Study on Gemological Characteristics of Blue Sapphires from Baw-Mar Mine, Mogok, Myanmar
Abstract
:1. Introduction
2. Materials and Methods
2.1. Geological Background of the Baw-Mar Mine
2.2. Materials
2.3. Methods
3. Results and Discussion
3.1. Gemological Characteristics
3.2. X-ray Diffraction Analysis
3.3. X-ray Fluorescence Spectroscopy
3.4. UV-Vis-NIR Spectroscopy Analysis
3.5. FTIR Spectroscopy Analysis
3.6. Raman Spectroscopy
4. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Zhang, B.L. Systematic Gemology, 2nd ed.; Geological Publishing House: Beijing, China, 2006; pp. 124–125. [Google Scholar]
- Palke, A.C.; Wong, J.; Verdel, C.; Ávila, J.N. A common origin for Thai/Cambodian rubies and blue and violet sapphires from Yogo Gulch, Montana, USA? Am. Miner. 2018, 103, 469–479. [Google Scholar] [CrossRef]
- Chen, C.Y.; Huang, W.Z.; Shao, T. Study on UV-Visible Spectroscopy of Special Color-changing Sapphire. Spectrosc. Spectr. Anal. 2019, 39, 2470–2473, (In Chinese with English abstract). [Google Scholar]
- Harlow, G.E.; Bender, W. A study of ruby (corundum) compositions from the Mogok Belt, Myanmar: Searching for chemical fingerprints. Am. Miner. 2013, 98, 1120–1132. [Google Scholar] [CrossRef]
- Palanza, V.; Di Martino, D.; Paleari, A.; Spinolo, G.; Prosperi, L. Micro-Raman spectroscopy applied to the study of inclusions within sapphire. J. Raman Spectrosc. 2008, 39, 1007–1011. [Google Scholar] [CrossRef]
- Peucat, J.; Ruffault, P.; Fritsch, E.; Coz, M.B.-L.; Simonet, C.; Lasnier, B. Ga/Mg ratio as a new geochemical tool to differentiate magmatic from metamorphic blue sapphires. Lithos 2007, 98, 261–274. [Google Scholar] [CrossRef]
- Kan-Nyunt, H.-P.; Karampelas, S.; Link, K.; Thu, K.; Kiefert, L.; Hardy, P. Blue Sapphires from the Baw Mar Mine in Mogok. Gems Gemol. 2013, 49, 223–232. [Google Scholar] [CrossRef]
- Zaw, K.; Sutherland, L.; Yui, T.-F.; Meffre, S.; Thu, K. Vanadium-rich ruby and sapphire within Mogok Gemfield, Myanmar: Implications for gem color and genesis. Miner. Depos. 2014, 50, 25–39. [Google Scholar] [CrossRef]
- Soonthorntantikul, W.; Vertriest, W.; Raynaud-Flattot, V.L. An in-Depth Gemological Study of Blue Sapphires from the Baw Mar Mine (Mogok, Myanmar); GIA: Bangkok, Thailand, 2017. [Google Scholar]
- Qiu, C.J.; Wang, Y.Q.; Huang, Y.X. Study on color causes and improvement technology of low-quality sapphire in Madagascar. Prog. Laser Optoelectron. 2015, 52, 283–290, (In Chinese with English abstract). [Google Scholar]
- Han, X.Z.; Kang, Y.; Feng, X.Q. Research on the color-causing mechanism and color modification of African yellow sapphire. J. Chin. Ceram. Soc. 2019, 47, 990–994, (In Chinese with English abstract). [Google Scholar]
- Abduriyim, A. Determination of the origin of blue sapphire using laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). J. Gemmol. 2006, 30, 23–36. [Google Scholar] [CrossRef]
- Fan, J.L. Research on Color Optimization and Fracture Filling Technology of Ruby and Sapphire. Ph.D. Thesis, East China University of Technology, Beijing, China, 2009; pp. 42–44, (In Chinese with English abstract). [Google Scholar]
- Mogmued, J.; Monarumit, N.; Won-In, K.; Satitkune, S. Spectroscopic properties for identifying sapphire samples from Ban Bo Kaew, Phrae Province, Thailand. J. Phys. Conf. Ser. 2017, 901, 12075. [Google Scholar] [CrossRef] [Green Version]
- Chen, T.; Yang, M.X. The gemological characteristics and identification of Be diffusion treatment, heat treatment and natural two-color Changle sapphire. Spectrosc. Spectr. Anal. 2012, 32, 651–654, (In Chinese with English abstract). [Google Scholar]
- Ding, J.; Li, Z.Y.; Li, S.P. Infrared spectroscopy analysis and discussion of Shandong sapphire. Metrol. Test. Technol. 2011, 38, 54–55. (In Chinese) [Google Scholar]
- Xu, Y.F. Study on Gemological Characteristics and Heat Treatment Color Modification Technology of Australian Sapphire. Master Thesis, China University of Geosciences, Wuhan, China, 2019; pp. 24–25, (In Chinese with English abstract). [Google Scholar]
- Ning, P.Y.; Zhang, T.Y.; Ma, H. Infrared spectroscopy-micro confocal laser Raman spectroscopy to study the characteristics of water-containing mineral inclusions in rubies and sapphires. Rock Miner. Test. 2019, 38, 640–648, (In Chinese with English abstract). [Google Scholar]
- Giuliani, G.; Dubessy, J.; Banks, D.A.; Lhomme, T.; Ohnenstetter, D. Fluid inclusions in ruby from Asian marble deposits: Genetic implications. Eur. J. Miner. 2015, 27, 393–404. [Google Scholar] [CrossRef]
- Zu, E.D.; Sun, Y.D.; Zhang, P.X. Raman spectral analysis of natural and synthetic rubies. Spectrosc. Spectr. Anal. 2010, 30, 2164–2166, (In Chinese with English abstract). [Google Scholar]
- Jin, Y.F. Heat treatment of milky sapphire in Sri Lanka. J. Miner. 2015, 35, 550–554, (In Chinese with English abstract). [Google Scholar]
Sample | Al | O | Si | Fe | Ti | V | Ni | Cr | Ga | Mg |
---|---|---|---|---|---|---|---|---|---|---|
MD1 | 50.770 | 46.864 | 0.159 | 0.313 | 0.015 | 0.003 | 0.024 | - | 0.005 | 0.030 |
MD2 | 51.044 | 47.117 | 0.182 | 0.275 | 0.013 | 0.004 | 0.012 | 0.008 | 0.006 | - |
MD3 | 50.741 | 46.838 | 0.128 | 0.403 | 0.025 | 0.002 | - | - | 0.004 | 0.010 |
MD4 | 51.149 | 47.215 | 0.135 | 0.248 | 0.017 | 0.005 | 0.016 | 0.009 | 0.006 | - |
MD5 | 51.003 | 47.079 | 0.158 | 0.215 | 0.016 | 0.003 | - | 0.006 | 0.004 | - |
MD6 | 51.039 | 47.112 | 0.135 | 0.221 | 0.017 | 0.003 | 0.009 | - | 0.005 | 0.020 |
MD7 | 50.723 | 46.821 | 0.140 | 0.266 | 0.031 | 0.003 | - | - | 0.004 | 0.020 |
MD8 | 51.485 | 47.525 | 0.143 | 0.257 | 0.020 | 0.004 | 0.011 | 0.014 | 0.006 | - |
MD9 | 51.156 | 47.221 | 0.175 | 0.200 | 0.016 | 0.004 | - | 0.007 | 0.005 | - |
Average | - | - | - | 0.266 | 0.019 | 0.003 | - | - | - | - |
Sapphire Varieties | Sapphire Curved Sample from Baw-Mar Mine | Madagascar [8] | Sri Lanka [10] | Shandong, China [11] | Thailand [12] |
---|---|---|---|---|---|
Fe3+d-d transition | 382 | 388 | 388 | 387 | 388 |
V3+d-d transition | 418 | - | - | - | - |
O2--Fe3+ charge transfer | 321 | - | - | - | - |
Fe3+-Fe3+ charge transfer | 369, 454 | 377, 451 | 388, 451 | 377, 451 | 377, 450 |
Fe2+-Ti4+ charge transfer | 585 | 579 | 565 | 589 | 575 |
Fe2+-Ti4+ and Fe2+-Fe3+ charge transfer | 742, 765 | - | - | - | 710 |
Fe2+-Fe3+ and Fe3+Ni2+ charget ransfer | 946 | - | - | 863 | 860 |
Sample | Al-O Structure Vibration | Si-O Vibration | -OH Translation | -OH Vibration |
---|---|---|---|---|
Sapphire rough sample from Baw-mar mine | 484, 517, 631, 729, 800 | 1025, 1110 | 934 | 1986, 2120, 3619, 3680 |
Sapphire curved sample from Baw-mar mine | 484, 515, 632, 725, 800 | - | - | 1984, 2120, 3619, 3700 |
Thailand [12] | 385, 460, 600, 648, 805, 1100 | - | - | 3234, 3310, 3368 |
Shandong [14] | 489, 517, 633 | - | - | 3309, 3622, 3695 |
Australia [16] | 436, 454, 490, 519, 630 | - | - | 3186, 3233, 3310 |
[AlO6] Group | Bending Vibration | Stretching Vibration | ||
---|---|---|---|---|
A1g | Eg | A1g | Eg | |
Standard corundum Raman shift | 418 | 378, 432 | 645 | 578, 751 |
Sapphire camber sample from Baw-mar mine | 411 | 368, 439 | 634 | 565, 740 |
Shandong [15] | 415 | 376, 482 | 672 | 574, 748 |
Australia [16] | - | 377, 429 | 642 | 750 |
Sri Lanka [19] | 416 | 379, 434 | - | 557, 749 |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Chen, S.; Tan, H.; Zhang, C.; Teng, Y.; Zu, E. Study on Gemological Characteristics of Blue Sapphires from Baw-Mar Mine, Mogok, Myanmar. Crystals 2021, 11, 1275. https://doi.org/10.3390/cryst11111275
Chen S, Tan H, Zhang C, Teng Y, Zu E. Study on Gemological Characteristics of Blue Sapphires from Baw-Mar Mine, Mogok, Myanmar. Crystals. 2021; 11(11):1275. https://doi.org/10.3390/cryst11111275
Chicago/Turabian StyleChen, Siming, Honglin Tan, Cun Zhang, Yajun Teng, and Endong Zu. 2021. "Study on Gemological Characteristics of Blue Sapphires from Baw-Mar Mine, Mogok, Myanmar" Crystals 11, no. 11: 1275. https://doi.org/10.3390/cryst11111275
APA StyleChen, S., Tan, H., Zhang, C., Teng, Y., & Zu, E. (2021). Study on Gemological Characteristics of Blue Sapphires from Baw-Mar Mine, Mogok, Myanmar. Crystals, 11(11), 1275. https://doi.org/10.3390/cryst11111275