Geology, mineralogy and geochemistry of manganese ore deposits of the Um Bogma Formation, south-western Sinai, Egypt: genesis implications

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2022-09-30 DOI:10.33271/mining16.03.086
S. El-shafei, F. Ramadan, M. Essawy, A. Henaish, B. Nabawy
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引用次数: 2

Abstract

Purpose.This paper aims to understand the genesis and nature of the manganese ore deposits associated with the Ras Samra Member of the Um Bogma Formation in the southwest of Sinai. Methods. Mineralogical and geochemical studies of 50 selected samples of manganese ores and host shale have been conducted. These samples have been taken from different sites representing the Ras Samra Member. Findings. The dominant manganese minerals are pyrolusite and hausmannite. In most samples, helvite and hematite are noted in association with pyrolusite. In the investigated manganese ores, wide ranges of MnO (17.70-81.90 wt. %) and Fe2O3 (1.16-65.49 wt. %) concentrations are observed. Based on their Mn/Fe ratio, they can be classified into high-Mn ore content (76.94-6.46%), medium-Mn ore content (4.87-2.58%), and low-Mn ore content (1.51-0.30%). Originality. The compositions of major and trace elements in Ras Samra manganese ores, together with their textures and mineralogical compositions, suggest an epigenetic hydrothermal contribution for high-Mn ores, as well as syngenetic sedimentary precipitation for medium- Mn and low-Mn ores. The epigenetic nature of the high-Mn samples may be related to a younger phase of hydrothermal activity associated with Tertiary basalt flows. Ore-bearing hypogene solutions, which penetrate the bedding planes, have impregnated and cemented non-diagenetic terrigenous sandstones and shale. Practical implications. In contrast to low-Mn ores, high-Mn and medium-Mn ores of Um Bogma are preferable for obtai-ning a significant economic effect in the production of ferromanganese alloys. However, low-Mn ores need to be processed appropriately to achieve the desired quality in order to meet the present level of manganese demand in Egypt.
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埃及西奈西南部Um Bogma组锰矿床地质、矿物学和地球化学:成因意义
目的:本文旨在了解西奈西南部Um Bogma组Ras Samra段锰矿床的成因和性质。方法。对50个选定的锰矿石和寄主页岩样品进行了矿物学和地球化学研究。这些样本取自代表Ras Samra成员的不同地点。调查结果。锰的主要矿物是软锰矿和黑锰矿。在大多数样品中,赫勒维特和赤铁矿与软锰矿伴生。在所研究的锰矿石中,观察到MnO(17.70-81.90重量%)和Fe2O3(1.16-65.49重量%)的浓度范围很宽。根据它们的Mn/Fe比,可分为高锰矿含量(76.94-6.46%)、中锰矿含量(4.87-2.58%)和低锰矿含量(1.51-0.30%)。Ras Samra锰矿中主要元素和微量元素的组成,以及它们的结构和矿物学组成,表明高Mn矿石的表观热液贡献,以及中Mn和低Mn矿石的同生沉积沉淀。高锰样品的表观遗传学性质可能与第三纪玄武岩流相关的热液活动的较年轻阶段有关。穿过层面的含矿深生岩溶液已浸渍并胶结了非成岩陆源砂岩和页岩。实际意义。与低Mn矿石相比,Um Bogma的高Mn和中Mn矿石更适合在锰铁合金生产中获得显著的经济效果。然而,为了满足埃及目前的锰需求水平,低锰矿石需要进行适当的加工以达到所需的质量。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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