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Suitability of using a handheld XRF for quality control of quartz in an industrial setting

机译:适用于工业环境中石英质量控制的手持XRF

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Handheld XRF (HHXRF) is an analytical tool often used for chemical characterization, environmental analysis or mineral exploration. However, few studies deal with its potential use as a quality control instrument within an industrial context, such as mineral processing or transformation. Quartz is an ideal test material; it is a simple matrix allowing for better isolation of different parameters including detection limits, precision and accuracy, instrumental drift, surface representativeness and sample preparation. In this study, we determined that the specific limit of detection was lower than 70?μg/g for TiO2, Fe2O3and CaO. The HHXRF analyzed pressed pellets of matrix-matched reference materials. Estimates for TiO2, Fe2O3and CaO were similar to certified values, while estimates for low concentration light elements (Al2O3and MgO) were less accurate. For faster and higher throughput, as often required in an industrial context, HHXRF can be used directly on mineral sample without sample preparation. Five in-situ determinations on a 10-cm-sided block of quartz, produced an accuracy acceptable for industrial needs. However, in-situ determinations are limited by the flatness of the analytical surface, and minute accessory phases can induce some erratic results. Our tests suggest, however, that HHXRF is generally suitable for the control quality of quartz in an industrial context.
机译:手持式XRF(HHXRF)是一种经常用于化学特征,环境分析或矿物勘探的分析工具。然而,很少有研究处理其在工业背景中作为质量控制仪器的潜在用途,例如矿物加工或转化。石英是一个理想的测试材料;它是一个简单的矩阵,允许更好地隔离不同参数,包括检测限,精度和精度,仪器漂移,表面代表性和样品制备。在这项研究中,我们确定检测的特定极限低于70.μg/ g,用于TiO 2,Fe 2 O 3和CaO。 HHXRF分析了基质匹配参考材料的压制颗粒。 TiO2,Fe2O3和CaO的估计与认证值类似,而低浓度光元素(Al2O3和MgO)的估计不太准确。对于更快,更高的产量,通常在工业背景下需要,HHXRF可以直接用于无样品制备的矿物样品上。在10厘米的石英块上进行五个原位测定,为工业需求提供了准确性。然而,原位测定受到分析表面的平整度的限制,微小的辅助阶段可以诱导一些不稳定的结果。然而,我们的测试表明,HHXRF通常适用于工业背景中石英的控制质量。

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