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EVALUATION OF FOAM FRACTIONATION COLUMN SCALE-UP FOR RECOVERING BOVINE SERUM ALBUMIN

机译:泡沫分馏柱规模化回收牛血清白蛋白的评价

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摘要

Foam fractionation is an adsorptive-bubble separation method that, according to researchers, is a feasible technique for the separation and/or concentration of proteins. The foam fractionation of bovine serum albumin (BSA) in laboratory-scale foam fractionation columns (750 and 1250 mL) and the relationship between the two laboratory-scale columns and a pilot-scale column (5000 mL) were investigated. Recovery, enrichment, and performance factor values were experimentally determined with three different column volumes with varying pore sizes, gas superficial velocities, and, in the case of the 750 mL column, foam column height. As the pore size decreased, the amount of protein recovered from the dilute protein solution increased and the enrichment decreased. As the flow rate of the gas increased, the effect of the pore size decreased. For the three column volumes, the optimal column conditions were achieved with the largest pore size (145-174 µ m) and an intermediate superficial gas velocity (7 mm/s). Increasing the foam column height increased the enrichment without sacrificing the recovery of the target protein. In the case of the largest pore size, the linear relationships between the recovery and the ratio of gas volume to initial liquid volume are parallel, such that the recovery in a pilot-scale column (5000 mL) can be predicted with the recovery found with a laboratory-scale column (750 or 1250 mL)
机译:泡沫分离是一种吸附-气泡分离方法,据研究人员称,这是分离和/或浓缩蛋白质的可行技术。研究了实验室规模的泡沫分离柱(750和1250 mL)中牛血清白蛋白(BSA)的泡沫分离以及两个实验室规模的柱与中试规模的色谱柱(5000 mL)之间的关系。回收率,富集度和性能因子值是通过三种不同的色谱柱体积实验确定的,这些色谱柱体积具有不同的孔径,气体表观速度,而对于750 mL色谱柱,则为泡沫色谱柱高度。随着孔径的减小,从稀蛋白质溶液中回收的蛋白质量增加,而富集度降低。随着气体流速的增加,孔径的影响减小。对于三种色谱柱体积,均以最大孔径(145-174 µm)和中等表观气体流速(7 mm / s)实现了最佳色谱柱条件。增加泡沫柱高度可增加富集度,而不会牺牲目标蛋白质的回收率。在最大孔径的情况下,回收率与气体体积与初始液体体积之比之间的线性关系是平行的,因此可以预测中试规模色谱柱(5000 mL)的回收率与实验室规模的色谱柱(750或1250 mL)

著录项

  • 来源
    《Transactions of the ASABE》 |2003年第6期|p.1759-1764|共6页
  • 作者

    C. Crofcheck; K. Gillette;

  • 作者单位

    Czarena Crofcheck, ASAE Member Engineer, Assistant Professor, Department of Biological and Agricultural Engineering, University of Kentucky, Lexington, Kentucky;

    and Kelly Gillette, Research Analyst, University of Kentucky (formerly), Lexington, Kentucky. Corresponding author: Czarena Crofcheck, 212 C. E. Barnhart Building, Lexington, KY 40515-0276;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Downstream processing; Foam fractionation; Protein recovery; Scale-up;

    机译:下游处理;泡沫分馏;蛋白质回收;放大;

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