Industrial mixing processes present multiple optimization challenges to producing desirable products. This book shares the authors extensive knowledge of mixing research and industrial practice. It features twenty industrial mixing chapters that are purposely light on mixing fundamentals, while heavy on practical mixing applications.
0. Front Matter. 1. Mixing Process and Working Media. 2. Mixing Terminology. 3. Industrial Mixing Systems. 4. Stirred Tank Reactors. 5. Hydrodynamics. 6. Blending of Miscible Liquids. 7. Solid-Liquid Mixing/Dispersions. 8. Immiscible Liquid-Liquid Mixing/Dispersion. 9. Gas-Liquid Contactors. 10. Fermenters. 11. Jet Mixing Systems. 12. Inline Motionless Mixers. 13. In-Line Dynamic Mixers.14. High-Viscosity Media Mixing. 15. Emerging and Unconventional Mixing Technologies. 16. Numerical Methods in Fluid Mixing. 17. Heat Transfer. 18. Experimental Techniques in Mixing. 19. Mechanical Design. 20. Technology Implementation and Cost Analysis. Appendix A1. E-book User-Interface for Working Examples. Appendix A2. Unit Conversions and Equivalents. Appendix A3. Image Reproduction Permissions.
Industrial mixing processes often present multiple optimization challenges to producing desirable products. The resulting processes must be cost effective, first-time right, and frequently, the designated most-effective technology for the global manufacture of specific products. Mixing Process Technology: A Guide to Industrial Applications shares the authors extensive knowledge of mixing research and industrial practice. It features 20 industrial mixing chapters that are purposely light on mixing fundamentals, while heavy on practical mixing applications for practical process design and manufacturing. This text serves as an applied guide to industrial mixing for practitioners who want brief explanations of mixing concepts with real-life examples and software to help performl3%