首页> 外文会议>32th International Conference amp; Exhibition: New Challenges of Bauxite, Alumina amp; Aluminium Industry and Focus on China"" >Partial Least Square Regression (PLSR)-A new alternative XRD method for electrolytic bath analysis
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Partial Least Square Regression (PLSR)-A new alternative XRD method for electrolytic bath analysis

机译:偏最小二乘回归(PLSR)-一种用于电解槽分析的替代XRD新方法

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X-ray diffraction (XRD) is a standard tool for process control in aluminium industries.Varying raw material qualities, the use of different fluxes and increasing prices require a better control of processes and a more efficient use of energy.Traditionally quality control of electrolytic bathes, alumina and bauxites has relied on calibration based single peak methods or more advanced full pattern techniques.A common method is the Rietveld quantification which uses structural information to predict information from the full pattern using physical models and fitting techniques.Sometimes this approach is stretched to its limits, especially when no realistic physical model is available, or when the model is either too complex or doesn't fit to reality.In such cases there is an elegant alternative: multivariate statistics and Partial Least-Squares Regression (PLSR), a method that does not require pure phases, crystal structures or complex modelling of peak shapes are required.This paper will describe the advantages of using PLSR for the determination of electrolytic baths, alumina and bauxite directly from the XRD pattern.As PLSR and Rietveld are completely independent from each other, both methods can be simultaneously applied to the same measurement.
机译:X射线衍射(XRD)是铝工业过程控制的标准工具,随着原材料质量的变化,使用不同的助熔剂以及价格上涨,需要更好地控制过程并更有效地利用能源。镀液,氧化铝和铝土矿一直依靠基于校准的单峰方法或更先进的全图技术。常用的方法是Rietveld定量分析,该方法使用结构信息通过物理模型和拟合技术从全图预测信息。达到其极限,尤其是在没有可用的实际物理模型或模型过于复杂或不适合现实的情况下。在这种情况下,还有一个很好的选择:多元统计和偏最小二乘回归(PLSR),该方法不需要纯相,晶体结构或复杂的峰形建模。本文将描述了使用PLSR直接从XRD图测定电解浴,氧化铝和铝土矿的优势。由于PLSR和Rietveld彼此完全独立,因此两种方法可同时应用于同一测量。

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