The structure and cryptic layering of the Pados-Tundra ultramafic complex, Serpentinite belt, Kola Peninsula, Russia

IF 1.3 4区 地球科学 Q2 GEOLOGY
A. Barkov, A. A. Nikiforov, R. Martin
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引用次数: 9

Abstract

The Paleoproterozoic Pados-Tundra ultramafic complex, ~6 x 1.5–2.1 km in size and ~2.1 Ga in age, located in the Kola Peninsula of Russia, is the main representative of the Serpentinite belt in the northern Fennoscandian Shield. It is composed of fragmented or foliated bodies of dunite–harzburgite –orthopyroxenite; these have an elevated potential for Cr and the platinum-group elements (PGE). In general, the complex consists of the Dunite Zone (olivine cumulates) and Orthopyroxenite Zone (orthopyroxene + olivine cumulates, interlayered); its upper zones of more evolved rocks of mafic compositions appear to have been removed by erosion. The complex shows well-recognized patterns of cryptic layering, documented along cross-sections in grains of olivine and Ca-poor pyroxene. Narrow ranges of high-Mg compositions are observed in olivine [Fo85.5–90.6] and orthopyroxene [Wo<0.1–3.0En85.1–91.2Fs8.1–12.5]. Their trends of crystallization indicate that cumulate olivine, orthopyroxene, and olivine–orthopyroxene rocks (dunite and orthopyroxenite, with subordinate harzburgite and olivine-bearing orthopyroxenite) become, in general, more evolved toward the internal portions of the complex; stratigraphically lower and early-crystallizing cumulates are exposed closer to its outer contact. The compositions of early phases of cumulus origin, Fo91 olivine and En91, orthopyroxene are notably magnesian, implying an elevated Mg# in the parental magma. The anomalously Cr–Al-rich grains of serpentine (up to ~2.5 wt.% Cr2O3 and ~4.0wt.% Al2O3), hitherto unreported, are present in specimens of dunite near the northeastern margin of the complex. Supercooling and metastable crystallization likely affected the melt in the eastern portion of the complex near the Dunite block (i.e., host for segregations and stratiform-like layers of chromitite) and relatively close to the outer contact. An uncommon mineralization of the PGE is associated with the chromitite deposits at Pados-Tundra.
俄罗斯科拉半岛蛇绿岩带Pados Tundra超镁铁质杂岩的结构和神秘分层
位于俄罗斯科拉半岛的古元古代帕多斯-苔原超镁铁质杂岩,面积~6 × 1.5 ~2.1 km,年龄~2.1 Ga,是芬诺斯坎德盾北部蛇纹岩带的主要代表。它是由粒状或片状的黑锰矿-直辉石岩组成;它们对铬和铂族元素(PGE)的电位升高。杂岩体总体上由泥质带(橄榄石堆积物)和正辉石岩带(正辉石岩+橄榄石堆积物,层间)组成;它的上部由更进化的基性组成的岩石组成,似乎已经被侵蚀掉了。该复合体显示出公认的隐层模式,记录在橄榄石和贫钙辉石颗粒的横截面上。橄榄石[Fo85.5-90.6]和正辉石[Wo< 0.1-3.0En85.1-91.2Fs8.1-12.5]中存在较窄范围的高mg成分。它们的结晶趋势表明,堆积的橄榄石、正辉石和橄榄石-正辉石岩石(暗晶岩和正辉石岩,其次是辉石岩和含橄榄石的正辉石岩)总体上向杂岩内部进一步演化;地层较低、早结晶的堆积暴露在靠近其外部接触的地方。积云成因早期阶段Fo91橄榄石和En91正辉石的镁质成分显著,表明母岩浆中Mg#含量升高。异常富cr - al的蛇纹石晶粒(高达~2.5 wt.% Cr2O3和~4.0wt. % Cr2O3)。% Al2O3),迄今尚未报道,存在于该杂岩东北边缘附近的泥质标本中。过冷和亚稳结晶可能影响了杂岩东部靠近泥质块体(即分离和层状铬铁矿的宿主)和相对靠近外部接触的熔体。PGE的罕见矿化与Pados-Tundra的铬铁矿矿床有关。
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
5
审稿时长
>12 weeks
期刊介绍: Bulletin of the Geological Society of Finland (BGSF) publishes research articles and short communications in all branches of geosciences. Contributions from outside Finland are welcome, provided that they contain material relevant to Finnish geology or are of general interest.
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