Difference between revisions of "High Pressure Homogenizers"

From SolidsWiki
Jump to navigation Jump to search
m
Line 1: Line 1:
[[File:Genizer.png|right|link=https://www.genizer.com/c/high-pressure-homogenizer_0360|Genizer LLC]
[[Category:Mixing]]{{Knoppen}}
[[Category:Mixing]]{{Knoppen}}
<noinclude><!------------------------------------------------
 
* READ THIS FIRST
* Only edit this page if you can improve the content.
* Improper use of this page will lead to permanent banning.
* Please do not edit the sponsored link on the top right corner.
* Please start editing this page after the /noinclude
* -------------------------------------------------></noinclude>


[[File:High Pressure Homogenizers_1.jpg|thumb|200px|right|High Pressure Homogenizers]]
[[File:High Pressure Homogenizers_1.jpg|thumb|200px|right|High Pressure Homogenizers]]

Revision as of 08:33, 14 February 2022

[[File:Genizer.png|right|link=https://www.genizer.com/c/high-pressure-homogenizer_0360%7CGenizer LLC]


File:High Pressure Homogenizers 1.jpg
High Pressure Homogenizers
High Pressure Homogenizers Diagram


High Pressure Homogenizers are used for homogenization of compounds that require high pressure for the processes. High Pressure Homogenizers are often the solution particularly useful in the pharmaceutical and biotech industries.


Processes

Homogenization is a fluid mechanical process that involves the subdivision of particles or droplets into micron sizes to create a stable dispersion or emulsion for further processing.

This is an important stage in the treatment of food and dairy products. It provides improved product stability, shelf life, digestion, and taste. Homogenizing can also significantly reduce the amount of additives required. It prepares feeds so that subsequent spray drying produces the best quality of powders. This is especially important for baby foods and many dairy and food products.

The process occurs in a special homogenizing valve, the design of which is the heart of the homogenizing equipment. The fluid passes through a minute gap in the homogenizing valve. This creates conditions of high turbulence and shear, combined with compression, acceleration, pressure drop, and impact. Causing the disintegration of particles and dispersion throughout the product.

After homogenization, the particles are of a uniform size, typically from 0.2 to 2 micron, depending on the operating pressure. The homogenizer is the most efficient device for particle and droplet size reduction. The actual properties of the product vary with pressure and product type in a complex relationship. In general, higher processing pressure produces smaller particles, down to a certain limit of micronization.


Video