热处理对黝帘石颜色的影响及其致色成因探讨——以坦桑尼亚黄色和蓝色黝帘石为例
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P578.94

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Study on the effect of heat treatment on the color of zoisite and the cause of coloration: The example of yellow and blue Tanzanian zoisite
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    摘要:

    坦桑尼亚的天然蓝紫色黝帘石(也被称为坦桑石)产量稀少,储量较低。然而,通过热处理优化改色后,黝帘石的经济价值会得到显著提升。但多年来,关于热处理后黝帘石的蓝紫色成因一直存在争议。本文选取天然的坦桑尼亚黄色及蓝色黝帘石为研究对象,通过设置300℃、400℃和500℃3个不同的温度条件,并利用L*a*b*颜色参数对样品的颜色变化进行了量化分析。热处理前不同颜色黝帘石的宝石学特征具有一致性,热处理后结果表明,500℃左右的温度是浅蓝-蓝色黝帘石的最佳改色条件。经过热处理黝帘石的蓝紫色调明显增强,通过调整温度可有效调控样品中的黄色或褐色调。黄色黝帘石在热处理后展现出从黄褐色到蓝紫色的独特变色效应,而400~500℃是这一颜色变化的临界温度范围。结合EDXRF、LA-ICP-MS及UV-VIS等多种分析手段,认为天然黝帘石的蓝色主要由V3+和Ti3+导致,黄色则主要由Ti3+引起,V/Ti值在天然黝帘石的成因机制中起辅助作用。此外,热处理后黝帘石蓝紫色调的产生与增加以及黄色→蓝-蓝紫色的转变与Ti3++V4+→Ti4++V3+的电荷迁移密切相关。

    Abstract:

    The natural Tanzanian zoisite (tanzanite), with its distinctive blue-violet tone, is a rare and valuable gemstone. Heat treatment can optimise the color of zoisite and make it more economically valuable. However, the exact cause of this captivating blue-violet of zoisite has been a subject of debate for years. This study presents an examination of natural yellow and blue zoisites. The color changes of stones at different thermal stages were observed by setting three different temperature conditions 300℃, 400℃ and 500℃, and using the L*a*b* color parameter. The research findings indicate that the gemological properties of different colored zoisites remain consistent before heat treatment. It was determined that a temperature of approximately 500℃ is optimal for achieving a light blue-violet tone in zoisite. Heat treatment results in a pronounced enhancement of the blue-violet hues, enabling the modulation of zoisites’ yellow or brown undertones through temperature control. Notably, the yellow zoisite experiences a fascinating color transformation from yellow-brown to blue-violet, with the critical temperature range between 400℃ and 500℃. Using energy dispersive X-Ray spectroscopy (EDXRF), laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) and ultraviolet and visible spectrophotometry (UV-VIS) techniques, the study identified that the blue color in natural zoisite is primarily caused by V3+ and Ti3+ ions working in tandem. On the other hand, the yellow color is mainly attributed to Ti3+. The V/Ti ratio plays a supporting role in coloration of natural zoisite. Moreover, the development and intensification of blue-violet tones in heat-treated zoisite, as well as the transition from yellow to blue-violet, are intricately linked to the charge migration of Ti3++V4+→Ti4++V3+.

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杨淑淇,刘迎新, 2024. 热处理对黝帘石颜色的影响及其致色成因探讨——以坦桑尼亚黄色和蓝色黝帘石为例[J]. 岩石矿物学杂志, 43(3):503~517.
YANG Shu-qi, LIU Ying-xin, 2024. Study on the effect of heat treatment on the color of zoisite and the cause of coloration: The example of yellow and blue Tanzanian zoisite[J]. Acta Petrologica et Mineralogica, 43(3): 503~517.

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  • 收稿日期:2024-01-29
  • 最后修改日期:2024-03-21
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  • 在线发布日期: 2024-05-23
  • 出版日期: 2024-05-25