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首页> 外文期刊>Chemical Engineering Science >PAT-based design of agrochemical co-crystallization processes: A case-study for the selective crystallization of 1:1 and 3:2 co-crystals of p-toluenesulfonamideitriphenylphosphine oxide
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PAT-based design of agrochemical co-crystallization processes: A case-study for the selective crystallization of 1:1 and 3:2 co-crystals of p-toluenesulfonamideitriphenylphosphine oxide

机译:基于PAT的农药化学共结晶过程设计:对甲苯磺酰胺三苯基氧化膦的1:1和3:2选择性结晶的案例研究

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In this study, the selective crystallization and characterization of the stoichiometric forms of the p-to-luenesulfonamide/triphenylphosphine oxide (p-TSA-TPPO) co-crystal system in acetonitrile (MeCN) is demonstrated using batch and semi-batch crystallizers. In the batch study, both 1:1 and 3:2 p-TSA-TPPO were successfully isolated as pure forms. However, process variability was observed in a few experimental runs. To address the batch process variability issue, a control strategy was implemented using temperature cycling, aided by in situ process analytical technologies (PAT) to convert from 3:2 to 1:1 p-TSA-TPPO. In the semi-batch co-crystallization studies, the two molecular co-formers, p-TSA and TPPO, were dissolved in MeCN and pumped separately to the crystallizer. Changing the flow rates of the respective active ingredients allowed control over the co-crystallization outcome, and presents as a promising opportunity for development of a continuous co-crystallization process. (C) 2016 Published by Elsevier Ltd.
机译:在这项研究中,使用分批和半分批结晶器证明了对-甲苯磺酰胺/三苯膦氧化物(p-TSA-TPPO)共结晶体系在乙腈(MeCN)中的选择性结晶和表征。在批处理研究中,成功​​地以纯形式分离了1:1和3:2 p-TSA-TPPO。但是,在一些实验运行中观察到了过程可变性。为了解决批处理过程的可变性问题,使用温度循环实施了控制策略,并借助原位过程分析技术(PAT)将p-TSA-TPPO从3:2转换为1:1。在半间歇共结晶研究中,将两种分子共形成物p-TSA和TPPO溶解在MeCN中,并分别泵送到结晶器中。改变各个活性成分的流速允许控制共结晶的结果,并且为发展连续的共结晶过程提供了有希望的机会。 (C)2016由Elsevier Ltd.出版

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