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The purification of protein in cross-flow microfiltration of microbe/protein mixtures

机译:微生物/蛋白质混合物错流微滤中蛋白质的纯化

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摘要

The use of cross-flow microfiltration to purify BSA from yeast/BSA binary suspension is studied.The yeast cake properties,the BSA rejection coefficient and the filtration flux under various operating conditions,such as cross-flow velocity,filtration pressure and suspension pH value,are measured and discussed.The experimental results show that the filter cake plays the major role in determining the filtration resistance,the filtration flux as well as the BSA rejection.The filtration rate increases with the increase of cross-flow velocity,while decreases with the increase of filtration pressure or suspension pH.The BSA rejection coefficient is mainly determined by the sweeping effect on the cake surface and the cake mass.An increase in cross-flow velocity,filtration pressure or suspension pH,causes the BSA rejection coefficient to be higher.Theoretical models are derived to predict the filtration flux and the BSA rejection coefficient at the pseudo-steady state under various conditions.The calculated results agree fairly well with experimental data.On the viewpoint of protein recovery and protein purification flux,pH 3.0,high cross-flow velocity and low filtration pressure is the optimum operating condition for purification of BSA from the binary suspension using cross-flow microfiltration
机译:研究了错流微滤技术从酵母/ BSA二元悬浮液中纯化BSA的过程。错流速度,过滤压力和悬浮液pH值等不同工况下的酵母饼性质,BSA截留系数和过滤通量实验结果表明,滤饼在决定过滤阻力,过滤通量和BSA截留率方面起着主要作用。过滤速率随着错流速度的增加而增加,而随错流速度的增加而降低。 BSA截留系数主要取决于滤饼表面和滤饼质量的扫除效果。错流速度,过滤压力或悬浮液pH的增加导致BSA截留系数为推导了理论模型来预测在各种条件下拟稳态下的过滤通量和BSA截留系数。从蛋白质回收率和蛋白质纯化通量的角度来看,pH 3.0,高错流速度和低过滤压力是利用错流从二元悬浮液中纯化BSA的最佳操作条件。微滤

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