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Simulated Moving Bed Technology: Principles, Design and Process Applications

Autor Alirio Rodrigues
en Limba Engleză Hardback – 3 iun 2015
Simulated Moving Bed Technology is one of only a few books solely dedicated to SMB. It aims to equip you with the tools and skills needed for SMB modelling, simulation, design and operation. The theory presented is supported by real-world examples from the petrochemical, sugar and pharma industries.The core of the book focuses on SMB process development and model validation. It explains basic process concepts and definitions, fundamental principles and equations, as well as typical applications and recent advances made to address challenges. Its specialist content makes it a must have book for people working with SMB technology, chemical engineering post-graduate students and process and R&D engineers in industry.

  • Will provide you with the tools and predictive approaches for use in SMB design and performance assessment
  • Covers SMB modelling, simulation, design and operation as applied to separation and reaction processes
  • Discusses process intensification through coupling SMB and reaction in SMBR, membrane permeation and SMBR in PermSMBR and introduces the design of SCPC
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Specificații

ISBN-13: 9780128020241
ISBN-10: 0128020245
Pagini: 304
Ilustrații: black & white illustrations
Dimensiuni: 191 x 235 x 18 mm
Greutate: 0.74 kg
Editura: ELSEVIER SCIENCE

Public țintă

Process and R&D engineers in industry (chemical, refining and petrochemistry, sugar and pharma/bio). Chemical Engineering postgraduates.

Cuprins

1. Principles of Simulated Moving Bed (SMB)2. Modeling and simulation of SMB separation processes3. Design of SMB for binary or pseudo-binary separations4. Process development for liquid phase SMB separations: methodology and applications5. The Parex process for the separation of p-xylene6. Multicomponent Separations by SMB-based processes7. Gas phase SMB for olefins paraffins separation8. Simulated Moving Bed Reactor (SMBR)9. Process Re-intensification: PermSMBR10. Sequential Centrifugal Partition Chromatography (sCPC)11. Conclusions and perspectives