Ultra-High Pressure Homogenizer | The Ultimate Scientific Tool Adaptable From Micro-Volume To Mass Production

May 27, 2026

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Ederson
Ederson
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In cutting-edge fields such as biopharmaceuticals, materials science, and food engineering, the efficiency and precision of sample preparation directly determine the success of R&D and the quality of production.

 

The SCIENTZ-207B Ultra-High Pressure Homogenizer is not just a piece of equipment-it is the ultimate "nano-homogenization tool" for your laboratory.

 

01. Product Positioning: Compact Footprint, Massive Capabilities

The SCIENTZ-207B is a miniaturized, benchtop biological sample processing device tailored specifically for biological laboratories and small-scale production scenarios. Despite its compact chassis, it boasts astonishing processing capabilities:

  • Wide Volume Range: Supports a maximum throughput of up to 15 L/H, seamlessly accommodating everything from 15 mL micro-samples to continuous production needs.
  • High Material Adaptability: Handles precious cell suspensions, high-value liquid medicines, and viscous materials with varying physical properties (maximum feed viscosity up to 2,000 cP; maximum feed particle size < 500 μm) with absolute ease.

The SCIENTZ-207B is widely applicable to universities, research institutes, and corporate R&D laboratories in fields such as pharmaceuticals, biotechnology, cosmetics, food & beverage, and graphene, providing a standardized solution for sample pretreatment across diverse industries.

 

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02. Core Technology: Hardcore Tech for Superior Performance

(1) Three-in-One System: The Ultimate Performance in Physical Cell Disruption

The core technology of the SCIENTZ-207B lies in its unique "Impact + Shear + Cavitation" three-stage disruption system. Materials pass from the sample cup through a check valve into the high-pressure chamber, where they are pressurized by a plunger to an adjustable, preset pressure level. The material is then instantly released through a specially designed restrictive gap, forming a high-speed micro-jet that impacts the homogenization valve.

In this split second, the material undergoes a "triple-action force"-cavitation effect (high-frequency blasting), strong shear effect (stretching and tearing), and high-speed impact effect (collision)-achieving highly efficient emulsification, dispersion, and cell disruption.

 

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(2) Full-Process Temperature Control: Ushering in the Era of "Cold Homogenization"

Addressing the industry pain point where high pressure generates heat that compromises sample activity, the SCIENTZ-207B features a dedicated cooling circulation system interface. When paired with a constant temperature bath, it effectively dissipates heat during processing, strictly controlling temperature rises and preventing heat-sensitive substances (such as proteins, enzymes, and nucleic acids) from denaturing and losing activity.

 

(3) Intelligent Operation: Simplifying Laboratory Workflows

  • Hands-Free Operation: The automated feeding and continuous operation design liberate your hands when handling large batches of samples.
  • One-Touch Online Degassing: Easy to operate, this feature automatically restores the preset pressure value once air is expelled, ensuring a seamless, uninterrupted experimental workflow.

 

(4) Rigorous Quality: Safeguarding Experimental Purity

All components in contact with the material are crafted from medical-grade 316L stainless steel, complying fully with hygiene standards in the food and pharmaceutical industries. The core components utilize highly wear-resistant diamond disruption valves, ensuring a stable output of ultra-high pressure while significantly extending the device's service life.

 

(5) From Micro-Volume to Continuous Scaling: Seamless Transition from Lab to Production

When conducting preliminary tests on extremely precious samples, the SCIENTZ-207B supports a minimum processing volume as low as 15 mL, perfectly avoiding the waste of expensive reagents. Once the process is successfully validated, it can scale up to a maximum throughput of 15 L/H for continuous, high-ratio scale-up operations, enabling a smooth bridge from pilot R&D to small-scale continuous production.

 

03. Application Portfolio: Unlocking R&D Potential Across Industries

Field

Application Scope

Biological Engineering

Processing microbial samples, disrupting algal cells, and researching the impact of different homogenization conditions on the functionality of plant proteins.

Food Engineering

Researching the effects of different homogenization conditions on the physicochemical properties of food and beverages, and applying non-thermal sterilization technologies in liquid foods.

Materials Engineering

Applications in ultrafine grinding and processing of pigments/dyes, and process optimization for cosmetics (nanoparticle emulsions, liposomes).

Biopharmaceuticals

Optimizing the extraction and preparation processes of active pharmaceutical ingredients (APIs), and researching the integration of traditional Chinese medicine (TCM) extracts with modern pharmaceutical technologies.

 

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04. Sample Cases

  • Plant Proteins: Soy protein, peanut protein, sweet potato protein, etc.
  • Plant Tissues: Tremella spores, hawthorn leaves, loquat leaves, ginger rhizomes, etc.
  • Algal Cells: Spirulina cells, Nostoc flagelliforme cells, Chlorella cells, etc.
  • Microorganisms: Yeast, E. coli, Schizochytrium, etc.
  • Liquid Foods: Food beverages, dairy products, fruit juices, etc.
  • Coating Color Pastes: Carbon black paste, phthalocyanine green paste, phthalocyanine blue paste, violet 23 paste, etc.

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