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Thermally safe operation of a semibatch reactor for liquid-liquid reactions - Fast reactions

机译:半间歇式反应器在液-液反应中的热安全运行-快速反应

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摘要

Accumulation of the reactant supplied to a cooled semibatch reactor (SBR) will occur if the mass transfer rate across the interface is insufficient to keep pace with the supply rate. Then, due to a low starting temperature or supercooling, the reaction temperature does not rise fast enough to the desired value. This accumulation may eventually lead to a temperature runaway. We investigated the possibility of such an event for reactions of the type "chemically enhanced mass transfer" or "fast" and found that only low distribution coefficients, i.e. 10-4 or lower, can lead to accumulation. At higher distribution coefficients, the mass transfer rate across the interface of a well-mixed dispersion is generally sufficient to prevent accumulation. A thermal runaway in the fast regime exerts a moderate effect, because the effective activation energy is halved. Calculations for the instantaneous reaction regime, regarded as a special case of fast reactions, show that there is no runaway possible.
机译:如果通过界面的传质速率不足以跟上供应速率,则将发生供应到冷却的半间歇反应器(SBR)的反应物的积累。然后,由于低的起始温度或过冷,反应温度不能足够快地升高到所需值。这种积累最终可能导致温度失控。我们研究了这种事件对于“化学增强的传质”或“快速”类型反应的可能性,并发现只有低的分配系数,即10-4或更低,才能导致积累。在较高的分配系数下,穿过充分混合的分散体界面的传质速率通常足以防止积累。快速有效状态下的热失控产生了适度的作用,因为有效的活化能减半了。瞬时反应状态的计算被视为快速反应的特例,表明不可能失控。

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