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Process Analytical Instrumentation, the challenges for in-situ characterization of Complex Particulate Materials

机译:过程分析仪器,对复合颗粒材料原位表征的挑战

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The twin desires to increase competitiveness, and reduce exposure to risk are common to all manufacturers. This translates into increasing product complexity, a constant pressure on costs, and legislated minimisation of environmental footprint which in turn requires better control, more cheaply and with less waste. Hence improving process efficiency and understanding is a key goal for many chemical producers. Particulate handling operations are widespread in the processing of a wide and diverse range of products, including pharmaceuticals, foodstuffs, household, and speciality chemicals with up to 60% of the chemical business involving particle processing. Therefore analytical particle technology has always had an important role to yield microstructure information of such complex materials. There is a widespread perceived industrial need to develop and deliver fast, reliable and accurate tools and methods for the in-situ characterisation of particulate processes and products. The justification being that end-product quality and reproducibility depends on determining the concentration of the solution, the solids, particle size distribution, as these factors dictate the individual process efficiency and have a major impact on downstream operations such as filtration, drying, transport, and storage. While offline characterisation of processes provides a more controlled environment, by definition the product is removed from the process environment, on-line characterisation offers direct observation in process conditions but at the cost of losing control of the measurement environment and the material ceasing to be the ideal, well behaved sample. Process Analytical instruments should be an essential part of the solution especially at high concentration where real industrial processes operate and should demonstrate significant uptake in on-line analysis. But despite all the claims and all the hopes, in the last 15 years the capability to characterise particulate systems in-situ at high concentration has not met with the original expectations. We examine the benefits of replacing off-line analytical procedures with on-line size analysis systems, the challenges of characterising complex and high concentration processes and describes some of the novel technologies being developed to provide not only information on the structure but also on the process performance. Simple adaption of laboratory methods has significant disadvantages, especially at High Concentration which is the typical process situation. There remains a significant challenge in applying novel solutions to provide a more complete and instantaneous picture of both the nature of theproduct and the process. We examine the progress in the field, the issues;; the needs and the factors which must be considered to achieve a successful solution to real applications.
机译:双胞胎渴望提高竞争力,并减少风险的风险是普遍的。这转化为提高产品复杂性,对成本恒定的压力,以及环境足迹的立法最小化,反过来需要更好地控制,更便宜,浪费更少。因此,提高流程效率和理解是许多化学生产者的关键目标。微粒处理操作在加工广泛和多样化的产品中普遍存在,包括药品,食品,家庭和特种化学品,涉及涉及颗粒处理的化学企业的60%。因此,分析粒子技术始终具有重要作用,以产生这些复杂材料的微观结构信息。普遍认为工业需要开发和提供快速,可靠,准确的工具和方法,用于颗粒过程和产品的原位表征。作为最终产品质量和再现性的理由取决于确定溶液的浓度,固体,粒度分布,因为这些因素决定了个体工艺效率,并且对下游操作进行了重大影响,如过滤,干燥,运输,和储存。虽然过程的离线表征提供了一个更受控的环境,但根据定义,产品被从过程环境中移除,在线表征在工艺条件下提供直接观察,但是以减少测量环境的控制成本和可停止的材料理想,表现良好的样本。工艺分析仪器应该是解决方案的重要组成部分,尤其是实际工业过程运作的高浓度,并且应该在在线分析中表现出显着的摄取。但尽管所有的索赔和所有希望,但在过去的15年中,在高浓度下原位颗粒系统表征颗粒系统的能力尚未符合原始的预期。我们研究了用在线大小分析系统替换离线分析程序的好处,表征复杂和高浓度流程的挑战,并描述了一些开发的新技术,不仅提供了结构的信息,还提供了对结构的信息表现。简单的实验室方法适应具有显着的缺点,特别是高浓度,这是典型的过程情况。在应用新的解决方案中仍然存在重大挑战,以提供更完整和瞬间的产品的性质和过程的瞬间图片。我们研究了该领域的进展情况;必须考虑的需求和因素来实现成功的实际应用解决方案。

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