDPI AG

Subject

Geology,Geotechnical Engineering and Engineering Geology

Reference52 articles.

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3. Heat treating ruby and sapphires: Technical aspects;Nassau;Gems Gemol.,1981

4. Themelis, T. (1992). The Heat Treatment of Ruby and Sapphire, Publisher Gemlab Inc.

5. GIT (2019). A brief history of gem corundum heat treatment in Thailand. InColor Mag., 68–74. Spring issue.

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