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Iron sinter process control using X-ray diffraction - part 2: monitoring of low temperature degradation

机译:使用X射线衍射的铁烧结过程控制 - 第2部分:低温降解监测

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To cope with varying raw material qualities and increasing prices for energy, a more frequent and accurate monitoring of the processing of iron ore became the focus in sinter plant operations. Traditionally, quality control in iron producing industries has relied on time-consuming wet chemistry or the analysis of the elemental composition. The mineralogy of a sinter that defines the properties and behaviour in the blast furnace is often not frequently monitored. One fast method to analyse the mineralogical composition of iron sinter, raw mixtures and iron ores is X-ray diffraction (XRD). Recently statistical methods such as similarity analysis or partial least square regression (PLSR) in combination with XRD raw data has become more and more popular in handling large amounts of data and correlating process-relevant parameters directly with an XRD measurement. PLSR can be used to correlate process parameters directly from the XRD pattern without investigating the mineral content. Hidden information that is present in the measurement but not determined with traditional methods can be used to improve the characterisation of the analysed materials.
机译:为了应对不同的原材料素质和增加能源价格,更频繁地对铁矿石加工的更频繁和准确的监测成为烧结植物操作的重点。传统上,铁生产工业的质量控制依赖于耗时的湿化学或元素组成的分析。烧结矿的矿物学通常不会经常监测在高炉中定义高炉中的性质和行为。一种快速分析铁烧结,原料混合物和铁矿石的矿物学组成的快速方法是X射线衍射(XRD)。最近,诸如相似性分析或部分最小二乘回归(PLSR)与XRD原始数据相结合的统计方法在处理大量数据和直接与XRD测量的相关参数之间变得越来越受欢迎。 PLSR可用于将过程参数直接与XRD图案相关,而不研究矿物质含量。在测量中存在但不能用传统方法确定的隐藏信息可用于改善分析的材料的表征。

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