Suppr超能文献

普朗尼克F68对氧传质的影响。

Influence of pluronic F68 on oxygen mass transfer.

作者信息

Sieblist Christian, Jenzsch Marco, Pohlscheidt Michael

机构信息

Pharmaceutical Biotech Production, Roche Diagnostics GmbH, Penzberg, Germany.

出版信息

Biotechnol Prog. 2013 Sep-Oct;29(5):1278-88. doi: 10.1002/btpr.1770. Epub 2013 Jul 11.

Abstract

Pluronic F68 is one of the most used shear protecting additives in cell culture cultivations. It is well known from literature that such surface-active surfactants lower the surface tension at the gas-liquid interface, which influences the mass transfer. In this study, the effect of Pluronic F68 on oxygen mass transfer in aqueous solutions was examined. Therefore, the gassing in/gassing out method and bubble size measurements were used. At low concentrations of 0.02 g/L, a 50% reduction on mass transfer was observed for all tested spargers and working conditions. An explanation of the observed effects by means of Higbie's penetration or Dankwerts surface renewal theory was applied. It could be demonstrated that the suppressed movement of the bubble surface layer is the main cause for the significant drop down of the kL a-values. For Pluronic F68 concentrations above 0.1 g/L, it was observed that it comes to changes in bubble appearance and bubble size strongly dependent on the sparger type. By using the bubble size measurement data, it could be shown that only small changes in mass transfer coefficient (kL ) take place above the critical micelle concentration. Further changes on overall mass transfer at higher Pluronic F68 concentrations are mainly based on increasing of gas holdup and, more importantly, by increasing of the surface area available for mass transfer.

摘要

普朗尼克F68是细胞培养中最常用的剪切保护添加剂之一。从文献中可知,这类表面活性表面活性剂会降低气液界面的表面张力,从而影响传质。在本研究中,考察了普朗尼克F68对水溶液中氧气传质的影响。因此,采用了进气/出气法和气泡尺寸测量方法。在0.02 g/L的低浓度下,对于所有测试的曝气器和工作条件,传质均降低了50%。运用希格比渗透理论或丹克沃茨表面更新理论对观察到的效应进行了解释。结果表明,气泡表面层运动的抑制是kL a值显著下降的主要原因。对于浓度高于0.1 g/L的普朗尼克F68,观察到气泡外观和气泡尺寸发生变化,且强烈依赖于曝气器类型。通过使用气泡尺寸测量数据可以表明,在临界胶束浓度以上,传质系数(kL )仅发生微小变化。在较高普朗尼克F68浓度下,总传质的进一步变化主要基于气体滞留率的增加,更重要的是基于传质可用表面积的增加。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验