Process Analytical Technology for Pharmaceutical Freeze-Drying
eBook - ePub

Process Analytical Technology for Pharmaceutical Freeze-Drying

  1. 459 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Process Analytical Technology for Pharmaceutical Freeze-Drying

About this book

Comprehensive insights into process analytical technology for pharmaceutical freeze-drying

Process Analytical Technology for Pharmaceutical Freeze-Drying provides a comprehensive and forward-looking overview of monitoring and control strategies for one of the pharmaceutical industry's most technically demanding manufacturing processes. Combining scientific fundamentals with industrial case studies, the book examines both established and emerging technologies used to improve process understanding, optimise cycle design, and ensure consistent product quality.

Coverage includes the measurement and interpretation of critical process variables such as temperature and pressure, wireless sensing technologies, pressure-rise methods (MTM, PRA, DPE), tunable diode laser absorption spectroscopy (TDLAS), near-infrared (NIR) and Raman spectroscopy, infrared thermal imaging, and advanced data analysis approaches. Dedicated chapters also explore through-vial impedance spectroscopy (TVIS) as a non-invasive technology for real-time monitoring of product temperature, ice mass, sublimation behaviour, and phase transitions.

The book further discusses innovations in continuous and alternative freeze-drying platforms, controlled nucleation technologies, multiplexed PAT systems, and the growing role of artificial intelligence and model-based control strategies in pharmaceutical manufacturing.

Sample topics explored in Process Analytical Technology for Pharmaceutical Freeze-Drying include:

  • Temperature and pressure measurement technologies and their application to freeze-drying process monitoring and control
  • Wireless sensing approaches for real-time monitoring of pharmaceutical freeze-drying
  • Pressure-rise and sublimation-flow methods for determination of product temperature, sublimation rate, and heat and mass transfer parameters
  • Spectroscopic, impedance-based, and thermal imaging techniques for advanced process analysis and optimisation
  • Emerging freeze-drying technologies, continuous manufacturing approaches, and AI-enabled process control strategies

Process Analytical Technology for Pharmaceutical Freeze-Drying is an essential resource for scientists and engineers involved in pharmaceutical freeze-drying, PAT implementation, formulation development, process optimisation, and manufacturing scale-up.

Information

Publisher
Wiley-VCH
Year
2026
Print ISBN
9783527354658
Edition
1
eBook ISBN
9783527850280

Table of contents

  1. Cover
  2. Table of Contents
  3. Title Page
  4. Copyright
  5. Preface
  6. 1 Freeze‐Drying of Parenteral Drug Products and Vaccines
  7. 2 Standard PAT Instrumentation: Temperature Sensors
  8. 3 Standard PAT Instrumentation: Pressure Gauges and Vapor Pressure Sensors
  9. 4 Wireless Sensor Networks for Lyophilization
  10. 5 Monitoring Methods Based on the Measure of the Sublimation Flow: Pressure Rise Test and Other Direct Technologies
  11. 6 Spectroscopic‐Based PAT in Freeze‐Drying
  12. 7 An Introduction to Through‐Vial Impedance Spectroscopy (TVIS)
  13. 8 An Application for Through‐Vial Impedance Spectroscopy (TVIS) in Modeling of the Ice Sublimation Process
  14. 9 Multiplexing PAT for Qualitative Ice Sublimation Monitoring in Primary Drying
  15. 10 Freeze‐Drying Monitoring and Control Using Thermal Imaging
  16. 11 Emerging Technologies in Pharmaceutical Freeze‐Drying
  17. 12 Innovations in Control of Freezing in Pharmaceutical Processes
  18. Index
  19. End User License Agreement

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Yes, you can access Process Analytical Technology for Pharmaceutical Freeze-Drying by Geoff Smith,Davide Fissore in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Pharmacology. We have over 1.5 million books available in our catalogue for you to explore.