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首页> 外文期刊>Organic process research & development >Automated Multitrajectory Method for Reaction Optimization in a Microfluidic System using Online IR Analysis
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Automated Multitrajectory Method for Reaction Optimization in a Microfluidic System using Online IR Analysis

机译:在线红外分析的微流控系统反应自动优化多道方法

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摘要

An automated multitrajectory optimization platform with continuous online infrared (IR) monitoring is presented. The production rate of a Paal—Knorr reaction is maximized within a constrained temperature and residence time design space. The automated platform utilizes a microreactor system to carry out optimizations with low material requirements and implements a micro IR flow cell for continuous online monitoring of reaction conversion. The approach to steady state at each set of reaction conditions is assessed continuously before the objective function is evaluated and reactor conditions move to the next set point. Several optimization algorithms are tested for their performance on a complex objective terrain. Each function comes to agreement on the optimal conditions but requires a significantly different number of experiments to reach the final conditions. Additionally, multiple objective functions are compared to analyze the trade-off between production rate and conversion.
机译:提出了一种具有连续在线红外(IR)监控的自动多轨优化平台。在受限的温度和停留时间设计空间内,Paal-Knorr反应的生产率最高。该自动化平台利用微反应器系统进行材料要求低的优化,并实现了一个微型IR流通池,用于连续在线监测反应转化率。在评估目标函数并将反应器条件移至下一个设定点之前,要连续评估每组反应条件下达到稳态的方法。测试了几种优化算法在复杂目标地形上的性能。每个功能均在最佳条件下达成协议,但需要大量不同的实验才能达到最终条件。此外,比较了多个目标函数以分析生产率和转化率之间的权衡。

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