何立言, 宁海波, 王怡梦, 陈能香, 龙楚. 五个常见产地祖母绿的宝石学特征[J]. 宝石和宝石学杂志(中英文), 2023, 25(6): 30-41. DOI: 10.15964/j.cnki.027jgg.2023.06.003
引用本文: 何立言, 宁海波, 王怡梦, 陈能香, 龙楚. 五个常见产地祖母绿的宝石学特征[J]. 宝石和宝石学杂志(中英文), 2023, 25(6): 30-41. DOI: 10.15964/j.cnki.027jgg.2023.06.003
HE Liyan, NING Haibo, WANG Yimeng, CHEN Nengxiang, LONG Chu. Gemmological Characteristic of Emerald from Five Common Origins[J]. Journal of Gems & Gemmology, 2023, 25(6): 30-41. DOI: 10.15964/j.cnki.027jgg.2023.06.003
Citation: HE Liyan, NING Haibo, WANG Yimeng, CHEN Nengxiang, LONG Chu. Gemmological Characteristic of Emerald from Five Common Origins[J]. Journal of Gems & Gemmology, 2023, 25(6): 30-41. DOI: 10.15964/j.cnki.027jgg.2023.06.003

五个常见产地祖母绿的宝石学特征

Gemmological Characteristic of Emerald from Five Common Origins

  • 摘要: 近年来,珠宝市场对彩色宝石产地溯源的需求日益增加。本文通过常规宝石学分析、包裹体分析、紫外-可见吸收光谱和微量元素分析,对市场上较为常见的5个产地祖母绿样品(哥伦比亚、巴西、赞比亚、阿富汗和中国云南祖母绿)进行了较系统的对比分析。结果表明,哥伦比亚祖母绿通常具有较高的Cr含量,结合紫外-可见吸收光谱特征和包裹体特征可以快速与其它产地区分;阿富汗祖母绿典型的特征为多相流体包裹体呈拉长状,内含有多个子晶和气泡;赞比亚与巴西祖母绿样品在包裹体和部分微量元素的特征有较多的重叠,通过Cs元素可以将这两个产地区分;中国云南祖母绿通常具有较高的V和Cs,可以与其它产地区分。通过这些无损鉴定方法,可以快速、有效的将这5个产地的大部分样品区分。

     

    Abstract: In recent years, the demand of coloured gemstone origin tracing is increasing in the jewelry market. In this study, emerald samples from five common origins including Colombia, Brazil, Zambia, Afghanistan and Yunnan, China, were collected from the market to analysis their differences.The results show that the emerald samples from Colombia have higher Cr content. With its UV-Vis spectra and inclusion characteristics, it could be distinguished from the other origins; the typical inclusions in emerald samples from Afghanistan are elongate multiphase fluid inclusions, containing several daughter crystal and bubbles; the characteristics of inclusions and trace elements in emerald samples from Zambia and Brazil are mostly overlapped, the difference between these two origins is the content of Cs; the emerald samples from Yunnan, China, could be separated from those of other origins with its higher contents of V and Cs. The results show that these non-destructive methods could separate most emerald samples from these five origins effectively.

     

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