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Process development utilizing advanced technologies: the RC1 reaction calorimeter the multifunctional SimuSolv software and the ReactIR reaction analysis system

机译:利用先进技术进行工艺开发:RC1反应量热仪,多功能SimuSolv软件和ReactIR反应分析系统

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Abstract: In-situ FTIR has been used to monitor reactions occurring in an automated laboratory calorimeter. The study successfully acquired both Arrhenius parameters and heats of reaction from a single experiment. The combination of enhanced control and measurement sensitivity affords an efficient method of reaction monitoring and process development. In addition to providing composition monitoring, the FTIR-based analysis system revealed reaction pathway information. The highly controllable automated laboratory calorimeter accurately and precisely regulated and recorded reaction conditions leading to the estimation of model parameters with high confidence.!2
机译:摘要:原位FTIR已用于监测自动化量热仪中发生的反应。该研究从一个实验中成功获得了阿累尼乌斯参数和反应热。增强的控制和测量灵敏度的结合提供了一种有效的反应监测和工艺开发方法。除了提供成分监控之外,基于FTIR的分析系统还显示了反应途径信息。高度可控的自动化实验室量热仪能够准确,精确地调节和记录反应条件,从而可以高度自信地估算模型参数!2

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