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Study of sorption, heat and mass transfer during condensed mode operation of gas phase ethylene polymerization on supported catalyst.

机译:研究负载型催化剂上气相乙烯聚合反应的冷凝模式下的吸附,传热和传质。

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摘要

In the current thesis study it is intended to investigate the potential effect of the inert condensing agent (ICA) of n-hexane used in condensed mode operation on the solubility of ethylene in produced polyethylene (PE) and consequently the quality and rate of gas phase ethylene polymerization on supported catalyst under reactive conditions. This is the first time for such a study. Performing the set of designed polymerization reaction experiments using a lab-scale stirred-bed gas phase reactor, it is observed that the instantaneous rate of ethylene polymerization increases in the presence of n-hexane, thus supporting the initial speculation of the effect of n-hexane on the enhancement of the ethylene solubility in polymer known as "cosolubility" phenomenon. In order to have a better picture and understanding, the averaged instantaneous rate of polymerization in presence of n-hexane is normalized with the one without any n-hexane. Consequently, this helps to see that while the effect of n-hexane increases proportionally to its partial pressure in the gas phase composition, this effect is more pronounced at the initial steps during the course of polymerization.;In the current thesis study for the first time, the Sanchez-Lacombe EOS as one of the most widely applied thermodynamic models in polymer industry is adapted and developed in order to study not only the solubility but also concentration of ethylene in polyethylene in the absence and presence of an inert condensing agent in order to quantify the speculated cosorption phenomenon under the reactive polymerization condition. By incorporating this thermodynamic model to describe the solubility of ethylene in polymer into a single particle model like Polymer Flow Model (PFM) to estimate the concentration and temperature gradient through a growing polymer particle, it is ultimately attempted to predict the effect of change in the process operating condition by addition of n-hexane as the ICA to the gas phase composition.;Finally in the current thesis study, it is demonstrated how the thermal effect associated with the heat of sorption of ICAs can have a positive effect in terms of avoiding particle over-heating under certain circumstances like its temporary exposition to the defluidized regions inside a fluidized bed reactor (FBR) as a possible undesirable operating condition for this type of reactor set-ups.
机译:在当前的论文研究中,旨在研究用于冷凝模式操作的正己烷惰性冷凝剂(ICA)对乙烯在生产的聚乙烯(PE)中的溶解度以及气相质量和速率的潜在影响。反应条件下在负载型催化剂上进行乙烯聚合。这是此类研究的第一次。使用实验室规模的搅拌床气相反应器进行一组设计的聚合反应实验,观察到在正己烷存在下乙烯聚合的瞬时速率增加,因此支持了对正丁烷效应的初步推测。正己烷对提高乙烯在聚合物中的溶解度的作用被称为“共溶性”现象。为了获得更好的图像和理解,将正己烷存在下的平均瞬时聚合速率与不加正己烷的聚合速率进行归一化。因此,这有助于看出,尽管正己烷的作用与其气相组成中的分压成比例地增加,但这种作用在聚合过程的初始步骤中更为明显。当时,Sanchez-Lacombe EOS作为聚合物工业中应用最广泛的热力学模型之一进行了改编和开发,以研究不存在和存在惰性缩合剂的情况下乙烯在聚乙烯中的溶解度和浓度。以量化在反应聚合条件下推测的吸附现象。通过将描述乙烯在聚合物中的溶解度的热力学模型合并到单颗粒模型(如聚合物流模型(PFM))中,以估计通过生长中的聚合物颗粒的浓度和温度梯度,最终试图预测聚合物中乙烯的变化的影响。在气相组成中加入正己烷作为ICA的过程操作条件。最后,在本论文研究中,证明了与ICAs吸附热相关的热效应如何在避免方面具有积极作用颗粒在某些情况下过热,例如暂时暴露在流化床反应器(FBR)内的流化区,这是此类反应器装置可能不希望的运行条件。

著录项

  • 作者

    Alizadeh, Arash.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Chemical engineering.;Polymer chemistry.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 248 p.
  • 总页数 248
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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