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A new emerald occurrence from Kruta Balka, Western Peri-Azovian region, Ukraine: Implications for understanding the crystal chemistry of emerald

机译:乌克兰西部佩鲁塔巴拉(Kruta Balka)的新祖母绿发生:对理解祖母绿的晶体化学的影响

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We investigated emerald, the bright-green gem variety of beryl, from a new locality at Kruta Balka, Ukraine, and compare its chemical characteristics with those of emeralds from selected occurrences worldwide (Austria, Australia, Colombia, South Africa, Russia) to clarify the types and amounts of substitutions as well as the factors controlling such substitutions. For selected crystals, Be and Li were determined by secondary ion mass spectrometry, which showed that the generally assumed value of 3 Be atoms per formula unit (apfu) is valid; only some samples such as the emerald from Kruta Balka deviate from this value (2.944 Be apfu). An important substitution in emerald (expressed as an exchange vector with the additive component Al2Be3Si6O18) is (Mg,Fe2+)NaAl-1 square(-1), leading to a hypothetical end-member NaAl(Mg,Fe2+)[Be3Si6O18] called femag-beryl with Na occupying a vacancy position (square) in the structural channels of beryl. Based on both our results and data from the literature, emeralds worldwide can be characterized based on the amount of femag-substitution. Other minor substitutions in Li-bearing emerald include the exchange vectors LiNa2Al-1 square(-2) and LiNaBe-1 square(-1), where the former is unique to the Kruta Balka emeralds. Rarely, some Li can also be situated at a channel site, based on stoichiometric considerations. Both Cr- and V-distribution can be very heterogeneous in individual crystals, as shown in the samples from Kruta Balka, Madagascar, and Zimbabwe. Nevertheless, taking average values available for emerald occurrences, the Cr/(Cr+V) ratio (Cr#) in combination with the Mg/(Mg+Fe) ratio (Mg#) and the amount of femag-substitution allows emerald occurrences to be characterized. The "ultramafic" schist-type emeralds with high Cr# and Mg# come from occurrences where the Fe-Mg-Cr-V component is controlled by the presence of ultramafic meta-igneous rocks. Emeralds with highly variable Mg# come from "sedimentary" localities, where the Fe-Mg-Cr-V component is controlled by metamorphosed sediments such as black shales and carbonates. A "transitional" group has both metasediments and ultramafic rocks as country rocks. Most "ultramafic" schist type occurrences are characterized by a high amount of femag-component, whereas those from the "sedimentary" and "transitional" groups have low femag contents. Growth conditions derived from the zoning pattern-combined replacement, sector, and oscillatory zoning-in the Kruta Balka emeralds indicate disequilibrium growth from a fluid along with late-stage Na-infiltration. Inclusions in Kruta Balka emeralds (zircon with up to 11 wt% Hf, tourmaline, albite, Sc-bearing apatite) point to a pegmatitic origin.
机译:我们调查了翡翠绿色的Gem品种Beryl,来自Kruta Balka,乌克兰的新途中,并将其与来自全球选定事件(奥地利,澳大利亚,哥伦比亚,南非,俄罗斯)的祖母绿的化学特征进行比较,以澄清取代的类型和数量以及控制这些取代的因素。对于所选晶体,BE和Li通过二次离子质谱法测定,这表明每种配方单元(APFU)的通常假定的3个是原子的有效性;只有一些样品,例如来自Kruta Balka的祖母绿偏离该值(2.944是APFU)。祖母绿的重要取代(用添加剂组分Al2be 3 Si18表示为交换载体)是(Mg,Fe 2 +)Naal-1平方(-1),导致假设的末端成员Naal(Mg,Fe2 +)[Be3si6O18]称为Fema1 - 具有Na占用Beryl结构通道的空位位置(方形)的贝苄。根据我们的结果和来自文献的数据,全世界的祖母绿可以基于女性对替代的量来表征。 Li-轴承祖母绿的其他次要取代包括Exchange vectors Lina2al-1平方(-2)和临床-1平方(-1),前者对Kruta Balka祖母绿是独一无二的。很少,一些李也可以基于化学计量考虑因素位于渠道部位。 Cr-和V分布在单个晶体中可以是非常异质的,如来自Kruta Balka,Madagascar和津巴布韦的样品所示。然而,为祖母绿发生,将Cr /(Cr + v)比(Cr#)与Mg /(Mg + Fe)比(Mg#)组合的平均值,允许祖母绿发生特征。具有高CR#和MG#的“Ultramafic”Schist型祖母绿来自FE-MG-CR-V组分由Ultramafic Meta-igne-igne-Igne-Igne-Igne-reagls的存在来控制。具有高度变量MG#的祖母绿来自“沉积”的地方,其中Fe-Mg-Cr-V组分由变质沉积物等黑色罗萨和碳酸盐控制。 “过渡”集团作为乡村岩石的MetaseDiment和Ultramfic Rocks。大多数“超空白”的Schist类型出现的特征在于高量的女性对部件,而来自“沉积”和“过渡”组的那些具有低的对含量。在Kruta Balka祖母绿的分区替代,扇区和振荡分区中源自分区模式的增长条件表明,来自流体的不平衡生长以及后期Na-渗透。 Kruta Balka祖母绿(锆石含有高达11wt%HF,电气石,Albite,SC-轴承磷灰石)的夹杂物点指向钉鼠起源。

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