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Characterization of geochemical and mineralogical controls on metal mobility in the Prairie Creek Mine area, NWT.

机译:NWT草原溪矿区金属迁移的地球化学和矿物学控制特征。

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摘要

The Prairie Creek Mine, NWT, is a non-producing Zn-Pb-Ag mine located within the Mackenzie Mountains. The 320 km2 area is surrounded by the Nahanni National Park Reserve, and is found approximately 40 km upstream of a UNESCO World Heritage Site. Geochemical characterization of weathered material in the area is useful from both an exploration geochemistry and environmental geochemistry perspective. This investigation attempted to characterize geochemical and mineralogical controls on metal mobility in natural and manufactured environments. Surface waters and sediments were sampled, analyzed, and interpreted. Detailed mineralogical analyses were also performed, including SEM, XRD, and synchrotron-based muXRF and muXRD.;Prairie Creek contains sulphide and supergene mineralization hosted in carbonate rocks, which supply the area with a high pH, as well as a wealth of alkalinity and buffering capacity. This study aims to provide some insight as to the geochemical and mineralogical controls on the weathering processes which may enhance or inhibit mobility of metals downstream of known mineralization. Results show that the metals are found in much higher concentration in the stream sediments than in the stream waters. Pb and Zn show the highest concentrations, and Zn appears to be more mobile than Pb. Based on water versus sediment chemistry, it may be possible to differentiate between mineralization types. Dissolution textures and alteration of detrital grains indicates that chemical weathering does occur within the streams and releases metals to the aqueous environment, though they are likely quickly attenuated through adsorption or co-precipitation.;The mine site hosts a historic ore stockpile and waste rock pile, established in the early 1980's. Geochemical characterization of the reactions occurring within these piles and of the mineralogical controls on metal mobility can contribute to the mitigation of risk from leachate. Metal concentrations are variable and do not support a trend, which indicates that metal mobility within these piles may be attributed to micro-environments. There appears to be a trend in increasing alkalinity and decreasing sulphate towards the bottom of the piles.;Therefore, metals appear to have limited mobility in the studied environments, although small scale chemical reactions are occurring which may release and attenuate metals.
机译:NWT的Prairie Creek矿山是位于Mackenzie山脉内的非生产性Zn-Pb-Ag矿山。面积320平方公里,被纳汉尼国家公园保护区所环绕,位于联合国教科文组织世界遗产上游约40公里处。从勘探地球化学和环境地球化学的角度来看,该地区风化物质的地球化学特征都是有用的。这项调查试图确定在自然和人造环境中金属迁移率的地球化学和矿物学控制特征。对地表水和沉积物进行了采样,分析和解释。还进行了详细的矿物学分析,包括SEM,XRD和基于同步加速器的muXRF和muXRD。草原溪含有碳酸盐岩中的硫化物和超基因矿化,为该地区提供了高pH值以及丰富的碱度和缓冲能力。这项研究旨在为风化过程的地球化学和矿物学控制提供一些见识,这些控制可能会增强或抑制已知矿化下游金属的迁移。结果表明,在河流沉积物中发现的金属浓度比在河流水中高。 Pb和Zn的浓度最高,而Zn似乎比Pb更易移动。根据水与沉积物的化学关系,可以区分成矿类型。溶解质地和碎屑颗粒的变化表明,尽管在流中确实发生了化学风化并将金属释放到水环境中,尽管它们很可能会通过吸附或共沉淀而迅速衰减;该矿山拥有历史悠久的矿石储备和废石堆成立于1980年代初期。这些堆中发生的反应的地球化学特征以及对金属迁移率的矿物学控制可有助于降低渗滤液的风险。金属浓度是可变的并且不支持趋势,这表明这些堆中的金属迁移率可能归因于微环境。似乎有增加碱度和降低硫酸盐向堆底部的趋势。因此,尽管正在发生小规模的化学反应,可能释放和减弱金属,但金属在研究的环境中的迁移率似乎有限。

著录项

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Geochemistry.;Geology.;Civil engineering.
  • 学位 M.S.
  • 年度 2013
  • 页码 306 p.
  • 总页数 306
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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