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Selected applications of Rietveld-XRD analysis for raw materials of the aluminum industry

机译:Rietveld-XRD分析在铝工业原料中的精选应用

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摘要

In the last few decades, X-ray diffraction (XRD) systems have been paramount and irreplaceable in controlling bauxite exploration, as well as Bayer and reduction processes. XRD quantitative phase analysis in the aluminum industry witnessed a steady deployment of the Rietveld method, which at present progressively replaces existing methodologies in research and plant laboratories. Rietveld analysis not only helped to surpass traditional XRD calibration methods, it also opened the door for new applications previously not possible. The use of the Rietveld method to characterize selected materials unique to the aluminum industry, such as bauxite, red mud, and alumina is demonstrated and discussed. This paper also presents how synchrotron-based diffractograms obtained for bauxite and red mud samples allowed a much better understanding of mineralogical representation, and made it possible to leverage their Rietveld quantification. Despite clear advantages, the Rietveld method also has limitations that are revealed. For alumina phase quantification, a dedicated Rietveld analytical program was built with structure data for eight alumina mineralogical phases: alpha, beta (β-Al_2O_3 = Na_2O·llAl_2O_3), delta, gamma (2), kappa, sigma, and theta. The paper gives unique examples of phase quantification in aluminas of various origins and phase composition.
机译:在过去的几十年中,X射线衍射(XRD)系统在控制铝土矿勘探以及拜耳法和还原法方面极为重要且不可替代。铝工业中的XRD定量相分析见证了Rietveld方法的稳定部署,该方法目前逐渐取代了研究和工厂实验室中的现有方法。 Rietveld分析不仅有助于超越传统的XRD校准方法,还为以前不可能的新应用打开了大门。演示并讨论了使用Rietveld方法表征铝行业特有的精选材料,例如铝土矿,赤泥和氧化铝。本文还介绍了铝土矿和赤泥样品的基于同步加速器的衍射图如何更好地理解矿物学表现形式,并使其利用Rietveld定量化成为可能。尽管有明显的优势,但Rietveld方法也存在一些局限性。对于氧化铝相定量,建立了一个专用的Rietveld分析程序,其中包含八个氧化铝矿物相的结构数据:α,β(β-Al_2O_3= Na_2O·llAl_2O_3),δ,γ(2),kappa,sigma和theta。本文给出了各种来源和相组成的氧化铝中相定量的独特示例。

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