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首页> 外文期刊>Geochemistry: exploration, environment, analysis >The determination of phosphate in rocks and iron ores using inductively coupled plasma with optical emission spectroscopy (ICP-OES)
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The determination of phosphate in rocks and iron ores using inductively coupled plasma with optical emission spectroscopy (ICP-OES)

机译:光发射光谱法测定岩体和铁矿石中的磷酸盐(ICP-OES)

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摘要

Phosphate is a minor but important constituent of iron ores and is especially undesirable in the production of steel where it is considered a penalty element and is therefore tightly controlled. Iron ore quality must be determined at source, which means that deleterious elements must be accurately determined as an ongoing process. This demands fast, reliable analytical methods for the determination of, amongst others, phosphorus. However, such analysis is severely hampered by the following factors: the standard analytical method employed is X-ray fluorescence (XRF), but the measurements for phosphorus are seriously affected by matrix and inter-element interferences. An alternative technique is inductively coupled plasma with optical emission spectroscopy (ICP-OES), but there are also complications in using ICP-OES. The abundance of phosphorus in rocks is very low, generally under 0.5% wt. ICP-OES is also very insensitive to phosphorus and therefore must use the most sensitive spectral lines for quantification, and, there are serious spectral interferences on these lines by Fe and Cu. This study examines several analytical approaches for the determination of phosphate, using preparation by fusion and analysis by ICP-OES, demonstrating that suitable mathematical procedures and software applications can produce good results for phosphates, comparable to inter-laboratory tests or XRF.
机译:磷酸盐是铁矿石的次要但重要的构成,并且在钢的生产中特别是不希望的,在那里它被认为是惩罚元件,因此受到严格控制。必须在源确定铁矿石质量,这意味着必须准确地确定有害元素作为持续的过程。这需要快速,可靠的分析方法,用于确定其中,其中磷。然而,以下因素严重阻碍了这种分析:使用的标准分析方法是X射线荧光(XRF),但磷的测量受矩阵和元素间干扰的严重影响。替代技术是光学发射光谱(ICP-OES)的电感耦合等离子体,但使用ICP-OE也存在并发症。岩石中磷的丰度非常低,通常在0.5%wt下。 ICP-OE对磷也非常不敏感,因此必须使用最敏感的谱线进行量化,并且通过Fe和Cu的这些线路存在严重的光谱干扰。本研究检查了几种用于测定磷酸盐的分析方法,使用ICP-OES使用融合和分析来验证和分析,表明合适的数学程序和软件应用可以为磷酸盐产生良好的效果,与实验室间测试或XRF相当。

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