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  1. In industrial process engineering, mixing is a unit operation that involves manipulation of a heterogeneous physical system with the intent to make it more homogeneous. Familiar examples include pumping of the water in a swimming pool to homogenize the water temperature, and the stirring of pancake batter to eliminate lumps (deagglomeration).

  2. Learn about mixing processes in materials science, chemical engineering and industrial tomography. Find chapters and articles on mixing phenomena, methods and techniques in various fields and industries.

  3. This article introduces the basics of mixing technology. It defines the process of mixing and blending, and explains its importance in Industrial applications. The different types of mixing equipment for solid-solid mixing, liquid-liquid mixing, and viscous mixing are discussed.

  4. A comprehensive book on mixing operations, covering fundamentals, equipment, applications, and case studies. Learn about mixing mechanisms, models, methods, and challenges in various industries and processes.

  5. Having the right mixer in your tank will make all the difference when it comes to optimizing efficiency in your process. Use this guide as a checklist to look for other common issues like corrosion, staining, and agitator damage to ensure your equipment is operating properly.

  6. Jun 9, 2021 · Scale-up (and scale-down) of mixing processes is an important part of ensuring successful full-scale mixing applications. There is no single way to determine how well a process will scale, so your experiments must combine experience, CFD modeling and understanding the application and fluid dynamics.

  7. The range of mixers available for such diverse duties is dealt with, including tumbler mixers for powders, mechanically agitated vessels, in-line continuous mixers and jet mixers. Coverage is given of the range of mixing objectives, varying from achieving product uniformity to obtaining optimum conditions for mass transfer and chemical reactions.