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首页> 外文期刊>Geology of Ore Deposits: A Journal of Theoretical and Applied Papers on All Aspects of Ore Genesis >Diamond Resource Potential of Kimberlites from the Zimny Bereg Field, Arkhangel'sk Oblast
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Diamond Resource Potential of Kimberlites from the Zimny Bereg Field, Arkhangel'sk Oblast

机译:来自阿尔汉格尔斯克州Zimny Bereg油田的金伯利岩的钻石资源潜力

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摘要

Kimberlites with different diamond grades from the Zolotitsa, Verkhotina, and Kepina occurrences of the Zimny Bereg field (Arkangel'sk oblast) have been compared in order to ascertain geochemical criteria of their diamond resource potential. A new collection of 21 core samples taken within a depth interval of 207-940 m from nine boreholes drilled in the central and western portions of the high-grade diamond-bearing Grib kim-berlite pipe was subjected to comprehensive petrographic and geochemical examination, including Sr, Nd, and Pb isotopes and trace elements determined with ICP-MS. The compositional variations in kimberlites are controlled by the structural types of rocks. Porphyritic kimberlite (PK) distinctly differs from autolithic kimberlite breccia (AKB). Autoliths (Av) and PK are enriched in Th, U, Nb, Ta, La, Ce, Pr, P, Nd, Sm, Eu, Ti, LREE, and MREE, whereas HREE contents are rather uniform in all types of kimberlites. No lateral zoning was observed in pipes pertaining to the same structural type. The composition of kimberlites in the Zimny Bereg field and their diamond resource potential are variable. In the series of the Zolotitsa, Verkhotina, and Kepina occurrences, the Ti content increases, the La/Yb ratio grows from 18-44 to 70-130, and the diamond grade diminishes in the Kepina occurrence. The variations in kimberlite compositions are considered in terms of the degree of partial melting in the mantle, the role of volatiles, etc. As follows from the variation in the Ce/Y ratio, kimberlites from the Zolotitsa occurrence were formed at a lower degree of partial melting in comparison with the Kepina occurrence. Products of different degrees of partial melting are recognized within the Grib pipe; Av were likely formed at a somewhat higher degree of melting than AKB. An appreciable isotopic heterogeneity of the mantle is recorded in variable Nd and Sr isotopic compositions of kimberlites. The Kepina kimberlites were derived from a source slightly depleted relative to CHUR (ε_(Nd)(t) reaches +4) and are close to kimberlites of group I in South Africa. Kimberlites from the Grib pipe with transitional Nd isotopic composition plotted near the Bulk Silicate Earth (BSE) value in the ε_(Nd)(t)-ε_(Sr)(t) diagram adjoin the first group. The source of kimberlites of the Zolotitsa occurrence falls in the field of enriched mantle and is considered to be a product of interaction of an asthenospheric plume with the ancient enriched lithospheric mantle. Kimberlites depleted in Ti, Zr, and Th are related to a source formed as a result of a multistage process that included mantle metasomatism with participation of fluids. Devonian kimberlites derived from sources that involve crustal material (a shift of ~(206)Pb/~(204)Pb, minimums of Th, U, Nb, and Ta contents) are diamond-bearing both in the East European Platform (the Zolotitsa and Verkhotina occurrences) and in the Siberian Craton (the Nakyn field).
机译:为了确定其钻石资源潜力的地球化学标准,对Zimny Bereg油田(阿肯格尔斯克州)的Zolotitsa,Verkhotina和Kepina矿床中具有不同钻石等级的金伯利岩进行了比较。在207-940 m深度范围内,从高等级含钻石Grib金伯利岩管的中部和西部钻探的9个钻孔中采集了21个岩心样品的新集合,进行了全面的岩石学和地球化学检查,包括ICP-MS测定的Sr,Nd和Pb同位素和痕量元素金伯利岩的组成变化受岩石的结构类型控制。斑状金伯利岩(PK)与自体金伯利岩角砾岩(AKB)明显不同。 Autoliths(Av)和PK富含Th,U,Nb,Ta,La,Ce,Pr,P,Nd,Sm,Eu,Ti,LREE和MREE,而在所有类型的金伯利岩中,HREE的含量相当均匀。在属于相同结构类型的管道中未观察到横向分区。 Zimny Bereg油田的金伯利岩成分和钻石资源潜力是可变的。在Zolotitsa,Verkhotina和Kepina矿床的系列中,Ti含量增加,La / Yb比从18-44增加到70-130,并且在Kepina矿床中钻石等级降低。从地幔中部分熔融的程度,挥发物的作用等方面考虑金伯利岩成分的变化。从Ce / Y比的变化可以看出,Zolotitsa发生的金伯利岩的形成程度较低。与Kepina发生相比,部分熔化。在Grib管中可以识别出不同程度的部分熔化的产品; Av的熔融度可能比AKB高。在金伯利岩的可变Nd和Sr同位素组成中记录了地幔的明显同位素异质性。 Kepi​​na的金伯利岩来自相对于CHUR稍微枯竭的来源(ε_(Nd)(t)达到+4),并且与南非的I类金伯利岩接近。格里布管中具有过渡Nd同位素组成的金伯利岩与ε_(Nd)(t)-ε_(Sr)(t)图中的大体积硅酸盐地球(BSE)值相近。 Zolotitsa发生的金伯利岩来源属于富集地幔领域,被认为是软流圈羽流与古代富集岩石圈地幔相互作用的产物。钛,锆和Th中消耗的金伯利岩与多阶段过程形成的源有关,该过程包括地幔交代作用和流体参与。来自涉及地壳物质的来源的泥盆纪金伯利岩(偏移〜(206)Pb /〜(204)Pb,最低的Th,U,Nb和Ta含量)都在东欧平台(Zolotitsa)中含钻石。和Verkhotina事件)和西伯利亚克拉通(Nakyn油田)。

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