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Problems of Sampling and Assaying in Mesothermal Lode-Gold Deposits ― Case Studies From Australia and North America

机译:澳大利亚和北美的中热河流金矿床案例研究中的抽样与测定问题

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Mesothermal lode-gold deposits often pose problems during sampling because of their complex and erratic gold grade distribution, and the presence of coarse gold. Effective sampling and sample preparation protocols must form the basis of any resource estimate at whatever stage a project is at. Design of a sampling regime must be based upon a thorough understanding of orebody mineralogy and geology. This should include consideration of gold particle size and distribution. The sample type, size and density employed must also be based on the underlying geology of the deposit. Choice of sample preparation procedure and assay type is of critical importance if fundamental sampling error and analytical errors are to be minimised. Traditional fire assays, using small charge sizes, consistently understate assays gained from large charge sizes and techniques such as screen fire assay and bulk leach extractable gold assay. The proportion of coarse gold within samples will have a profound effect on the requirements for sample preparation and assay method. The application of Gy sampling theory can help to reduce errors within the processing of samples of broken rock. Quality control/assurance of sampling regimes must also be critically assessed. The problems associated with sampling mesothermal lode-gold type deposits are presented as case studies from Western Australia and North America.
机译:由于其复杂和不稳定的金级分布以及粗金,但在抽样过程中常常在抽样过程中造成问题。有效的采样和样品准备方案必须以项目在的任何阶段构成任何资源估算的基础。抽样制度的设计必须基于对矿物矿物学和地质的彻底了解。这应该包括考虑金粒径和分布。采用的样品类型,尺寸和密度也必须基于沉积物的潜在地质。如果要最小化基本采样误差和分析误差,则样品制备程序和测定类型的选择是至关重要的。传统的火灾测定,使用小电荷尺寸,一致低估从大电荷尺寸和技术中获得的测定,例如筛选火灾测定和散装浸出的金测定。样品中粗糙金的比例对样品制备和测定方法的要求产生深远的影响。 GY采样理论的应用可以帮助减少破碎岩石样本的处理中的错误。对抽样制度的质量控制/保证也必须批判性地评估。与西澳大利亚和北美的案例研究表明了与取样中热羽典型矿床相关的问题。

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