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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Effectiveness of the H-root method for determining adsorption isotherms of protein-salt systems in open micro-channels
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Effectiveness of the H-root method for determining adsorption isotherms of protein-salt systems in open micro-channels

机译:H根法确定开放式微通道中蛋白质盐系统吸附等温线的有效性

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The application of the H-root method (HRM) for predicting isotherm data for protein-salt systems in open-channel chromatographs is presented. HRM mainly consists of performing a regression of the chromatographic response of a system in order to predict the isotherms of the solutes. The method is applicable to proteins with Type 1 (Langmuir) isotherms. FIRM enables a quick determination of the effects of salt on protein isotherms, to facilitate the development of preparative separation protocols of trace proteins in open micro-channel systems. Two configurations were investigated: micro open parallel plate system (muOPPS) and micro open tubular system (muOTS). The effectiveness of HRM was evaluated by simulating the behavior of these open-channel systems with mass-transfer effects included. The influence of operating and geometrical parameters was determined with a detailed parametric study. It was found that HRM can give good estimates of the adsorption isotherms in both micro-channel systems. This is primarily attributed to efficient mass transfer, which ensured correspondence to the equilibrium assumption of HRM. In general, the muOTS was found to give more accurate predictions than the muOPPS. This is attributed to the smooth circular perimeter of flow. Nevertheless, the difference in accuracy is generally insignificant, and with the proper selection of operating conditions, both systems are well suited for HRM. (C) 2003 Elsevier B.V All rights reserved.
机译:提出了H根方法(HRM)在开放通道色谱仪中预测蛋白质盐系统等温线数据的应用。 HRM主要包括执行系统色谱响应的回归,以预测溶质的等温线。该方法适用于具有1型(朗缪尔)等温线的蛋白质。 FIRM可以快速确定盐对蛋白质等温线的影响,从而有助于开发开放式微通道系统中痕量蛋白质的制备分离方案。研究了两种配置:微开平行板系统(muOPPS)和微开管状系统(muOTS)。通过模拟包含传质效应的这些明渠系统的行为来评估HRM的有效性。通过详细的参数研究确定了操作参数和几何参数的影响。已经发现,HRM可以很好地估计两个微通道系统中的吸附等温线。这主要归因于有效的质量传递,这确保了与HRM的平衡假设相对应。通常,发现muOTS比muOPPS给出更准确的预测。这归因于流动的光滑圆形周长。但是,精度差异通常不大,并且通过适当选择运行条件,两个系统都非常适合HRM。 (C)2003 Elsevier B.V保留所有权利。

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