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SCIENTZ-207B-MI High Pressure Microfluidizer Homogenizer

Product ID:SYHHFSjrh062

Price: Please inquire PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
  • Product Introduction
  • Other information
  • Model NumberSCIENTZ-207B-MI
    Brand NameNBXINZHI
    Payment TermsTT,PAYPAL,Alibaba.com Pay
    SCIENTZ-207B-MI High Pressure Microfluidizer Homogenizer
    Product Overview
    The SCIENTZ-207B-MI High Pressure Microfluidizer Homogenizer is a compact bench-top laboratory system designed for high-pressure homogenization, cell disruption, nanoparticle size reduction, and ultra-fine material dispersion. By pressurizing samples to extremely high pressure and forcing them through a precision diamond microchannel, the instrument generates supersonic micro-jets that create intense shear, impact, and cavitation forces.
    This advanced homogenization technology produces highly uniform suspensions with particle sizes below 100 nm, making it an ideal solution for pharmaceutical research, biotechnology, food science, cosmetics, nanomaterials, and graphene processing.
    Its hygienic 316L stainless steel construction, PLC automation, temperature-controlled operation, and zero dead-volume design ensure excellent processing efficiency, product consistency, and easy maintenance.

     
    Key Features
    • Maximum working pressure up to 2000 bar (200 MPa)
    • Particle size reduction to below 100 nm
    • Cell disruption efficiency exceeding 95%
    • Precision diamond interaction chamber for long-term stability
    • Automatic feeding and continuous operation
    • PLC control with 10-inch capacitive touchscreen
    • Internal and external cooling for precise temperature control
    • Zero product residue design minimizes sample loss
    • External one-way valve simplifies air removal and maintenance
    • Optional piston cleaning system extends seal life
    • Optional gap-valve homogenization mode for flexible processing

     
    Working Principle
    The SCIENTZ-207B-MI operates using high-pressure microfluidization technology.
    Samples are drawn into the high-pressure chamber by the reciprocating piston. The piston then compresses the material and forces it through a precision diamond microchannel under ultra-high pressure. Inside the diamond interaction chamber, opposing high-speed micro-jets collide or strike the chamber wall, generating powerful:
    • Cavitation
    • High-velocity impact
    • Extreme shear forces
    • Turbulence
    These combined mechanical forces efficiently disrupt cells, reduce particle size, disperse agglomerates, and produce highly homogeneous nano-scale suspensions without significant thermal damage.

     
    Technical Specifications
    Parameter Specification
    Model SCIENTZ-207B-MI
    Maximum Design Pressure 2400 bar / 240 MPa
    Maximum Working Pressure 2000 bar / 200 MPa
    Maximum Sample Throughput 13 L/h
    Minimum Sample Volume 30 mL
    Motor Power 4.5 kW, AC380V, 50 Hz
    Maximum Feed Particle Size <500 μm
    Product Residue 0 mL (Zero Dead Volume)
    Flow Control PLC Adjustable
    Pressure Sensor 0–2200 bar, Accuracy ±1 bar
    Display 10-inch PLC Capacitive Touch Screen
    Drive System International-brand Servo Motor
    Data Export USB Interface
    Net Weight <91 kg
    Dimensions (W × D × H) 320 × 940 × 540 mm
     
    Typical Applications
    Biotechnology
    • Microbial cell disruption
    • Algae cell lysis
    • Protein extraction
    • Plant protein functional studies
    • Enzyme extraction
    Pharmaceutical Industry
    • Liposome preparation
    • Lipid nanoparticle (LNP) production
    • Nano-suspension manufacturing
    • Injectable fat emulsion processing
    • Traditional Chinese medicine extraction optimization
    • Active pharmaceutical ingredient (API) formulation
    Food Engineering
    • Beverage homogenization
    • Juice stabilization
    • Dairy processing
    • Nano-emulsion preparation
    • Non-thermal sterilization research
    • Functional food development
    Materials Science
    • Graphene dispersion
    • Pigment and dye ultrafine grinding
    • Nanomaterial preparation
    • Cosmetic nanoemulsions
    • Liposome cosmetics
    • Polymer dispersion

     
    Advantages Compared with Conventional High Pressure Homogenizers
    SCIENTZ-207B-MI Microfluidizer Conventional Homogenizer
    Diamond interaction chamber Standard homogenizing valve
    Particle size below 100 nm Typically 200–1000 nm
    Cell disruption efficiency >95% Lower disruption efficiency
    Zero sample residue Residual product remains
    Accurate PLC flow control Limited control precision
    Integrated temperature management Less effective cooling
    Automatic continuous operation More manual intervention
    USB data export Often unavailable
    Optional dual homogenization modes Single homogenization method
     
    Frequently Asked Questions
    What is the maximum operating pressure?
    The homogenizer operates at a maximum working pressure of 2000 bar (200 MPa) with a design pressure of 2400 bar (240 MPa).
    What particle size can be achieved?
    The system can reduce particles to below 100 nm, depending on the sample properties and processing conditions.
    What sample volume can be processed?
    The minimum processing volume is 30 mL, while the maximum throughput reaches 13 L/h.
    Which materials can be processed?
    Suitable samples include microorganisms, algae, proteins, emulsions, liposomes, graphene, pigments, polymers, cosmetics, beverages, pharmaceutical formulations, and various biological suspensions.
    How is temperature controlled?
    The instrument combines both internal and external cooling systems, maintaining controlled temperatures throughout the sample flow path to protect heat-sensitive materials.
    Is the system suitable for pharmaceutical and food applications?
    Yes. Wetted components are manufactured from food- and pharmaceutical-grade 316L stainless steel, ensuring excellent hygiene and corrosion resistance.

     
    Why Choose the SCIENTZ-207B-MI High Pressure Microfluidizer?
    The SCIENTZ-207B-MI combines ultra-high pressure homogenization, precision diamond microfluidization technology, PLC automation, and advanced temperature control in a compact laboratory platform. It delivers exceptional particle size reduction, high cell disruption efficiency, zero product loss, and excellent process repeatability, making it an ideal solution for researchers and manufacturers developing pharmaceuticals, biotechnology products, nanoemulsions, functional foods, cosmetics, and advanced nanomaterials. Its robust design and flexible optional configurations support both research laboratories and pilot-scale process development.

     
     
  •  
    Frequently Asked Questions
    What is the maximum operating pressure?
    The homogenizer operates at a maximum working pressure of 2000 bar (200 MPa) with a design pressure of 2400 bar (240 MPa).
    What particle size can be achieved?
    The system can reduce particles to below 100 nm, depending on the sample properties and processing conditions.
    What sample volume can be processed?
    The minimum processing volume is 30 mL, while the maximum throughput reaches 13 L/h.
    Which materials can be processed?
    Suitable samples include microorganisms, algae, proteins, emulsions, liposomes, graphene, pigments, polymers, cosmetics, beverages, pharmaceutical formulations, and various biological suspensions.
    How is temperature controlled?
    The instrument combines both internal and external cooling systems, maintaining controlled temperatures throughout the sample flow path to protect heat-sensitive materials.
    Is the system suitable for pharmaceutical and food applications?
    Yes. Wetted components are manufactured from food- and pharmaceutical-grade 316L stainless steel, ensuring excellent hygiene and corrosion resistance.

     
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