Increasing the Efficiency of Emulsion Crystallization in Stirred Vessels by Targeted Application of Shear and Surfactant

IF 3.2 Q3 CHEMISTRY, PHYSICAL Colloids and Interfaces Pub Date : 2023-11-30 DOI:10.3390/colloids7040068
G. Kaysan, Linda Elmlinger, Matthias Kind
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Abstract

Emulsions containing crystalline dispersed phases hold significant importance in pharmaceutical, chemical, and life science industries. The industrial agitation and storage of these emulsions can prompt crystallization effects within the flow field, intersecting with the primary nucleation mechanisms. Notably, contact-mediated nucleation, in which subcooled droplets crystallize upon contact with a crystalline particle, and shear-induced crystallization due to droplet deformation, are both conceivable phenomena. This study delves into the crystallization processes of emulsions in a 1 L stirred vessel, integrating an ultrasonic probe to monitor droplet crystallization progression. By scrutinizing the influence of the flow field and of the emulsifiers stabilizing the droplets, our investigation unveils the direct impact of enhanced rotational speed on accelerating the crystallization rate, correlating with increased energy input. Furthermore, the concentration of emulsifiers is observed to positively affect the crystallization process. Significantly, this pioneering investigation marks the first evaluation of emulsion crystallization considering the overlapping nucleation mechanisms seen in industrial production of melt emulsions. The findings offer valuable insights for more systematic control strategies in emulsion crystallization processes, promising more efficient and sustainable industrial practices by enabling targeted application of shear and surfactants.
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通过有针对性地应用剪切力和表面活性剂提高搅拌容器中乳液的结晶效率
含有结晶分散相的乳液在制药、化工和生命科学行业具有重要意义。这些乳液的工业搅拌和储存会在流场中产生结晶效应,并与主要的成核机制产生交集。值得注意的是,接触介导的成核(即过冷液滴与结晶颗粒接触后结晶)和液滴变形导致的剪切诱导结晶都是可以想象的现象。本研究深入探讨了乳液在 1 升搅拌容器中的结晶过程,并整合了超声波探头来监测液滴的结晶进程。通过仔细研究流场和稳定液滴的乳化剂的影响,我们的研究揭示了提高转速对加快结晶速度的直接影响,这与增加能量输入有关。此外,乳化剂的浓度对结晶过程也有积极影响。值得注意的是,这项开创性的研究首次对乳液结晶进行了评估,考虑到了熔融乳液工业生产中出现的重叠成核机制。研究结果为乳液结晶过程中更系统的控制策略提供了宝贵的见解,通过有针对性地应用剪切力和表面活性剂,有望实现更高效和可持续的工业实践。
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来源期刊
Colloids and Interfaces
Colloids and Interfaces CHEMISTRY, PHYSICAL-
CiteScore
3.90
自引率
4.20%
发文量
64
审稿时长
10 weeks
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