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Exploration status for oxide and sulphide zinc ores at Skorpion Zinc Mine, Namibia

机译:纳米比亚skorpion锌矿氧化物和硫化锌矿的勘探现状

摘要

The thesis is inspired by recent interests in oxide zinc ores caused by new developments in the technology of hydrometallurgy. The improved techniques turned the non-sulphide zinc ores in to attractive exploration targets due to a number of advantages such as low metal recovery costs and favorable environmental aspects such as the obvious absence of sulfur (Large, 2001). Historically extraction of zinc metal from oxide ores was not possible until recently. The metallurgical complexity resulted in a lack of interest and hence some economic oxide zinc ores might have been missed by conventional exploration techniques. The study presents a review of exploration status at Skorpion mine based on different exploration techniques and their application to sulphide and oxide zinc ore exploration. The challenge facing the mineral exploration industry today is the inability to detect mineral deposits under cover. Therefore a key to successful exploration program lies in the selection of the right exploration technique. Important parameters that should be highlighted in the exploration methodology are the geological situation of an area, equipment applicability and effectiveness, survey limitation, equipment mobilization and the safety aspects involved. The aim of this thesis is to provide a general guideline for sulphide and non-sulphide zinc ore exploration on the Skorpion area and other similar geological environments. Geochemical surveys appears to be more complimentary in exploration of non-sulphide zinc exploration. Although geochemical techniques are preferred, it is equally important to choose the right soil horizon. Furthermore, sample media may mean the difference between success and failure in geochemical exploration of non-sulphide zinc mineralization, due to high mobility of zinc in the surficial environment. On cost comparison, surface geochemical surveys programs are more cost effective except for litho-geochemical sampling which are commonly carried out through subsurface drilling. Geophysical techniques have limited application in exploration of non-sulphide zinc mineralization due to a lack of major physical properties (e.g., magnetic and electrical properties) in non-sulphides unlike their sulphide counterparts. However geophysical methods are commendable in delineating massive and disseminated sulphides mainly if they are associated with major Fe minerals (pyrrhotite or magnetite). In addition, geophysical techniques may be effective in mapping of subsurface primary and secondary structures such as basin faults which might have acted as pathways for metal-rich fluids. Terms non-sulphide and oxide zinc mineralization are used interchangeably throughout the thesis. Recommendations on regional and local target generation are presented in the thesis to give some basic guide lines on target generation strategies. The most important conclusion reached in this study is that, success in exploration for non-sulphide or sulphide zinc mineralization might be enhanced through the integrated exploration methodology.
机译:本论文的灵感来自湿法冶金技术的新发展引起的对氧化锌矿石的最新兴趣。改进的技术由于具有许多优势,例如较低的金属回收成本和有利的环境因素(例如明显没有硫),使无硫化锌的锌矿成为有吸引力的勘探目标(Large,2001)。从历史上讲直到最近才从氧化物矿石中提取锌金属。冶金复杂性导致人们缺乏兴趣,因此常规的勘探技术可能会错过一些经济的氧化锌矿石。这项研究基于不同的勘探技术及其在硫化物和氧化物锌矿勘探中的应用,综述了Skorpion矿的勘探状况。如今,矿物勘探业面临的挑战是无法探测地下矿藏。因此,成功进行勘探计划的关键在于选择正确的勘探技术。勘探方法中应强调的重要参数是区域的地质情况,设备的适用性和有效性,勘测限制,设备动员以及涉及的安全方面。本文的目的是为斯科普皮翁地区和其他类似的地质环境中的硫化物和非硫化物锌矿勘探提供一般指导。地球化学调查似乎在非硫化锌勘探中更具互补性。尽管首选地球化学技术,但选择正确的土壤层也同样重要。此外,由于锌在表层环境中的高迁移率,样品介质可能意味着在非硫化锌矿化的地球化学勘探中成功与失败之间的差异。在成本比较方面,除了通常通过地下钻探进行的岩石地球化学采样外,地面地球化学调查计划更具成本效益。地球物理技术在勘探非硫化物锌矿化方面的应用受到限制,这是因为与硫化物相比,非硫化物缺乏主要的物理性质(例如,磁和电性质)。然而,主要是在它们与主要的铁矿物质(硫铁矿或磁铁矿)有关时,地球物理方法在划定块状和散布的硫化物方面值得推荐。另外,地球物理技术可能有效地绘制了地下主要和次要结构,例如盆地断层,这些断层可能已成为富金属流体的通道。在整个论文中,术语非硫化物和氧化物锌矿化可互换使用。本文提出了有关区域和地方目标生成的建议,以提供有关目标生成策略的一些基本指导方针。这项研究得出的最重要结论是,通过综合勘探方法可以提高非硫化物或硫化锌矿化的勘探成功率。

著录项

  • 作者

    Sitoka Stefanus;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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