Ultra-High Pressure Homogenizer | The Ultimate Scientific Tool Adaptable From Micro-Volume To Mass Production
May 27, 2026
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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.

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.

(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. |


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.
