Microfluidics International Corporation – Sample Preparation – M-110EH-30 Microfluidizer® Processor
M-110EH-30 Electric-Hydraulic Laboratory Microfluidizer Processor for Continuous High Shear Fluid Processing. The M-110EH-30 has been designed to reliably achieve continuous operating pressures to 30,000 psi. The processor maximizes the energy-per-unit fluid volume, resulting in uniform submicron particle and droplet sizes.
Utilizing Microfluidics’ fixed geometry diamond interaction chamber technology, nd a ceramic (Zirconia) plunger, the M-110EH-30 is capable of processing a wide variety of fluids such as simple oil-in-water emulsions, solids-in-liquid suspensions, and cell disruptions, including the most difficult yeasts and plant cells, in 1-2 passes. What’s more, the process is repeatable and is guaranteed to scaleup to pilot and/or production volumes.
Technical Specifications
Pressure Range | up to 30,000 psi (2070 bar) |
Flow Rate | Up to 330 ml/min at 30,000 psi (2070 bar) |
---|---|
Feed Temperature Range | 35ºF – 165°F (16ºC – 75°C) |
Holdup Volume | 100 ml |
Minimum Sample Size | 120 mL |
Key Features
- Diamond interaction chamber with ceramic Auxiliary Processing Module (APM)
- Ceramic (Zirconia) plunger for extended seal life
- Stainless steel enclosure
- Electric-hydraulic power unit
- Gauges for measuring process pressure, hydraulic drive pressure, and hydraulic oil level and temperature
- Self-contained unit, mounted on locking casters for portability
- Minimum sample sizes as small as 120 mL
- Feed temperature range 35ºF – 165°F (16ºC – 75°C)
- TEFC (totally enclosed fan cooled) motor, starter, controls and power cord
Key Industries
- Biopharmaceutical and Biotechnology
- Chemical
- Cosmetics & Personal Care
- Education & Academics
- Food & Beverage
- Medical
- Paper & Wood
- Pharmaceutical
- Polymers, Plastics and Rubbers
- Powders & Pigments / Coating
More Products
Microfluidics International Corporation, the manufacturer of Microfluidizer® high shear fluid processors, is a leader in the design and production of…