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Thermal runaway risk analysis in styrenic block copolymer production

机译:苯乙烯嵌段共聚物生产中的热失控风险分析

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Styrenic butadiene block copolymers are an important family of commercial materials in the category of thermoplastic elastomers. These elastomers are made of separate polymeric blocks. At the beginning, there is a hard polystyrene block and in the middle, there is a polybutadiene block. Butadiene is the monomer in highest concentration in regular styrenic block copolymers. The main risk linked to the production of styrenic block copolymers on an industrial scale is the loss of control of the reactor temperature, which may lead to a temperature increase resulting in a pressure increase above its design pressure during the formation of the polybutadiene block. Fatal accidents have occurred in some chemical plants due to runaway butadiene polymerization. Critical parameters that characterize thermal runaway for the anionic polymerization of butadiene in batch reactors were established for different scale reactors: laboratory, pilot and industrial reactors. Runaway and safe conditions are identified based on the pattern of temperature and conversion trajectories near complete butadiene conversion. The resulting is useful for establishing runaway diagrams for the anionic polymerization of butadiene in batch reactors using dimensionless parameters: reaction sensitivity and cooling intensity.
机译:苯乙烯酸丁二烯嵌段共聚物是热塑性弹性体类别中的重要商业材料。这些弹性体由单独的聚合物块制成。在开始时,存在硬质聚苯乙烯块和中间,有一个聚丁二烯块。丁二烯是常规苯乙烯嵌段共聚物中最高浓度的单体。与产业量表中苯乙烯嵌段共聚物产生的主要风险是对反应器温度的控制丧失,这可能导致温度升高,导致在聚丁二烯嵌段形成期间的设计压力高于其设计压力。由于失控的丁二烯聚合,一些化学植物发生了致命事故。为不同的刻度反应器建立了用于分批反应器中丁二烯的阴离子聚合的热失控的关键参数,不同的刻度反应器:实验室,飞行员和工业反应器。基于完全丁二烯转换的温度和转换轨迹的模式来识别失控和安全条件。由此产生的对于使用无量纲参数建立用于在间歇式反应器中丁二烯的阴离子聚合的失控图:反应灵敏度和冷却强度。

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