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The effect of seeding on the phase separation phenomenon in a solidifying molten drop

机译:晶种对凝固熔滴中相分离现象的影响

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Considered as being one of the building blocks of the purification schemes used in industrial applications, melt crystallization is an accurate, energy saving, and a reproducible approach to the purification of materials. The separation between two mixed materials, lutrol and ibuprofen, is achievable here through tightly optimizing the highly versatile crystallization conditions. The so called, phase separation, is the end result of a melt crystallization process and its applicability on the molten drop scale is further discussed in detail. Analysis in the form of light microscopy and ultra-violet spectrometry are also introduced to quantify the final phase separation in the drops and to compare the results. The advantage of using lutrol seeding to control the separation within the molten drops is demonstrated through producing successful phase separation at the drop scale. Together with changing the cooling temperatures, seeding is also proven a successful method to produce a better phase separation and hence lower levels of impurities in the outer layer. Crystallizing the molten drops on lutrol or starch coated surfaces also enhances the quality of the phase separation by a different method, but significantly since it alters the final solidified drops geometry along with changing the cooling conditions. Finding an explanation to the different separation qualities founded on a theoretical basis for a full understanding of the process and giving the basis of a possible future optimization. (C) 2014 The Society of Powder Technology Japan. Published by Elsevier B. V. and The Society of Powder Technology Japan. All rights reserved.
机译:熔融结晶被认为是工业应用中提纯方案的组成部分之一,是一种准确,节能且可重现的材料提纯方法。通过严格优化高度通用的结晶条件,可以实现两种混合物的分离:鲁特罗和布洛芬。所谓的相分离是熔体结晶过程的最终结果,将进一步详细讨论其在熔滴尺度上的适用性。还引入了光学显微镜和紫外分光光度法形式的分析,以量化液滴中的最终相分离并比较结果。通过在滴液规模上成功地进行相分离,证明了使用lutrol晶种控制熔融液滴内分离的优势。与改变冷却温度一起,晶种也被证明是一种成功的方法,可以产生更好的相分离,从而降低外层中的杂质含量。通过不同的方法使在卢甾醇或淀粉涂覆的表面上的熔融液滴结晶也可以提高相分离的质量,但由于改变了最终固化的液滴的几何形状以及改变了冷却条件,因此显着提高了相分离的质量。在理论基础上找到对不同分离质量的解释,以充分理解该过程,并为将来可能的优化奠定基础。 (C)2014日本粉末技术学会。由Elsevier B. V.和日本粉末技术学会出版。版权所有。

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