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Case studies with mathematical modeling of free-radical multi-component bulk/solution polymerizations: Part 2

机译:自由基多分量批量/溶液聚合的数学建模案例研究:第2部分

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摘要

In Part 2 of this series of two extensive overviews of multi-component polymerization case studies, we again present mathematical modeling results with experimental confirmations. Part 2 represents a refinement and expansion of the detailed and extensive mathematical model presented in Part 1 for free-radical, bulk and/or solution multi-component polymerizations. The expansion is mainly with respect to depropagation, thus making the model more fluent at elevated polymerization temperatures and, in parallel, with additional features as backbiting (with systems involving butyl acrylate). The model considers up to six monomers (unique in the literature), for either batch or semi-batch reactor modes. As the simulator database contains several monomers, initiators, solvents, chain transfer agents and inhibitors, all tested over a wide range of polymerization conditions, from data in both academic and industrial laboratories, several hundred combinations of ingredients can be modeled. The many outputs generated by the model include conversion, molecular weight, polymer composition, branching indicators, sequence length, as well as many other polymerization characteristics related to both production rate and polymer quality. Although the only literature data found to date contain a maximum of four monomers, model predictions for homo-, co-, ter- and tetra-polymerizations show reasonable agreement against the data at both regular and elevated temperatures. With these expansions, this model is directed towards becoming a complete free-radical polymerization tool for training and educational uses both in industry and academia.
机译:在这一系列的两种广泛概述的多组分聚合案例研究中,我们再次将数学建模结果与实验证实呈现。第2部分表示用于自由基,体积和/或溶液多组分聚合的第1部分中提供的详细和广泛数学模型的细化和扩展。膨胀主要是关于脱贫,从而使模型更流畅,在升高的聚合温度下,并平行具有额外的特征,如备注(有涉及丙烯酸丁酯的系统)。该模型考虑到批次或半批量反应器模式最多六种单体(文献中的独特)。由于模拟器数据库包含多种单体,引发剂,溶剂,链转移剂和抑制剂,所有这些都在广泛的聚合条件下测试,从学术和工业实验室的数据,可以建模数百种成分组合。模型产生的许多输出包括转化,分子量,聚合物组合物,支化指示剂,序列长度以及与生产率和聚合物质量有关的许多其他聚合特性。虽然发现迄今为止唯一的文献数据最多包含四种单体,但同源的模型预测,用于常规和高温的数据的合理达成协议。通过这些扩展,该模型旨在成为在工业和学术界的培训和教育用途的完全自由基聚合工具。

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