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Condensed Mode Cooling of Ethylene Polymerization in Fluidized Bed Reactors

机译:流化床反应器中乙烯聚合的冷凝模式冷却

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摘要

This review gives an overview of the evolution of the technology of condensed mode cooling, primarily for the case of ethylene polymerization on supported catalysts in fluidized bed reactors. It is well known that this mode of heat removal is quite effective in allowing polyolefin manufacturers to increase significantly production rates. What is perhaps less well understood are all of the issues that, in addition to the effect of the latent heat of vaporization of injected liquid components, also have an impact on the rate of production and behavior of the reactor. However, the liquid components injected into the reactor can vaporize rapidly under full-scale conditions, leaving behind several heavy components (with respect to ethylene) that have numerous effects on how the particles behave, on the reaction rate, and on fluidization, fouling, and other parameters related to reactor and process performance.
机译:本综述概述了冷凝模式冷却技术的演变,主要用于流化床反应器中负载催化剂上的乙烯聚合的情况。众所周知,这种散热模式非常有效地允许聚烯烃制造商增加显着的生产率。可能更易于理解的是所有问题,除了注射液体组分的蒸发潜热的影响外,还对反应器的生产速率和行为产生影响。然而,注入反应器中的液体成分可以在满量程条件下快速蒸发,留下几个重的成分(相对于乙烯),对粒子的表现,反应速率和流化,污垢,污垢有很多影响。和其他与电抗器和工艺性能相关的参数。

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