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Mathematical Modeling of Nylon 6/6,6 Copolymerization: Beneficial Influence of Comonomers on Degree of Polymerization in Batch Reactor

机译:尼龙6 / 6,6共聚的数学模型:共聚单体对间歇式反应器中聚合度的有益影响

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摘要

A model is developed for hydrolytic copolymerization of caprolactam with hexamethylene diamine (HMD) and adipic acid (ADA) in a batch reactor to produce nylon 6/6,6 copolymer. The reaction mechanism includes hydrolysis of caprolactam and cyclic dimer, polycondensation, polyaddition, transamidation, and ring formation via end biting and back biting. The catalyzing effect of carboxyl groups is accounted for using kinetic parameters from the literature. Model predictions are compared with low-temperature literature data before simulating reactor conditions of industrial interest. The model predicts a higher degree of polymerization (DP) for nylon 6/6,6 copolymer compared to nylon 6 and 6,6 homopolymers produced using the same reactor conditions. Dynamic changes in concentrations of water, caprolactam, HMD, ADA, and end groups are tracked and used to explain the positive influence of comonomers on reaction rates and DP. Insights gained from this model will form a useful basis to build future models of continuous industrial reactors.
机译:建立了在间歇反应器中将己内酰胺与六亚甲基二胺(HMD)和己二酸(ADA)水解共聚的模型,以生产尼龙6 / 6,6共聚物。反应机理包括己内酰胺和环状二聚体的水解,缩聚,加聚,氨基转移和通过末端咬合和背面咬合形成环。使用文献中的动力学参数来说明羧基的催化作用。在模拟工业关注的反应堆条件之前,将模型预测与低温文献数据进行比较。该模型预测,与使用相同反应器条件生产的尼龙6和6,6均聚物相比,尼龙6 / 6,6共聚物具有更高的聚合度(DP)。跟踪水,己内酰胺,HMD,ADA和端基浓度的动态变化,并用来解释共聚单体对反应速率和DP的积极影响。从该模型中获得的见识将为构建未来的连续工业反应器模型提供有用的基础。

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