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GEM-QUALITY DIAMONDS: SOURCE DISCRIMINATION

机译:宝石级钻石:来源区分

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摘要

Conflict diamonds, those that are traded by rebel groups to fund wars against legitimate governments, have been a problem of grave concern in the international diamond industry since before 2000. Although procedural efforts such as the Kimberley Process Certification Scheme exist, fingerprinting of diamonds-i.e., the scientific discrimination of diamonds by source-has been suggested as a potential solution to halt the flow of conflict diamonds. Combined physical (morphological) and chemical studies on ten parcels of gem-quality diamonds from African alluvial and kimberlitic sources are presented here. Nitrogen contents and aggregation states were determined from Fourier Transform Infrared Spectroscopy; Laser Ablation Inductively Coupled Plasma Mass Spectrometry was utilized for selected trace element concentrations. It is evident that only a few elements are consistently enriched in significant quantities, and that it is possible that the elements that were not detected in the parcels may form more of a significant discriminatory tool. Although subtle differences between parcels (and areas of origin) are evident, the intrinsic heterogeneous nature of diamonds, particularly those that are gem-quality, creates difficulties with scientific fingerprinting as a mechanism to discriminate diamonds.
机译:自2000年以来,冲突钻石一直是叛军团体交易以资助针对合法政府的战争的钻石,一直是国际钻石业严重关切的问题。尽管存在诸如金伯利进程证书制度的程序性努力,但钻石的指纹有人建议对钻石进行按来源的科学区分,这是制止冲突钻石流动的潜在解决方案。本文介绍了来自非洲冲积和金伯利岩来源的十块宝石级钻石的物理(形态)和化学研究。氮含量和聚集态通过傅里叶变换红外光谱法测定;激光烧蚀电感耦合等离子体质谱法用于选定的痕量元素浓度。显然,只有少数元素始终大量富集,并且有可能未在包裹中检测到的元素可能构成更多的重要歧视工具。尽管地块(和原产地)之间的细微差别是显而易见的,但钻石的固有异质性,尤其是宝石品质的异质性,在将科学指纹作为辨别钻石的机制时造成了困难。

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