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The nature of geomagnetic anomalies in metamorphosed chromite-bearing dunites: a case study of the southern Klyuchevskoy complex, Central Urals

机译:变质的含铬铁矿的dunits中地磁异常的性质:以南部的Klyuchevskoy复合体,乌拉尔中部为例

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Chromite mineralization in metamorphosed dunites from the southern Klyuchevskoy dunite-harzburgite ultramafic complex (Central Urals) has been investigated using geomagnetic surveys along with laboratory studies of ore-forming and accessory spinels of the same genetic type. Magnetization in the study area is carried mainly by accessory Fe-Cr-spinel of a variable Fe2+(Cr2-xFex3+)O-4 composition. Metamorphism caused changes in element contents and in both crystal and magnetic structure of the primary nonmagnetic accessory spinel, unlike the almost fresh ore-forming spinel. Thus, ore bodies stand against their host rocks, which is a prerequisite for the use of geomagnetic surveys for exploration of podiform chromite deposits in dunite-harzburgite complexes. Ground magnetic surveys at a test site composed of faulted rocks bearing disseminated chromite mineralization in metamorphosed dunites resolved a chromite ore zone and a fault block boundary showing up as geomagnetic anomalies. Laboratory studies using high technologies (thermomagnetic analysis at 4 to 1000 K, as well as magnetic resonance and magnetic force spectroscopy) revealed, for the first time, magnetic clusters (superparamagnetic phases) in primary nonmagnetic accessory spinel, which are responsible for the magnetic properties of the host rocks. Microscale variations in Cr-spinel correlate with the geomagnetic anomalies recorded by field surveys at the test site. (C) 2015, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
机译:使用地磁测量以及相同基因类型的成矿和副尖晶石的实验室研究,研究了南部克柳切夫斯科伊(Klyuchevskoy dunite-harzburgite)超镁铁质复合体(中央乌拉尔)变质dunits中的铬铁矿矿化。研究区域的磁化作用主要由具有可变Fe2 +(Cr2-xFex3 +)O-4组成的辅助Fe-Cr-尖晶石进行。与几乎新鲜的成矿尖晶石不同,变质导致主要的非磁性副尖晶石的元素含量以及晶体和磁性结构发生变化。因此,矿体靠在它们的宿主岩石上,这是使用地磁测量法勘探榴辉岩-哈兹伯格岩复合体中的梯形铬铁矿沉积的先决条件。在由变质dunits中散布着铬铁矿矿化的断层岩石组成的测试现场进行的地磁测量,解析了铬铁矿矿带和断层块边界,显示为地磁异常。使用高科技的实验室研究(4至1000 K的热磁分析以及磁共振和磁力波谱)首次揭示了主要的非磁性副尖晶石中的磁团簇(超顺磁相),这些团簇负责磁性。主岩。 Cr-尖晶石的微观变化与测试地点现场调查记录的地磁异常有关。 (C)2015,V.S. Sobolev IGM,RAS的西伯利亚分公司。由Elsevier B.V.发布。保留所有权利。

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