ShopSpell

Foam Fractionation: Principles and Process Design [Paperback]

$146.99       ($100.00 Shipping)
62 available
  • Category: Books (Technology & Engineering)
  • Author:  Stevenson, Paul, Li, Xueliang
  • Author:  Stevenson, Paul, Li, Xueliang
  • ISBN-10:  1138074284
  • ISBN-10:  1138074284
  • ISBN-13:  9781138074286
  • ISBN-13:  9781138074286
  • Publisher:  CRC Press
  • Publisher:  CRC Press
  • Pages:  206
  • Pages:  206
  • Binding:  Paperback
  • Binding:  Paperback
  • SKU:  1138074284-11-MPOD
  • SKU:  1138074284-11-MPOD
  • Item ID: 106932118
  • Seller: ShopSpell
  • Ships in: 2 business days
  • Transit time: Up to 4 business days
  • Delivery by: Sep 28 to Sep 30

Foam fractionation is a separation process in which proteins and other amphipathic species adsorb to the surface of bubbles. The bubbles are then removed from the solution in the form of foam at the top of a column. Due to its cost-effectiveness, foam fractionation has the potential for rapid commercial growth, especially in biotechnology.

To assist in the widespread adoption of this highly affordable yet powerful process, Foam Fractionation: Principles and Process Design:

  • Provides a systematic explanation of the underlying physics of foam fractionation
  • Discusses the fundamentals of molecular adsorption to gas liquid interfaces and the dynamics of foam
  • Describes foam fractionation process intensification strategies
  • Supplies design guidance for plant-scale installations
  • Contains the latest knowledge of foam fractionation transport processes
  • Presents a case study of the worlds largest commercial foam fractionation plant producing the food preservative Nisin

Foam Fractionation: Principles and Process Design capitalizes on the authors extensive practical experience of foam fractionation and allied processes to give process engineers, industrial designers, chemical engineers, academics, and graduate students alike a greater understanding of the mechanistic basis and real-world applications of foam fractionation.

Introduction. Adsorption of Surface Active Species to Gas-Liquid Interfaces. Hydrodynamics of Pneumatic Foam. Mechanisms of Foam Instability. Hydrodynamics of Bubble Swarms. Modes of Operation. Bubble Production and Foamate Recovery. Column and Process Design. Process Intensification. Case Study: The Production of Nisin.

This book explains the underlying physics of foam fractionation, dl3+

Add Review