首页> 外文学位 >MATHEMATICAL MODELLING OF THREE-PHASE SLURRY REACTORS.
【24h】

MATHEMATICAL MODELLING OF THREE-PHASE SLURRY REACTORS.

机译:三相淤浆反应器的数学建模。

获取原文
获取原文并翻译 | 示例

摘要

Three-phase slurry reactors, which are characterized by a dispersed gas phase, a suspended solid phase, and a continuous liquid phase, are widely used in the chemical industry for gas-liquid-solid reactions. Understanding the physicochemical phenomena of the reactor is essential to design and control the reactor. Also, estimation of system parameters is important for reactor scale-up.; The objectives of this study are to investigate the dynamic responses of the three-phase slurry reactor and to propose methods for the determination of system parameters for linear and nonlinear systems. The PM-PM-HS/ID model, which assumes perfect mixing (PM) in the gas and liquid phases and homogeneous suspension (HS) of the solid phase, is used for the study. The phenomenon of intraparticle diffusion (ID) is also considered in this model.; The effect of chemical kinetics, linear or nonlinear, on the dynamics of the reactor was studied. The kinetics include a first-order reaction with respect to a single gas reactant or a single liquid reactant, a power-law type reaction with respect to a single gas reactant, a Michaelis-Menten type reaction with respect to a single gas reactant or a single liquid reactant, and a substrate inhibition type reaction with respect to a single liquid reactant.; Analytical solutions were presented for first-order reaction systems under batch, semi-batch, and continuous operations. The results show that two types of responses exist if an input perturbation, i.e., the sudden introduction of catalyst into the reactor at time zero, is employed. The criteria to distinguish these two responses were obtained analytically. These criteria are independent of the parameters related to the intermediate transport processes such as liquid-solid mass transfer coefficients and intraparticle diffusion coefficient. With these criteria, simple experimental methods were proposed to obtain the intrinsic first-order rate constant directly from the experiments without considering the effect of intermediate transport processes.; Numerical solutions were also presented for non-linear systems by the method of orthogonal collocation. The criteria to distinguish two responses are no longer independent of the parameters related to the intermediate transport processes. However, if the system possesses a shifting order kinetics with an extreme condition of first-order reaction, the rate constants still can be obtained by using the proposed methods. A case study was presented for the system with a Michaelis-Menten type of rate expression.
机译:三相淤浆反应器以分散的气相,悬浮的固相和连续的液相为特征,在化学工业中被广泛用于气-液-固反应。了解反应器的物理化学现象对于设计和控制反应器至关重要。同样,系统参数的估计对于扩大反应堆也很重要。这项研究的目的是研究三相浆料反应器的动力响应,并提出确定线性和非线性系统的系统参数的方法。本研究使用的是PM-PM-HS / ID模型,该模型假设在气相和液相中存在完美的混合(PM),在固相中存在均匀的悬浮液(HS)。该模型中还考虑了颗粒内扩散(ID)现象。研究了线性或非线性化学动力学对反应器动力学的影响。动力学包括相对于单一气体反应物或单一液体反应物的一阶反应,相对于单一气体反应物的幂律型反应,相对于单一气体反应物或米氏反应的米氏反应型反应单一液体反应物,和相对于单一液体反应物的底物抑制型反应。为分批,半分批和连续操作的一阶反应系统提供了分析解决方案。结果表明,如果采用输入扰动,即在零时间将催化剂突然引入反应器,则存在两种类型的响应。通过解析获得了区分这两种响应的标准。这些标准独立于与中间传输过程有关的参数,例如液固传质系数和颗粒内扩散系数。根据这些标准,提出了一种简单的实验方法,可以直接从实验中获得固有的一阶速率常数,而无需考虑中间传输过程的影响。还通过正交配置的方法给出了非线性系统的数值解。区分两个响应的标准不再独立于与中间运输过程相关的参数。但是,如果系统具有一阶反应极端条件下的位移动力学,则仍可以使用所提出的方法获得速率常数。提出了一个案例研究,该系统具有Michaelis-Menten类型的比率表达。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号