Video
his video illustrates the effectiveness of a homogenizer in reducing particle sizes.
Mechanism and Benefits
The homogenizer works by using a stator and rotor system to apply shearing force on the material. Key highlights and benefits shown in the video include:
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Proven and effective homogenizer geometry
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Controlled shear energy transmission
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Precise energy intake
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Optimized residence time
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Minimal temperature rise
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Creation of smallest droplets
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Droplets within a narrow spectrum
Particle Size Comparison
The video also presents a comparison between Conventional Process Systems and the MaxxD homogenizer system:
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Conventional Process Systems: Produces a wider distribution of particle sizes, with many particles being larger.
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MaxxD: Results in a narrower distribution of particle sizes, with droplet sizes below 1 μm. This high-quality emulsion is characterized by:
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Droplet sizes below 1 μm
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Narrow distribution of droplets
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Controlled shear energy transmission
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This efficient process ensures a high-quality, uniform emulsion by precisely controlling the energy and shearing force applied.
[00:10] Comparison between conventional process and MaxxD systems showing particle size distribution. [00:15] Benefits of using the MaxxD homogenizer system for high-quality emulsions.
homogenizer
Particles size difference after shearing force process by stator rotor in homogenizer