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Determination of Reaction Heat:A Comparison of Measurement and Estimation Techniques

机译:反应热的测定:测量和估算技术的比较

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摘要

The heat of reaction is an important parameter in the safe,successful scale-up of chemical processes.Reaction heat data is used to calculate the potential adiabatic temperature rise of the desired reaction,providing a worst-case scenario for rapid reaction of the entire batch with no heat loss to the surroundings.The data is used in parallel with information regarding the thermal stability of reaction mixtures/components and an intimate knowledge of the process to analyze the risk associated with running it on-scale.If the level of risk is judged to be unacceptable,the analysis can be used to make rational process changes in order to reduce the risk to an acceptable level.The Pfizer global process safety network provides a heat of reaction for all processes run in our kilo laboratories,pilot plant,and manufacturing facilities.In general,there are two methods used to determine reaction heats:(1) experimental measurement using some form of calorimetry,or estimation techniques.Since experimental measurement is not always practical,accurate,or necessary,we set out to show that estimation techniques could be used reliably and efficiently to provide heat of reaction data for a wide range of chemistry.To gain confidence in our ability to accurately predict reaction heats,we carried out a comparative study of measured versus estimated values.The results of this study will be discussed in detail,including rationalization of any significant disparity through further analysis to more fully understand the limitations/advantages of both techniques.To help ensure consistent application of measurement/ estimation across the Pfizer global process safety network,we developed a decision tree to determine whether estimation or measurement should be considered for a particular reaction.In order to maximize the efficiency gain and to ensure accuracy in our estimations,we have created a heat estimation database that allows for (1) rapid archival/retrieval of model compounds,(2) calculation of reaction heat and adiabatic temperature rise,and reporting/documentation of the results.
机译:反应热是安全,成功地放大化学过程的重要参数。反应热数据用于计算所需反应的绝热温升,为整个批次的快速反应提供了最坏的情况该数据与有关反应混合物/组分的热稳定性的信息以及对过程的深入了解并行使用,以分析与大规模运行相关的风险。被判定为不可接受的分析可用于进行合理的过程更改,以将风险降低到可接受的水平。辉瑞全球过程安全网络为我们千家实验室,中试工厂和一般而言,确定反应热的方法有两种:(1)使用某种形式的量热法进行的实验测量或估算技术。化学测量并非总是可行,准确或必要的,我们着手证明可以可靠和有效地使用估算技术来提供适用于多种化学反应的热量的数据。 ,我们进行了实测值与估计值的比较研究。将详细讨论该研究的结果,包括通过进一步分析来合理化任何重大差异,以更充分地了解这两种技术的局限性/优势。关于辉瑞全球过程安全网络的测量/估计,我们开发了决策树来确定是否应针对特定反应进行估计或测量。为了最大程度地提高效率并确保估计的准确性,我们创建了一个热量估算数据库,可以(1)快速存档/检索模型化合物,(2)计算反应热和绝热温升,并报告/记录结果。

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