样本重复性指标在采矿业中的意义

E. B. Fiadonu, E. Ackah, P. Ofori-Amanfo
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摘要

本研究的目的是确定样品重复性指数(SRI)作为一种措施的重要性,以确保在勘探钻井方案中,在远景区样品制备过程中,误差最小化。勘探阶段所涉及的几乎所有阶段都包括抽样。在现场收集和准备的样品经过良好的质量保证和质量控制(QA/QC)方法检查。但是,送到外地实验室进行测试的样品不受勘探队的控制,因此必须采取措施来评估实验室的效率和实验室结果的准确性。样品重复性指数是用来保证实验室结果置信度的工具之一。为了实现这一目标,QA/QC程序被用来监控精度,准确性和潜在的样品污染,以确保对采样系统的信心。在这项研究中,总共使用了来自八个不同矿床的一万二千八十一个样本,考虑了四年的时间。采用现场重复对检验样品重复性,采用相对差图和半绝对相对差图计算样品重复性指数。研究结果表明,除沉积物2外,所有沉积物的样品重复性指数均低于客户规格阈值(CST)。与其他矿床相比,2号矿床以20%的精度生产了77%的产品。3号矿床的记录精度较差,为60%,精度为20%。在每个单独的矿床上设计适合不同地质区域的取样方案是可取的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Significance of Sample Repeatability Index in the Mining Industry
The objective of this research is to establish the importance of Sample Repeatability Index (SRI) as a measure to ensure error minimisation in exploration drilling protocols, during sample preparation of the prospect areas. Almost all the stages entailed in the exploration stages involve sampling. Samples collected and prepared within the field are well checked for a good Quality Assurance and Quality Control (QA/QC) methods. However, samples sent out for testing in the laboratory outside the field are not under the control of the exploration team, hence a measure must be taken to assess the efficiency of the laboratory and accuracy of the laboratory results. Sample Repeatability Index is one of the tools that can be used to ensure the degree of confidence in the laboratory results. To achieve this, QA/QC procedures were employed to monitor precision, accuracy and potential sample contamination in order to ensure confidence in the sampling system. A total of twelve thousand and eighty-one samples taken from eight different deposits, considered within a 4-year period were used in this study. Field duplicate pairs were used to check sample repeatability, Relative Difference and Half Absolute Relative Difference (HARD) plot were used to calculate Sample Repeatability Indexes for the deposits. Results of the study showed that Sample Repeatability Index for all the deposits with exception of deposit 2 fell below the Customer Specification Threshold (CST). Deposit 2 produced somewhat better of 77% at 20% precision as compared to the other deposits. Deposit 3 recorded poorly of 60% at 20% precision. It is advisable to have sampling protocol designed to suit different geological domain on each individual deposit.
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