• 30L Stainless Steel Fermenter (30SJ / 30SA)
  • 30L Stainless Steel Fermenter (30SJ / 30SA)
  • 30L Stainless Steel Fermenter (30SJ / 30SA)
  • 30L Stainless Steel Fermenter (30SJ / 30SA)
  • 30L Stainless Steel Fermenter (30SJ / 30SA)
  • 30L Stainless Steel Fermenter (30SJ / 30SA)

30L Stainless Steel Fermenter (30SJ / 30SA)

Product Introduction

The 30L Stainless Steel Fermenter (Model: 30SJ / 30SA) is a core piece of equipment designed for the transition from laboratory R&D to pilot-scale amplification. Constructed from food-grade 316L stainless steel, it integrates the operational flexibility of small-scale devices with the operational stability of pilot-scale systems. Suitable for high-viscosity and high-oxygen-demand fermentation systems, it boasts excellent thermal conductivity and can meet the cultivation requirements of microorganisms, high-value-added strains, and other cultures. It is an ideal choice for synthetic biology research, process parameter optimization, and pilot-scale process validation.

Equipped with a precision stirring system (optional top mechanical stirring or bottom magnetic stirring), the equipment ensures uniform mixing of the fermentation system and stable mass transfer efficiency. It supports integration with online pH/DO sensors and v3.1 control software, enabling real-time monitoring of process parameters and data traceability—thus guaranteeing the reliability of R&D data and the consistency of pilot-scale scaling-up. Its compact structure saves laboratory space while meeting laboratory-level cleaning and sterilization requirements. Featuring user-friendly operation and easy maintenance, it helps R&D teams efficiently advance process development.

  • 30L Stainless Steel Fermenter (30SJ / 30SA)
  • 30L Stainless Steel Fermenter (30SJ / 30SA)
  • 30L Stainless Steel Fermenter (30SJ / 30SA)

Description

Core Specifications

Category Specifications
Model 30SJ (Bottom Magnetic Stirring), 30SA (Top Mechanical Stirring)
Effective Volume 30L (Adjustable working volume)
Material Tank body: 316L stainless steel; Head: 316L stainless steel; Seals: Food-grade silicone rubber/fluororubber
Stirring System Type: Top mechanical stirring (double mechanical seal) / Bottom magnetic stirring; Impeller: Propeller/turbine (optional); Speed range: 50-300rpm (stepless adjustable)
Temperature Control Temperature range: Room temperature +5℃~60℃; Temperature accuracy: ±0.5℃
Aeration Control Air flow rate: 0.1-1.0 vvm; Supports automatic AIR/O₂ flow regulation (optional)
Detection Parameters Online monitoring of pH (0-14), DO (0-20mg/L), temperature, and pressure (optional)
Sterilization Method Compatible with SIP in-situ sterilization / ex-situ sterilization (compatible with laboratory sterilization equipment)
Control Mode Supports local touch operation; Can be linked with v3.1 control software for remote monitoring and data collection
Overall Dimension Approximately Φ400×1200mm (Diameter × Height, excluding bracket)
Power Requirement 220V/380V 50Hz (Configured according to stirring type)
Application Scenarios Laboratory R&D, pilot-scale transition, process parameter optimization, synthetic biology strain cultivation

Core Advantages

  1. Reliable Material: The 316L stainless steel tank is corrosion-resistant and high-temperature resistant, meeting laboratory hygiene standards and suitable for high-viscosity and strong oxidizing fermentation systems.
  2. Transition Adaptability: Specifically designed for the "laboratory R&D - pilot-scale amplification" workflow, data can be directly migrated to 50L-1000L pilot-scale equipment, reducing process scaling errors.
  3. Precise Control: Supports real-time monitoring and automatic adjustment of multiple parameters. When combined with professional control software, it ensures experimental repeatability and data reliability.
  4. Flexible Adaptation: The stirring type and impeller style are customizable, meeting the mass transfer needs of different culture systems such as microorganisms and synthetic biology strains.
  5. Easy Operation: Features a compact structural design, simple installation and maintenance, compatibility with limited laboratory space, and a lowered threshold for scientific research operations.

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