100L–500L Stainless Steel Jacketed Reactor
The 100L–500L Stainless Steel Jacketed Reactor serves as a critical bridge between laboratory research and industrial-scale production. This pilot-scale system is engineered for precise process optimization in the pharmaceutical, fine chemical, and food industries.
1. Executive Summary
Designed with a dual-layer structure, the inner vessel handles the chemical reaction while the outer jacket facilitates precise temperature regulation. This series is often built on a mobile skid to allow for flexibility within a research and development environment.
2. Key Structural Features
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Hygienic Construction: Manufactured using high-grade SS304 or SS316L stainless steel.
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High-Precision Polishing: Surfaces are mirror-polished to Ra < 0.4μm, ensuring compliance with GMP and sanitary standards.
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Integrated Skid Design: The system is typically mounted on a stainless steel frame with heavy-duty locking casters for easy mobility.
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Advanced Sealing: Utilizes magnetic drives or double mechanical seals to guarantee zero leakage and prevent cross-contamination.
3. Technical Specifications (100L–500L)
| Parameter | Specification Range |
| Volume Capacity | 100L, 200L, 300L, 500L |
| Material of Construction | SS304, SS316L, or SS321 |
| Internal Design Pressure | -0.1 (Full Vacuum) to 0.6 MPa |
| Jacket Design Pressure | Up to 0.6 MPa |
| Operating Temperature | -20°C to 200°C (subject to seal type) |
| Agitation Type | Anchor, Paddle, or Helical Ribbon with VFD control |
| Ancillary Components | Condenser, receiver tank, sight glass, and feeding ports |
4. Core Performance Advantages
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Uniform Heat Distribution: The jacket design minimizes thermal gradients, providing consistent heating or cooling across the entire 100L–500L volume.
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Operational Flexibility: Pre-assembled with reflux and distillation components, these systems offer “plug-and-play” convenience for various chemical processes.
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Scalability: Enables engineers to refine process parameters (such as stirring speed and thermal response) before moving to mass production.
5. Primary Applications
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Pharmaceuticals: Synthesis of Active Pharmaceutical Ingredients (APIs) and drug intermediates in small batches.
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Fine Chemicals: Process optimization for specialized resins, coatings, and adhesives.
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Cosmetics & Food: Pilot testing for high-viscosity emulsions, flavorings, and personal care formulations.




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