Design and characterization of Kenics static mixer crystallizers.
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| Title: | Design and characterization of Kenics static mixer crystallizers. |
|---|---|
| Authors: | Mathew Thomas, Kiran1 (AUTHOR), Nyande, Baggie W.1 (AUTHOR), Lakerveld, Richard1 (AUTHOR) r.lakerveld@ust.hk |
| Source: | Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A. Mar2022, Vol. 179, p549-563. 15p. |
| Subjects: | Supersaturation, Pressure drop (Fluid dynamics), Three-dimensional printing, Lysozymes, Crystallization, Crystals |
| Abstract: | [Display omitted] • Static mixers can approximate plug-flow behavior for continuous crystallizers. • Gapped Kenics and standard Kenics static mixer crystallizers are tested. • Numerical and experimental characterization of the static mixer crystallizers. • 3D printing for the fabrication of customized tubular crystallizers. • Gapped Kenics mixer leads to lower pressure drop and less segregation of crystals. Tubular crystallizers are desirable for continuous operations because they can approach plug flow conditions, achieve higher throughputs, and can be easy to control. However, the possible limitations of tubular crystallizers may include settling of crystals, fouling and higher pressure drops at longer residence times. The performance of a tubular crystallizer with gaps between the Kenics type mixing elements is characterized and compared with a standard Kenics static mixer and a hollow tubular crystallizer for the crystallization of lysozyme from solution. The gapped Kenics static mixer crystallizer provides an attractive trade-off between the standard Kenics static mixer and the hollow tubular crystallizer in terms of mixing length, shear rate, residence time distribution, pressure drop and segregation or settling of crystals. Furthermore, the gapped Kenics static mixer crystallizer and the standard Kenics static mixer crystallizer exhibit a similar crystallization performance in terms of desupersaturation profile and mean crystal size at the outlet for different initial lysozyme concentrations and seed loadings. The advantages of the gapped Kenics static mixer crystallizer in terms of pressure drop and minimization of crystal settling allow for lower flow rates and longer residence times under plug flow conditions, which has important practical benefits for continuous crystallization. [ABSTRACT FROM AUTHOR] |
| Copyright of Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A is the property of Elsevier B.V. and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.) | |
| Database: | Engineering Source |
| FullText | Links: – Type: pdflink Text: Availability: 0 |
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| Header | DbId: egs DbLabel: Engineering Source An: 155400502 AccessLevel: 6 PubType: Academic Journal PubTypeId: academicJournal PreciseRelevancyScore: 0 |
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| Items | – Name: Title Label: Title Group: Ti Data: Design and characterization of Kenics static mixer crystallizers. – Name: Author Label: Authors Group: Au Data: <searchLink fieldCode="AR" term="%22Mathew+Thomas%2C+Kiran%22">Mathew Thomas, Kiran</searchLink><relatesTo>1</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Nyande%2C+Baggie+W%2E%22">Nyande, Baggie W.</searchLink><relatesTo>1</relatesTo> (AUTHOR)<br /><searchLink fieldCode="AR" term="%22Lakerveld%2C+Richard%22">Lakerveld, Richard</searchLink><relatesTo>1</relatesTo> (AUTHOR)<i> r.lakerveld@ust.hk</i> – Name: TitleSource Label: Source Group: Src Data: <searchLink fieldCode="JN" term="%22Chemical+Engineering+Research+%26+Design%3A+Transactions+of+the+Institution+of+Chemical+Engineers+Part+A%22">Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A</searchLink>. Mar2022, Vol. 179, p549-563. 15p. – Name: Subject Label: Subjects Group: Su Data: <searchLink fieldCode="DE" term="%22Supersaturation%22">Supersaturation</searchLink><br /><searchLink fieldCode="DE" term="%22Pressure+drop+%28Fluid+dynamics%29%22">Pressure drop (Fluid dynamics)</searchLink><br /><searchLink fieldCode="DE" term="%22Three-dimensional+printing%22">Three-dimensional printing</searchLink><br /><searchLink fieldCode="DE" term="%22Lysozymes%22">Lysozymes</searchLink><br /><searchLink fieldCode="DE" term="%22Crystallization%22">Crystallization</searchLink><br /><searchLink fieldCode="DE" term="%22Crystals%22">Crystals</searchLink> – Name: Abstract Label: Abstract Group: Ab Data: [Display omitted] • Static mixers can approximate plug-flow behavior for continuous crystallizers. • Gapped Kenics and standard Kenics static mixer crystallizers are tested. • Numerical and experimental characterization of the static mixer crystallizers. • 3D printing for the fabrication of customized tubular crystallizers. • Gapped Kenics mixer leads to lower pressure drop and less segregation of crystals. Tubular crystallizers are desirable for continuous operations because they can approach plug flow conditions, achieve higher throughputs, and can be easy to control. However, the possible limitations of tubular crystallizers may include settling of crystals, fouling and higher pressure drops at longer residence times. The performance of a tubular crystallizer with gaps between the Kenics type mixing elements is characterized and compared with a standard Kenics static mixer and a hollow tubular crystallizer for the crystallization of lysozyme from solution. The gapped Kenics static mixer crystallizer provides an attractive trade-off between the standard Kenics static mixer and the hollow tubular crystallizer in terms of mixing length, shear rate, residence time distribution, pressure drop and segregation or settling of crystals. Furthermore, the gapped Kenics static mixer crystallizer and the standard Kenics static mixer crystallizer exhibit a similar crystallization performance in terms of desupersaturation profile and mean crystal size at the outlet for different initial lysozyme concentrations and seed loadings. The advantages of the gapped Kenics static mixer crystallizer in terms of pressure drop and minimization of crystal settling allow for lower flow rates and longer residence times under plug flow conditions, which has important practical benefits for continuous crystallization. [ABSTRACT FROM AUTHOR] – Name: AbstractSuppliedCopyright Label: Group: Ab Data: <i>Copyright of Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A is the property of Elsevier B.V. and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract.</i> (Copyright applies to all Abstracts.) |
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| RecordInfo | BibRecord: BibEntity: Identifiers: – Type: doi Value: 10.1016/j.cherd.2022.01.025 Languages: – Code: eng Text: English PhysicalDescription: Pagination: PageCount: 15 StartPage: 549 Subjects: – SubjectFull: Supersaturation Type: general – SubjectFull: Pressure drop (Fluid dynamics) Type: general – SubjectFull: Three-dimensional printing Type: general – SubjectFull: Lysozymes Type: general – SubjectFull: Crystallization Type: general – SubjectFull: Crystals Type: general Titles: – TitleFull: Design and characterization of Kenics static mixer crystallizers. Type: main BibRelationships: HasContributorRelationships: – PersonEntity: Name: NameFull: Mathew Thomas, Kiran – PersonEntity: Name: NameFull: Nyande, Baggie W. – PersonEntity: Name: NameFull: Lakerveld, Richard IsPartOfRelationships: – BibEntity: Dates: – D: 01 M: 03 Text: Mar2022 Type: published Y: 2022 Identifiers: – Type: issn-print Value: 02638762 Numbering: – Type: volume Value: 179 Titles: – TitleFull: Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A Type: main |
| ResultId | 1 |