Product Details:
| Minimum Order Quantity | 1 Piece |
| Material | Stainless Steel |
| Type of Bioreactor | Sparged Stirred Tank |
| Capacity(KL) | 2 KL |
| Design Type | ASME BPE |
| Max Pressure | 5 kg |
| Automation Grade | Automatic |
Top Selections Explained:
Thermo Fisher Scientific – HyPerforma™ Single-Use Bioreactors: These bioreactors are known for their scalability, supporting processes from development through to commercial production.
Cytiva Life Sciences – Wave Bioreactor Systems: The Wave 25 system offers dual-zone temperature control, allowing for the processing of two single-use bags at different temperatures, enhancing flexibility in cell cultivation
Product Details:
| Minimum Order Quantity | 1 Piece |
| Material | Stainless Steel |
| Type of Bioreactor | Sparged Stirred Tank |
| Capacity(KL) | 2 KL |
| Design Type | ASME BPE |
| Applicable Industries | Vaccine & Cell Culture |
| Max Pressure | 5 kg |
| Max Temperature | 150 Deg c |
| Automation Grade | Semi Automatic |
Additional Information:
Product Details:
| Minimum Order Quantity | 1 Piece |
| Capacity | 5 Kilolitre |
| Type | Continuous |
| Type of Bioreactor | Sparged Stirred Tank |
| Working volume(L) | 50 KL |
| Material | Stainless Steel |
| Operating Temperature | 150 Deg c |
| Max Pressure | 6 kg |
Product Details:
| Minimum Order Quantity | 1 Piece |
| Working Volume | 5000 L |
| Bioreactor Type | Stirred Tank |
| Application | Mammalian Cell, Gene Therapy, Vaccine |
| Bag Material | PE-EVOH-PE |
| Control System | SCADA Based |
| Number of Vessels | Single |
| Sterilization Mode | Gamma Irradiated |
| Gassing Strategy | Sparger |
| Number of Ports | 6 Ports |
| Mounting Type | Floor Standing |
This could refer to a bioprocessing plant or facility that uses biological systems (microorganisms, plant cells, or enzymes) to produce metabolites.
Examples include fermentation plants producing amino acids (like glutamate), vitamins, antibiotics, or biofuels.
The plant would focus on metabolic engineering or optimizing metabolic pathways to maximize the production of specific compounds.