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Effect of initiator concentration to low-density polyethylene production in a tubular reactor

机译:引发剂浓度在管状反应器中对低密度聚乙烯产生的影响

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Low-density polyethylene (LDPE) is one of the most widely used polymers in the world, which is produced in high-capacity tubular and autoclave reactors. As the LDPE industry turn into more competitive and its market profit margins become tighter, manufacturers have to develop solutions to debottleneck the reactor output while abiding to the stringent product specification. A single polyolefin plant producing ten to forty grades of LDPE with various melt flow index (MFI), therefore understanding the reaction mechanism, the operating conditions as well as the dynamic behavior of tubular reactor is essential before any improvement can take place. In the present work, a steady state mathematical model representing a tubular reactor for the production of LDPE is simulated using MATLAB R2015a~R. The model developed is a function of feed inlet, reactor jacket, single initiator injector and outlet stream. Analysis on the effect of initiator concentration (CI) shows sudden declining trend of initiator's concentration which indicates that all of the initiators are exhausted after polymerization reaction and no further reaction occur from this point onwards. Furthermore, the results demonstrate that the concentration of initiator gives significant impact on reactor temperature's profile and monomer conversion rate, since higher initiator concentration promotes greater polymerization rate, and therefore leads to higher monomer conversion throughput.
机译:低密度聚乙烯(LDPE)是世界上最广泛使用的聚合物之一,其在高容量管状和高压釜反应堆中产生。随着LDPE行业变成更具竞争力,其市场利润率变得更加紧张,因此制造商必须在遵循严格的产品规范的同时开发Debottleeneck的替代反应堆输出的解决方案。在任何改进可能发生之前,单个聚烯烃植物产生10至40级的LDPE,因此了解反应机制,操作条件以及管状反应器的动态行为是必不可少的。在本作工作中,使用Matlab R2015A〜R模拟代表用于生产LDPE的管状反应器的稳态数学模型。该模型开发的是进料入口,电抗夹套,单引发器注射器和出口流的功能。引发剂浓度(CI)效应的分析显示引发剂浓度突然下降,表明所有引发剂在聚合反应后排出,并且从该点开始发生进一步的反应。此外,结果表明,引发剂的浓度对反应器温度的曲线和单体转化率产生显着影响,因为较高的引发剂浓度促进更高的聚合速率,因此导致更高的单体转化产量。

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