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Automating multistep flow synthesis: approach and challenges in integrating chemistry, machines and logic

机译:自动化多步流合成:化学,机器和​​逻辑集成的方法和挑战

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The implementation of automation in the multistep flow synthesis is essential for transforming laboratory-scale chemistry into a reliable industrial process. In this review, we briefly introduce the role of automation based on its application in synthesis viz. auto sampling and inline monitoring, optimization and process control. Subsequently, we have critically reviewed a few multistep flow synthesis and suggested a possible control strategy to be implemented so that it helps to reliably transfer the laboratory-scale synthesis strategy to a pilot scale at its optimum conditions. Due to the vast literature in multistep synthesis, we have classified the literature and have identified the case studies based on few criteria viz. type of reaction, heating methods, processes involving in-line separation units, telescopic synthesis, processes involving in-line quenching and process with the smallest time scale of operation. This classification will cover the broader range in the multistep synthesis literature.
机译:在多步流合成中实现自动化对于将实验室规模的化学转化为可靠的工业过程至关重要。在这篇综述中,我们基于其在综合中的应用简要介绍了自动化的作用。自动采样和在线监测,优化和过程控制。随后,我们严格审查了一些多步流合成,并提出了可能要实施的控制策略,以使其能够在最佳条件下可靠地将实验室规模的合成策略转换为中试规模。由于有关多步合成的大量文献,我们对文献进行了分类,并根据很少的标准确定了案例研究。反应类型,加热方法,涉及在线分离单元的过程,伸缩合成,涉及在线淬火的过程以及操作时间最短的过程。这种分类将涵盖多步合成文献中的更广泛范围。

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