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EXPERIENCES WITH APPLICATION OF RAPID METHODS FOR TRUE PURITY AND DRY SUBSTANCE ASSESSMENT IN FACTORY PRODUCT STREAMS

机译:快速方法在工厂产品流中进行纯净度和干物质评估的经验

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While laboratory operations are integral to maintaining effective factory control, there are pressures both to reduce costs, and from a lack of appropriately skilled employees willing to work on a seasonal basis. Alternative methods of assessing the true purity and dry substance of factory products were described previously by this principal author. These methods were used for routine shift analysis in the Mulgrave Mill laboratory during the 2005 and 2006 seasons. Implementation included development of processes to further reduce labour requirements. The methods returned satisfactory assessments of true purity and dry substance. Over two years the standard error of prediction (SEP, calculated as the standard deviation of the difference between conventional and alternative analytical methods) for the true purity assessment method was 0.86% purity, with 95% of results being within 1.8% purity of the conventional analysis. The dry substance method returned a SEP of 0.45%, with 95% of results being within 1.0%. The alternative methods provided significant advantages over other common methods due to the low levels of analytical skill and input required, low costs and brief time taken for completion. The implementation of these methods has been a key element in reducing laboratory manning without a reduction in analytical quality or quantity. Shift analysts are able to undertake vastly more analytical work than was possible using conventional methods. The alternative methods have been found ideal for analysing samples taken during factory trials, allowing large numbers of samples to be collected and analysed in short time frames.
机译:虽然实验室操作对于保持有效的工厂控制是必不可少的,但存在降低成本的压力,以及缺乏愿意在季节性基础上工作的熟练技术人员的压力。该主要作者先前曾描述过评估工厂产品真实纯度和干物质的其他方法。这些方法用于Mulgrave Mill实验室在2005年和2006年季节进行的常规班次分析。实施包括制定流程以进一步减少劳动力需求。这些方法对真实的纯度和干物质返回了令人满意的评估。在过去的两年中,真实纯度评估方法的标准预测误差(SEP,由常规分析方法和替代分析方法之间的差异的标准差计算)为0.86%纯度,其中95%的结果在常规纯度的1.8%范围内分析。干物质方法的SEP为0.45%,结果的95%在1.0%以内。由于分析技能和所需的投入水平低,成本低且完成所需的时间短,因此替代方法与其他常见方法相比具有明显的优势。在不降低分析质量或数量的前提下,这些方法的实施一直是减少实验室人员的关键要素。与传统方法相比,Shift分析人员能够进行更多的分析工作。已经发现替代方法非常适合分析工厂试验期间采集的样品,从而可以在短时间内收集和分析大量样品。

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