Department of Chemical Engineering University of Notre Dame Notre Dame, Indiana 46556.
Biotechnol Prog. 1985 Mar;1(1):60-8. doi: 10.1002/btpr.5420010112.
Continuous free-flow electrophoresis (CFE) provides the biochemist with a powerful technique for preparative-scale purification of labile biomolecules. However, solute resolution in the classic CFE is limited by the deleterious effects of diffusion, electroosmotic dispersion, and connective dispersion. These problems can be overcome in the CFE by continuously recycling effluent through the chamber in a manner which allows complete recovery of undiluted product at arbitrarily high purities.Mathematical models of the continuous flow device with recycle (RCFE) are derived for the two limiting cases: rapid diffusion and slow diffusion. The analytical solutions of these models are used to predict separation factors under various operating conditions.
连续自由流电泳(CFE)为生物化学家提供了一种强大的技术,可用于不稳定生物分子的制备规模纯化。然而,经典 CFE 中的溶质分辨率受到扩散、电渗分散和连接性分散的有害影响的限制。通过以允许以任意高的纯度完全回收未稀释产物的方式连续将流出物循环通过腔室,可以在 CFE 中克服这些问题。
为具有再循环的连续流动装置(RCFE)导出了两种极限情况的数学模型:快速扩散和缓慢扩散。这些模型的解析解用于预测各种操作条件下的分离因子。