Outcomes of 12 Years of the Reynolds Cup Quantitative Mineral Analysis Round Robin

被引:0
作者
Mark D. Raven
Peter G. Self
机构
[1] Land and Water and Mineral Resources,Commonwealth Scientific and Industrial Research Organisation
来源
Clays and Clay Minerals | 2017年 / 65卷
关键词
Accuracy; Clay Minerals; Mineralogy; Quantitative Analysis; Reynolds Cup; Round Robin; X-ray Diffraction;
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摘要
In 2000, The Clay Minerals Society established a biennial quantitative mineralogy round robin. The so-called Reynolds Cup competition is named after Bob Reynolds for his pioneering work in quantitative clay mineralogy and exceptional contributions to clay science. The first contest was run in 2002 with 40 sets of three samples, which were prepared from mixtures of purified, natural, and synthetic minerals that are commonly found in clay-bearing rocks and soils and represent realistic mineral assemblages. The rules of the competition allow any method or combination of methods to be used in the quantitative analysis of the mineral assemblages. Throughout the competition, X-ray diffraction has been the method of choice for quantifying the mineralogy of the sample mixtures with a multitude of other techniques used to assist with phase identification and quantification. In the first twelve years of the Reynolds Cup competition (2002 to 2014), around 14,000 analyses from 448 participants have been carried out on a total of 21 samples. The data provided by these analyses constitute an extensive database on the accuracy of quantitative mineral analyses and also has given enough time for the progression of improvements in such analyses. In the Reynolds Cup competition, the accuracy of a particular quantification is judged by calculating a “bias” for each phase in an assemblage. Determining exactly the true amount of a phase in the assemblage would give a bias of zero. Generally, the higher placed participants correctly identified all or most of the mineral phases present. Conversely, the worst performers failed to identify or misidentified phases. Several contestants reported a long list of minor exotic phases, which were likely reported by automated search/match programs and were mineralogically implausible. Not surprisingly, clay minerals were among the greatest sources of error reported. This article reports on the first 12 years of the Reynolds Cup competition results and analyzes the competition data to determine the overall accuracy of the mineral assemblage quantities reported by the participants. The data from the competition were also used to ascertain trends in quantification accuracy over a 12 year period and to highlight sources of error in quantitative analyses.
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页码:122 / 134
页数:12
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共 58 条
  • [1] Altomare A(2001)Quanto: a Rietveld program for quantitative phase analysis of polycrystalline mixtures Journal of Applied Crystallography 34 392-397
  • [2] Burla M C(2006)Influence of mechanical compaction and clay mineral diagenesis on the microfabric and porescale properties of deep-water Gulf of Mexico mudstones Clays and Clay Minerals 54 500-514
  • [3] Giacovazzo C(1998)Rietveld analysis of disordered layer silicates Materials Science Forum 278-281 300-305
  • [4] Guagliardi A(2007)Estimate of clay minerals amounts from XRD pattern modelling: The Arquant model Physics and Chemistry of the Earth 32 135-144
  • [5] Moliterni A G G(2002)FULLPAT: A full-pattern quantitative analysis program for X-ray powder diffraction using measured and calculated patterns Journal of Applied Crystallography 35 744-749
  • [6] Polidori G(1974)Quantitative interpretation of X-ray diffraction patterns of mixtures I. Matrix-flushing method for quantitative multicomponent analysis. Journal of Applied Crystallography 7 519-525
  • [7] Rizzi R(2013)Industrial applications Handbook of Clay Science 5 451-490
  • [8] Aplin AC(2003)Quantitative analysis of clay and other minerals in sandstones by X-ray powder diffraction (XRPD) Clay Mineral Cements in Sandstones 34 213-251
  • [9] Matenaar IF(1988)RIR — Measurement and use in quantitative XRD Powder Diffraction 3 74-77
  • [10] van der McCarty DK P ^BA(1987)Precision and accuracy of test methods and the concept of K-factors in chemical analysis Analyst 112 1445-1449