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Quantitative Analysis of FeMo Alloys using Lithium Tetraborate Fusion Technique by X-Ray Fluorescence Spectrometry

机译:四硼酸锂熔融技术X射线荧光光谱法定量分析FeMo合金

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摘要

A quantitative analysis method of molybdenum in FeMo alloys by X-ray spectrometry using borate fusion technique was proposed. Homogeneous glass disks were prepared under the following conditions: lithium tetraborate as flux with sample dilution (1:33), with the addition of lithium nitrate (LiNO_3) as oxidizer by slow heating from 888 to 1123 K for 45 min followed by fusion at 1273 K for 3 min in an O_2-blowing atmosphere. The complete pre-oxidation of FeMo alloys by adding oxidizer and by employing O_2-supplying apparatus was ascribed to the reproducible preparation of homogeneous fused glass disks. Nine FeMo standard materials were employed to establish the XRF calibration curves for Mo and Fe. The calibration curves were used in the quantitative analysis of standard materials and unknown plant samples with satisfactory precision and accuracy, considering the matrix effects and line overlap corrections. It is believed that the newly proposed method of preparing fused glass disks of FeMo alloys employing an automated fusion system can replace the conventional preparation requiring the labor intensive and time consuming procedure.
机译:提出了硼酸盐熔融技术X射线光谱法定量分析FeMo合金中钼的方法。在以下条件下制备均质玻璃圆盘:以四硼酸锂为助熔剂,样品稀释度为(1:33),并通过从888到1123 K缓慢加热45分钟,添加硝酸锂(LiNO_3)作为氧化剂,然后在1273熔融在吹过O_2的气氛中K持续3分钟。通过添加氧化剂和使用O_2供给设备,FeMo合金完全预氧化归因于均质熔融玻璃盘的可重复制备。使用九种FeMo标准材料来建立Mo和Fe的XRF校准曲线。考虑到基质效应和线重叠校正,将校准曲线用于标准材料和未知植物样品的定量分析,具有令人满意的精度和准确度。可以相信,新提出的采用自动熔融系统制备FeMo合金熔融玻璃盘的方法可以替代需要劳动密集和费时的常规制备方法。

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