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A Monte Carlo-based error propagation analysis of Simulated Moving Bed systems

机译:基于蒙特卡洛的模拟移动床系统误差传播分析

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A Monte Carlo-based uncertainty analysis for the performance assessment of a Simulated Moving Bed (SMB) system, which is widely employed in the petrochemical, sugar, and pharmaceutical industries, is presented. The error propagation analysis is carried out to predict the performance of the SMB system for two different binary separations: (a) glucose-fructose separation in a pilot-scale SMB unit and (b) separation of p-xylene from xylene isomers in an industrial-scale SMB unit. Existing SMB models in literature, which utilize a linear isotherm for the glucose-fructose separation [D.C.S. Azevedo, A.E. Rodrigues, Fructose-glucose separation in a SMB pilot unit: modelling, simulation, design and operation, AIChE J. 47 (2001) 2042-2051] and a nonlinear isotherm for the separation of xylene isomers [M. Minceva, A.E. Rodrigues, Modeling and simulation of a simulated moving bed for the separation of p-xylene, Ind. Eng. Chem. Res. 41 (2002) 3454-3461], are employed for the analysis. While the purity and productivity of glucose and fructose are chosen as the performance (or output) variables in the former case study, the purity and recovery of p-xylene are chosen as those in the latter. In both cases, the isotherm parameters, often obtained from chromatography experiments with appreciable levels of uncertainty, are chosen as the process (or input) variables. From the sensitivity analysis, simple models are developed to predict the variations in the performance of the SMB as a function of the isotherm parameters.
机译:提出了一种基于蒙特卡洛的不确定性分析,用于模拟移动床(SMB)系统的性能评估,该系统已广泛应用于石化,制糖和制药行业。进行误差传播分析以预测SMB系统在两种不同的二元分离中的性能:(a)中试规模SMB单元中的葡萄糖-果糖分离,以及(b)工业中二甲苯异构体与对二甲苯的分离规模的SMB单位。文献中的现有SMB模型采用线性等温线进行葡萄糖-果糖分离[D.C.S. Azevedo,A.E. Rodrigues,SMB中试单元中的果糖-葡萄糖分离:建模,仿真,设计和操作,AIChE J. 47(2001)2042-2051]和用于分离二甲苯异构体的非线性等温线[M. Minceva,A.E。Rodrigues,用于分离对二甲苯的模拟移动床的建模和模拟,Ind.Eng。化学Res。 41(2002)3454-3461],用于分析。在前一个案例研究中,选择葡萄糖和果糖的纯度和生产率作为性能(或产量)变量,而在后一个案例中,选择对二甲苯的纯度和回收率。在这两种情况下,通常从具有明显不确定性水平的色谱实验中获得的等温线参数都被选作过程(或输入)变量。通过敏感性分析,可以开发出简单的模型来预测SMB性能随等温线参数的变化。

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