2021
DOI: 10.1021/acs.cgd.1c00301
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Continuous In Situ Seed Generation through the Integration of a Mixed Suspension Mixed Product Removal and an Oscillatory Baffled Crystallizer for the Control of Crystal Size Distribution and Polymorphic Form

Abstract: Fouling, encrustation, and lack of polymorphic form control are some of the major drawbacks of continuous oscillatory baffled crystallizers (COBCs), which can lead to clogging, undesired crystal form generation, and process failure. To counter these drawbacks, seeding with crystals is a methodology to not only control nucleation mechanism and crystal size distribution (CSD) but also provide polymorphic form control. Consistent manual preparation of seeds for continuous crystallization is labor-intensive and of… Show more

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Cited by 6 publications
(5 citation statements)
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References 41 publications
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“…Photograph (right) and schematic diagram (left) of the experimental setup developed by Wu and colleagues. Reproduced from ref . Copyright 2021 American Chemical Society.…”
Section: Traditional Methods For Preparation and Regulation Of Drug P...mentioning
confidence: 99%
See 3 more Smart Citations
“…Photograph (right) and schematic diagram (left) of the experimental setup developed by Wu and colleagues. Reproduced from ref . Copyright 2021 American Chemical Society.…”
Section: Traditional Methods For Preparation and Regulation Of Drug P...mentioning
confidence: 99%
“…Recently, the concept of continuous in situ seed generation was proposed and executed by Wu and colleagues. 34 The experimental setup is illustrated in Figure 9. The selective crystallization of o-aminobenzoic acid polymorphs in the integration of a mixed suspension mixed product removal and an oscillatory baffled crystallizer showed the tremendous potential of continuous in situ seed generation in polymorph control.…”
Section: Traditional Methods For Preparation and Regulation Of Drug P...mentioning
confidence: 99%
See 2 more Smart Citations
“…This process begins with the reaction of ( S )-Aminosulfone and 3-Acetamidophthalic Anhydride (3-AA) in a plug flow reactor (PFR) to yield Apremilast in crude solution. The crude reaction solution is then collected in a surge tank prior to direct antisolvent crystallization of Apremilast executed using a series of continuous mixed-suspension mixed-product-removal (MSMPR) vessels. Finally, semicontinuous isolation is achieved via the application of a dual centrifuge configuration in which the slurry is continuously fed and filtered, and then the isolated Apremilast cake is washed, spun down, and discharged in discrete batches.…”
Section: Approach To Process Characterizationmentioning
confidence: 99%