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Optimal temperature profiles for nylon 6 polymerization in plug‐flow reactors

机译:活塞流反应器中尼龙6聚合的最佳温度曲线

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AbstractOptimal temperature profiles for nylon 6 polymerization in plug‐flow reactors have been obtained under different conditions using a reasonable objective function which gives more flexibility to a designer than those studied earlier. Computations suggest that the temperatures at the feed end of the reactor must be maintained at the highest permissible level (determined by the boiling point of the ϵ‐caprolactam) so as to force the degree of polymerization rapidly to the desired value. Thereafter, the temperatures should be reduced in order to minimize the undesirable cyclic dimer concentration, and, finally, near the exit of the reactor, the temperature must once again be increased in order to attain higher monomer conversion. The effect of a systematic change of values of the various design variables, one by one, is studied. The profile obtained differs substantially from those obtained by earlier workers because of the difference in the objective function as well as in the kinetic mechanism associated with the formation of the cyclic oligomer. Attempts are also made to obtain a global optimal scheme to produce a polymer of a desired degree of polymeriza
机译:摘要在不同条件下,使用合理的目标函数获得了活塞流反应器中尼龙6聚合的最佳温度曲线,这为设计人员提供了比之前研究的更大的灵活性。计算表明,反应器进料端的温度必须保持在最高允许水平(由ε己内酰胺的沸点决定),以便迫使聚合度迅速达到所需值。此后,应降低温度以尽量减少不需要的环状二聚体浓度,最后,在反应器出口附近,必须再次提高温度以获得更高的单体转化率。逐一研究了系统地改变各种设计变量值的影响。由于目标函数以及与环状低聚物形成相关的动力学机制不同,因此获得的图谱与早期工作者获得的图谱有很大不同。还尝试获得一种全局最优方案,以生产具有所需聚合度的聚合物

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