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Studies on the runaway reaction of ABS polymerization process

机译:ABS聚合过程失控反应的研究

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Taiwan has the largest acrylonitrile-butadiene-styrene (ABS) copoly mer production in the world. Preventing on unexpected exothermic reactions and related emergency relief hazard is essential in the safety control of ABS emulsion polymerization. A VSP2 (Vent Sizing Package 2) apparatus is capable of studying both normal and abnormal conditions (e.g., cooling failure, mischarge, etc.) of industrial process. In this study, the scenarios were verified from the following abnormal conditions: loss of cooling, double charge of initiator, overcharge of monomer, without charge of solvent, and external fire. An external fire with constant heating will promote higher self-heat rate and this is recommended as the worst case scenario of emulsion polymerization on butadiene. Cooling failure coupled with bulk system of reactant was determined to be the credible worst case in ABS emulsion polymerization. Finally, the emergency vent sizing based on thermokinetics from VSP associated with DIERS methodology were used for evaluating the vent sizing and compared to that of the industrial plants.
机译:台湾拥有世界上最大的丙烯腈-丁二烯-苯乙烯(ABS)共聚物生产。防止意外的放热反应和相关的紧急释放危险对于ABS乳液聚合的安全控制至关重要。 VSP2(通风口定径包装2)设备能够研究工业过程的正常和异常条件(例如,冷却故障,误装等)。在这项研究中,从以下异常条件验证了这些场景:冷却损失,引发剂的两次进料,单体的过度充电,不带溶剂的进料以及外部着火。持续加热的外部火势将提高自热率,因此建议将其用作丁二烯乳液聚合的最坏情况。在ABS乳液聚合中,冷却失败加上反应物的本体系统是最可靠的最坏情况。最后,基于VSP的热动力学与DIERS方法相关联的紧急通风口尺寸用于评估通风口尺寸,并与工业工厂进行比较。

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