Impact diamonds from meteorite craters and Neogene placers in Ukraine

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Mineralogy and Petrology Pub Date : 2022-03-29 DOI:10.1007/s00710-022-00778-y
Victor M. Kvasnytsya, Richard Wirth
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引用次数: 2

Abstract

There are seven meteorite craters and several Neogene placers in the Ukrainian Shield containing impact apographitic diamond. In this work impact diamonds from the Bilylivka meteorite crater and from the Samotkan’ Neogene titanium-zirconium placer were studied in detail. The results of a comprehensive study of impact diamond crystals — morphology, microtopography, microstructure, carbon isotope composition, photoluminescence, optical, infrared, and Raman spectroscopy — are presented. The size of the impact diamonds is up to 0.5 mm. Impact diamond crystals are mostly two- or three-phase polycrystalline aggregates (diamond, lonsdaleite, graphite). They show external morphological and internal microstructural features of solid-state phase transition of graphite to diamond during impact shock metamorphism – they are paramorphoses on graphite crystals. Microstructural features of the graphite-diamond transition in the studied crystals of impact diamonds are their polysynthetic (11 \(\overline{2}\) 1) twinning and the polycrystalline structure of the twins themselves. The carbon isotopic composition of impact diamonds ranges: for Bilylivka diamonds – from –14.80 to –21.84 ‰ δ13C VPDB, with an average value of –17.21 ‰ δ13C and for Samotkan’ diamonds – from –10.35 to –23.06 ‰ δ13C VPDB, with an average value of –17.64 ‰ δ13C. The photo luminescent and spectroscopic features of the studied diamonds indicate the absence of nitrogen defects in crystals that are characteristic for mantle diamond. The location of the source rocks and potential routes how diamond have been incorporated into the Samotkan’ placer are discussed.

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来自乌克兰陨石坑和新近纪砂矿的冲击钻石
在乌克兰地盾中有7个陨石坑和几个新近纪的砂矿,其中含有撞击光斑钻石。本文详细研究了比利夫卡陨石坑和萨莫坎新近纪钛锆砂矿的冲击金刚石。对冲击金刚石晶体的形貌、微观形貌、微观结构、碳同位素组成、光致发光、光学、红外和拉曼光谱进行了全面研究。冲击钻石的尺寸可达0.5毫米。冲击金刚石晶体大多是两相或三相多晶聚集体(金刚石、长粒石、石墨)。它们表现出冲击变质过程中石墨向金刚石固相转变的外部形态和内部微观结构特征——它们是石墨晶体上的副形态。所研究的冲击金刚石晶体中石墨-金刚石转变的微观结构特征是它们的聚合成(11 \(\overline{2}\) 1)孪晶和孪晶本身的多晶结构。碰撞金刚石的碳同位素组成范围为:比利利夫卡金刚石- 14.80 ~ - 21.84‰δ13C VPDB,平均值为- 17.21‰δ13C;萨莫坎金刚石- 10.35 ~ - 23.06‰δ13C VPDB,平均值为- 17.64‰δ13C。所研究的金刚石的光发光和光谱特征表明,晶体中不存在地幔金刚石特有的氮缺陷。讨论了烃源岩的位置和钻石在沙摩坎砂矿中的可能路径。
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来源期刊
Mineralogy and Petrology
Mineralogy and Petrology 地学-地球化学与地球物理
CiteScore
2.60
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: Mineralogy and Petrology welcomes manuscripts from the classical fields of mineralogy, igneous and metamorphic petrology, geochemistry, crystallography, as well as their applications in academic experimentation and research, materials science and engineering, for technology, industry, environment, or society. The journal strongly promotes cross-fertilization among Earth-scientific and applied materials-oriented disciplines. Purely descriptive manuscripts on regional topics will not be considered. Mineralogy and Petrology was founded in 1872 by Gustav Tschermak as "Mineralogische und Petrographische Mittheilungen". It is one of Europe''s oldest geoscience journals. Former editors include outstanding names such as Gustav Tschermak, Friedrich Becke, Felix Machatschki, Josef Zemann, and Eugen F. Stumpfl.
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