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Optimal Economic Design and Operation of Single- and Multi-column Chromatographic Processes

机译:单列和多列色谱过程的最佳经济设计和操作

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Single-column chromatography is widely used in the biopharmaceutical industries, although multi-column alternatives in the form of simulated moving bed (SMB) processes are now emerging. It may be difficult, however, to determine which column alternative will be best suited for a given application, and this work sets out to address this issue. A systematic approach is presented that is based on a full economic appraisal of each process alternative based on an optimization of the net annual profit. Single-column processes with and without recycling are considered, as are both the SMB and the Varicol process. The cyclic steady state for the SMB and Varicol processes is determined directly by complete discretization. The approach is applied to a case study based on a linear isotherm where it is found that for this particular system, a recycling policy is not necessary for the single column. When comparing the single-column process with the multi-column alternatives, the single column is the most economical provided the life time of the project is short; however, the economic benefits of the more capital-intensive multi-column processes are greater if the life time of the project is over 5 years. The SMB process is found to perform marginally better than the Varicol process over 15 years; however, this may be because not all extra degrees of freedom for the Varicol process were considered.
机译:尽管目前正在出现以模拟移动床(SMB)工艺形式出现的多列替代品,但单列色谱已广泛应用于生物制药行业。但是,可能很难确定哪种色谱柱替代品最适合给定的应用程序,这项工作着眼于解决这个问题。提出了一种系统的方法,该方法基于对每个流程替代方案的全面经济评估,并基于年度净利润的优化。与SMB和Varicol工艺一样,都考虑了有或没有回收的单塔工艺。 SMB和Varicol工艺的循环稳态直接由完全离散化确定。该方法应用于基于线性等温线的案例研究,在该案例中,发现对于此特定系统,对于单个色谱柱无需采取回收政策。在将单列方法与多列方法进行比较时,如果项目的生命周期较短,则单列方法最经济。但是,如果项目的生命周期超过5年,则更多的资本密集型多列过程的经济利益会更大。发现SMB工艺在15年中的性能略好于Varicol工艺。但是,这可能是因为并未考虑到Varicol工艺的所有额外自由度。

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