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Design trade-offs in a column with side-reactor configuration for improving selectivity in multiple reaction systems

机译:具有侧面反应器配置的柱中的设计折衷,用于提高多次反应系统中的选择性

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摘要

The configuration of columns with side-reactors (SRC) can effectively enhance the performance of reaction-separation processes, particularly where the operational limitations of conventional multifunctional reactors, such as reactive distillation systems, negate the overall benefits. Industrial manufacturing processes often use multiple reaction schemes that result in both desired and undesired products. The selectivity and yield of the desired product are usually improved by using large reaction vessels or high recycle flow rates of excess reactant. Therefore, in multiunit chemical processes, the foremost design trade-off is between the reaction vessel volume and the recycle flow rate. In this study, we investigate the competition of these parameters in SRC configurations in achieving specific conversion or yield criteria. Two real chemical processes involving side-reactors of non reactive distillation columns and recycle streams are considered and their optimal design configurations are detailed. The results affirm the importance of this trade-off and its quantitative analysis to obtain the optimal SRC configuration.
机译:具有侧反应器(SRC)的柱的构造可以有效地增强反应分离过程的性能,特别是在常规多功能反应器的操作限制,例如反应蒸馏系统,否定整体益处。工业制造过程经常使用多种反应方案,从而导致所需和不需要的产品。通过使用大反应容器或过量反应物的高循环流速来改善所需产物的选择性和产率。因此,在多单化学过程中,最重要的设计折衷是在反应容器体积和循环流速之间。在这项研究中,我们在实现特定转换或收益标准方面调查SRC配置中这些参数的竞争。考虑了涉及非反应蒸馏塔的侧反应器和再循环物流的两种实际化学过程,并详细说明它们的最佳设计配置。结果肯定了该权衡的重要性及其定量分析,以获得最佳的SRC配置。

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