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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >InSb Focal Plane Array Chemical Imaging Enables Assessment of Unit Process Efficiency for Milling Operation
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InSb Focal Plane Array Chemical Imaging Enables Assessment of Unit Process Efficiency for Milling Operation

机译:InSb焦平面阵列化学成像可评估铣削操作的单位工艺效率

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摘要

In the dry milling of wheat flour, each unit process (roller mill, purifier, sifter, etc.) produces a mixture with varying amounts of wheat endosperm and non-endosperm byproducts. Chemical images with 82 000 pixels of each intermediate product stream issuing from an individual processing machine are readily analyzed in terms of the relative amount of endosperm and non-endosperm. Approximately three minutes is required to produce an image of each intermediate product stream. Applying partial least squares (PLS) chemometric software to identify individual pixels, which enables calculation of the relative amount of endosperm and non-endosperm, is not a time-limiting factor. When relative flow rates are known for each stream, mass balance can be calculated from each intermediate stream in terms of the product (endosperm content) and the lower value non-endosperm byproduct. Data is presented from a purifier in a commercial flour mill. Intermediate streams collected from a run with optimized operational parameters were compared to those of another run before adjustment. The endosperm (product) mass balance profile for each run enabled assessment of operational efficiency. The devised chemical imaging analysis system would be particularly useful in commissioning of a new mill or to optimize existing wheat milling systems. Also, when raw material differs from that for which previous optimization was established, a new optimization may be in order. The ability to acquire a large number of spectra from a specimen and apply multivariate statistics to identify each pixel and subsequently count pixels accommodates heterogeneity and reports the results from averaging a very large number of individual spectra. A second illustration of the utility of the imaging method is presented centering on streams from the first and second break unit operations at the beginning of the roller mill process.
机译:在小麦粉的干磨中,每个单元过程(辊磨,纯化器,筛分器等)都会产生混合物,其中包含不同数量的小麦胚乳和非胚乳副产物。根据胚乳和非胚乳的相对量,可以轻松分析从单个加工机发出的每个中间产品流的82 000像素的化学图像。生成每个中间产品流的图像大约需要三分钟。应用偏最小二乘(PLS)化学计量软件来识别单个像素,这可以计算胚乳和非胚乳的相对量,这不是时间限制因素。当已知每个物流的相对流速时,可以根据产物(胚乳含量)和较低值的非胚乳副产物,从每个中间物流计算质量平衡。数据是从商业面粉厂的纯化器中获得的。在调整之前,将从运行优化的运行中收集的中间流与另一运行中的中间流进行比较。每次运行的胚乳(产品)质量平衡曲线可以评估运营效率。设计的化学成像分析系统在调试新磨机或优化现有的小麦磨粉系统时特别有用。同样,当原材料不同于先前建立优化的原材料时,可能需要进行新的优化。从样本中获取大量光谱并应用多元统计信息以识别每个像素,然后对像素进行计数的能力可容纳异质性,并报告平均大量单个光谱的结果。在辊轧机工艺开始时,以第一和第二破碎单元操作产生的物流为中心,介绍了成像方法的实用性的第二个说明。

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