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首页> 外文期刊>Chemical Engineering Science >Measurement of maximum stable drop size in aerated dilute liquid-liquid dispersions in stirred tanks
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Measurement of maximum stable drop size in aerated dilute liquid-liquid dispersions in stirred tanks

机译:测量搅拌罐中充气稀液-液分散体的最大稳定液滴尺寸

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摘要

Turbulence intensity, or hydromechanical stress, is a controlling parameter in many industrially relevant processes. Especially fermentation processes are often characterized by intense aeration and agitation, operating conditions for which the measurement of turbulence intensity is extremely difficult. Since the maximum stable drop diameter in a break-up controlled dispersion is directly correlated with turbulence intensity, the measurement of drop sizes can enable an indirect access to the intensity of turbulence under such operating conditions. This work presents the constraints and the development of a method for the measurement of maximum stable drop size in aerated liquid-liquid dispersions in stirred tanks for the purpose of characterizing turbulence intensity. Continuous and dispersed phase properties were selected to achieve a break-up controlled dispersion with negligible coalescence. This was accomplished mainly by applying a dilute dispersion, a low ionic strength and by incorporating a dispersed phase, paraffin oil, with a negative spreading coefficient. The negative spreading coefficient prevents coalescence due to drop-bubble interactions for aerated operating conditions. It was demonstrated that the off-line measured drop size distributions are representative for the conditions in the bioreactor and are not altered by sample handling. The sampling and measurement procedure was found to be highly reproducible with a standard deviation for the maximum stable drop size for independent experiments of approximately 10%. Relevant constraints for the application of the method in large-scale experiments were discussed and accounted for during method development to allow a later application in production scale equipment.
机译:湍流强度或流体力学应力是许多工业相关过程中的控制参数。特别地,发酵过程通常以强烈的通气和搅拌为特征,这对于测量湍流强度非常困难。由于在分裂控制的分散体中最大稳定液滴直径直接与湍流强度相关,因此液滴尺寸的测量可以在这种操作条件下间接获得湍流强度。这项工作提出了限制条件,并开发了一种用于测量搅拌槽中充气气液分散体中最大稳定液滴尺寸的方法,以表征湍流强度。选择连续相和分散相的性能,以实现分解控制的分散,并产生可忽略的聚结。这主要是通过施加稀分散液,低离子强度和掺入具有负扩散系数的分散相石蜡油来实现的。负扩展系数可防止在充气工况下由于液滴-气泡相互作用而聚结。已证明离线测量的液滴尺寸分布代表生物反应器中的条件,并且不会因样品处理而改变。发现采样和测量程序可高度重现,独立实验的最大稳定液滴尺寸的标准偏差约为10%。讨论了在大规模实验中应用该方法的相关限制,并在方法开发过程中加以考虑,以允许以后在生产规模的设备中应用。

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