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Conference Proceedings

Eighth World Conference on Sampling and Blending 2017

Conference Proceedings

Eighth World Conference on Sampling and Blending 2017

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Proposed workflows for portable X-ray fluorescence and near infrared instruments for soil and drill hole sampling

Field portable X-ray fluorescence (XRF) and near infrared (NIR) instruments are proven technologies in the minerals industry. The in-field results of these instruments can add value early in the project life, leading to cost-effective decision-making compared to their equivalent laboratory based techniques. However, in order to add value to a project, it is crucial that the instruments are employed correctly.Orientation studies should be carried out prior to initiating a sampling program to achieve the highest level of quality assurance and control for the results. Hence, an appropriate sampling workflow begins with considering what outcomes are required, including level of precision, accuracy, reliability for elements and minerals of interest, and sampling errors. The workflows proposed include soil sampling and reverse circulation and diamond drilling sampling techniques, and laboratory based techniques. They are practical and flexible workflows using available portable XRF and NIR technologies that can be applied to current sampling and drilling methods.The combined technologies have the ability to create large, integrated geochemical and mineralogical data sets that can provide cost savings for every stage of the mining chain from exploration to prefeasibility, mineral processing and environmental remediation.CITATION:Jansen, N H and Bridgwater, H L, 2017. Proposed workflows for portable X-ray fluorescence and near infrared instruments for soil and drill hole sampling, in Proceedings Eighth World Conference on Sampling and Blending , pp 219-228 (The Australasian Institute of Mining and Metallurgy: Melbourne).
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  • Proposed workflows for portable X-ray fluorescence and near infrared instruments for soil and drill hole sampling
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  • Published: 2017
  • PDF Size: 0.839 Mb.
  • Unique ID: P201702025

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