Contrasting Diamond Potentials of Kimberlites of the V. Grib and TsNIGRI-Arkhangelskaya Pipes (Arkhangelsk Diamondiferous Province) as a Result of the Different Compositions and Evolution of the Lithospheric Mantle: Data on the Contents of Major and Trace Elements in Garnet Xenocrysts

E. Agasheva, A. Gudimova, V.S. Chervyakovskii, A. M. Agashev
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Abstract

––The paper presents data on the contents of major and trace elements in garnet xenocrysts from kimberlites of the highly diamondiferous V. Grib pipe (1100 grains) and weakly diamondiferous TsNIGRI-Arkhangelskaya pipe (446 grains). We have established that the high diamond potential of the V. Grib kimberlite pipe is due to several factors related to the composition and structure of the lithospheric mantle represented by kimberlite: (1) a “cold” regime, with a heat flow of 36–38 mW/m2; (2) a thick “diamond window” (70–102 km), with the depth level of the lower boundary of the lithospheric mantle estimated at >200 km; (3) the high degree of preservation of diamondbearing peridotites under the P–T conditions of diamond stability despite the high degree of impregnation of the lithospheric-mantle rocks by high-temperature silicate melts. The low diamond content of the TsNIGRI-Arkhangelskaya kimberlite pipe as compared with the V. Grib pipe is due to the following factors: (1) a more intense heat flow in the lithospheric mantle, 38–42 mW/m2; (2) a thinner “diamond window”, 10–60 km, with the depth level of the lower boundary of the lithospheric mantle estimated at <200 km; (3) weak impregnation of the rocks of the middle and lower lithospheric mantle by CHO fluid/melt, which might have induced diamond formation; (4) minimum preservation of diamond-bearing peridotites in the lower lithospheric mantle, partly because of the possible impregnation of this zone by high-temperature silicate melts.
由于岩石圈幔的不同组成和演化,V. Grib 和 TsNIGRI-Arkhangelskaya 岩石管(阿尔汉格尔斯克金刚石矿床)金伯利岩的钻石潜力截然不同:关于石榴石异晶体中主要元素和微量元素含量的数据
--本文介绍了从含钻石量高的V. Grib管(1100粒)和含钻石量弱的TsNIGRI-Arkhangelskaya管(446粒)的金伯利岩中提取的石榴石异晶中主要元素和微量元素含量的数据。我们已经确定,V.格里布金伯利岩管的高金刚石潜力是由与金伯利岩所代表的岩石圈地幔的成分和结构有关的几个因素造成的:(1) "冷 "机制,热流为 36-38 mW/m2;(2) 厚的 "金刚石窗口"(70-102 千米),岩石圈地幔下边界的深度水平估计大于 200 千米;(3) 尽管岩石圈地幔岩石受到高温硅酸盐熔体的高度浸渍,但在金刚石稳定性的 P-T 条件下,含金刚石橄榄岩的保存程度很高。与 V. 格里布管道相比,TsNIGRI-Arkhangelskaya 金伯利岩管道的金刚石含量较低,这是由于以下因素造成的:(1) 岩石圈地幔中的热流较强,为 38-42 mW/m2;(2) "金刚石窗口 "较薄,为 10-60 千米,岩石圈地幔下边界的深度水平估计小于 200 千米;(3) 中、下岩石圈地幔岩石受到 CHO 流体/熔体的微弱浸渍,这可能诱发了金刚石的形成;(4) 下岩石圈地幔中含金刚石橄榄岩的保存最少,部分原因是这一区域可能受到高温硅酸盐熔体的浸渍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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