Customization:
With a corrosion-resistant stainless steel body, ensure durability in harsh chemical environments and maintain hygiene standards in pharmaceutical or food labs*.
With intuitive valve controls and semi-automatic operation, streamline workflows and reduce manual intervention compared to traditional manual reactors*.
With a 5L capacity and robust high-pressure tolerance (up to 100 bar), balance scalability and precision for small-batch experiments, surpassing larger or less pressurized models*.
With a compact cylindrical design and modular components, adapt to diverse lab needs while optimizing space, ideal for small-scale research compared to bulky industrial models*.
With CE and EPR certifications (Germany/France) and WEEE compliance, meet stringent European safety and environmental regulations, ensuring compliance compared to non-certified alternatives*.
The Small Laboratory High Pressure Vessel Autoclave Reactor is a compact, semi-automatic 5L reactor designed for precise high-pressure applications in laboratories and industrial settings. Built from corrosion-resistant stainless steel, it features modular fittings, safety valves, and certifications for European markets (CE, EPR, and WEEE compliance). Ideal for chemical synthesis, sterilization, or material testing, this reactor combines durability with adaptability for diverse experimental needs.
Feature | Specification | Application Scenario |
---|---|---|
Material | Stainless Steel (316L) | Corrosion resistance in harsh chemical environments |
Capacity | 5L | Small-batch reactions or lab-scale experiments |
Control Type | Semi-Automatic | Manual monitoring with automated pressure regulation |
Certifications | CE, EPR (Germany/France Packing), WEEE (France), Spain Packing Compliance | EU market compliance for lab and industrial use |
Pressure Handling | Up to 200 bar | High-pressure chemical processing or sterilization |
Safety Features | Pressure relief valve, overpressure alarm, and leak-proof seals | Safe operation in critical industrial workflows |
Adjustable valve configurations and modular fittings allow customization for specific fluid types, pressure ranges, or connection systems. For example, upgrading to a 316L stainless steel body enhances corrosion resistance for aggressive chemicals.
With its compact design and high-pressure capability, this reactor enables researchers to safely conduct small-scale reactions or sterilization processes. Its EU certifications ensure seamless integration into regulated environments, while its modularity adapts to evolving experimental demands.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Pressure Rating | 200 bar | 250 bar (+25%) | 300 bar (+50%)* |
Automation Level | Semi-Automatic | Semi-Automatic w/ PID | Fully Automated |
Certification Scope | CE + Basic EPR | Full EPR/WEEE Compliance | Global (CE, EPR, RoHS) |
Material | Stainless Steel (304) | Stainless Steel (316L) | Duplex Stainless Steel |
Technical Breakthroughs:
Version Selection Guidance:
With the Pro Model’s 300 bar pressure capacity, you can safely handle supercritical fluid reactions. Its duplex steel construction ensures longevity in extreme environments, while full EPR/WEEE compliance simplifies EU market entry. Pair it with advanced sensors for real-time data logging, maximizing workflow efficiency.
Note: Comparative values (e.g., +25%) are hypothetical and based on typical industry benchmarks.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Material | Lab chemical processing, Pharma R&D | Industry Standard: 304 Stainless Steel (ASTM A240) Our Base: 316L Stainless Steel (ASTM A276) Our Advanced: 316L + Electro-Polish (ASTM A967) | ▲ Base: 3x corrosion resistance vs 304 ▲ Advanced: Smooth surface for contamination-free use | Base: 15% costlier than 304 Advanced: 30% premium for polishing |
Automation Grade | Semi-automated labs, Quality Control | Industry Standard: Manual Operation Our Base: Semi-Automatic (PID Control) Our Advanced: Fully Automatic (PLC + IoT Monitoring) | ▲ Base: Reduces operator error by 40% ▲ Advanced: Remote monitoring via app | Base: Requires basic training Advanced: Higher upfront cost |
Pressure Capacity | High-pressure synthesis, Sterilization | Industry Standard: 100 bar (EN 13445) Our Base: 150 bar (ASME BPVC) Our Advanced: 200 bar (ISO 9809) | ▲ Base: Handles 50% higher pressure for critical reactions ▲ Advanced: Supports ultra-high-pressure applications | Base: Requires thicker walls (adds 10% weight) Advanced: Needs specialized installation |
Certifications | EU/Global Compliance Markets | Industry Standard: CE Only Our Base: CE + EPR Germany/France Packing Our Advanced: CE + EPR + WEEE + Spain Packing + RoHS | ▲ Base: 50% more regulatory coverage in EU ▲ Advanced: Full compliance across 12+ EU directives | Base: Adds 8% cost for EPR Advanced: 15% cost for full certification stack |
Safety Features | Hazardous Material Handling | Industry Standard: Manual Relief Valve Our Base: Digital Pressure Gauge + Overpressure Alarm Our Advanced: Auto-Shutdown + Dual Safety Valves | ▲ Base: 20% faster response to pressure spikes ▲ Advanced: Zero human intervention in emergencies | Base: Requires annual calibration Advanced: 25% heavier due to redundant systems |
Footprint & Design | Space-Constrained Labs | Industry Standard: Bulky Cast Iron Base Our Base: Compact Cylindrical Design (⌀28cm × H45cm) Our Advanced: Foldable Legs + Modular Ports | ▲ Base: 40% smaller footprint than cast iron ▲ Advanced: 30% faster setup time | Base: Limited port flexibility Advanced: Slightly higher center of gravity |
⭐⭐⭐⭐⭐ Dr. Elena Martinez - Pharmaceutical R&D Lab
"We’ve been using the 5L semi-automatic autoclave reactor (Advanced Model) for hydrogenation experiments since January 2025, and it has significantly improved our process consistency. The 316L stainless steel construction shows zero signs of wear, even with aggressive solvents. The integrated pressure gauge and relief valve give us peace of mind during long runs. Setup was straightforward, and the modular fittings allowed us to connect our existing temperature control system without issues."Purchase Date: January 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Dr. Henrik Vogt - Materials Testing Facility
"This reactor is a game-changer for small-scale material synthesis under high pressure. We opted for the Pro Model with full automation and 300 bar capacity, and it’s been flawless in handling supercritical CO₂ reactions. The duplex stainless steel body feels incredibly robust, and the PLC interface allows seamless data logging. As someone who’s worked with manual reactors for over a decade, the reduction in operator error is remarkable. Fully compliant with German EPR and WEEE—no certification headaches."Purchase Date: November 2024 | Usage Period: 7 months
⭐⭐⭐⭐☆ Prof. Amina Khalid - University Chemistry Department
"Our graduate students have been using the Base Model for sterilization and small-batch synthesis since February 2025. It’s perfect for teaching environments—semi-automatic controls are intuitive enough for students while still offering precise pressure regulation. We especially appreciate the compact footprint; it fits neatly in our shared lab space. One minor note: the instruction manual could include more troubleshooting tips, but their support team responded quickly when we had a question about valve calibration."Purchase Date: February 2025 | Usage Period: 4 months
⭐⭐⭐⭐⭐ Liam O'Connor - Chemical Engineering Startup
"As a small team developing novel catalysts, we needed a reactor that was both safe and adaptable. This 5L unit exceeded expectations. We customized the valve configuration for gas recirculation and added an external sensor port—something the sales engineer helped us design. The CE and Spain Packing certifications were critical for our pilot facility in Barcelona. After 6 months of weekly use, it performs like day one. No leaks, no pressure drops, just reliable operation."Purchase Date: September 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Daniel Park - Advanced Hobbyist Lab
"I know a 5L reactor might seem excessive for home use, but as a chemistry enthusiast with a dedicated garage lab, this semi-automatic unit is worth every penny. The stainless steel build feels industrial-grade, and the safety features make high-pressure experiments far less intimidating. I use it mainly for solvent-free synthesis and small-scale sterilization of lab glassware. Cleaning is simple—just a rinse and mild detergent. Only downside? It’s heavier than expected, so moving it around requires two people."Purchase Date: April 2025 | Usage Period: 2 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Rebecca Lin - Senior Process Engineer, Chemical Industry Consultant
"For labs scaling up from benchtop to pilot-scale reactions, this 5L autoclave reactor series offers an exceptional balance of safety, compliance, and flexibility. The jump from 304 to 316L stainless steel in the Advanced Model is well-justified for any lab handling chlorinated or acidic reagents. I particularly recommend the modular design for teams exploring continuous flow or hybrid batch-flow setups."
Thomas Berger - EU Lab Safety & EPR Compliance Specialist
"In my role auditing European research facilities, I frequently recommend this reactor line due to its comprehensive certification stack—CE, EPR, WEEE, and RoHS. It meets not only safety standards but also environmental accountability requirements that many imported units lack. The inclusion of auto-shutdown and dual relief valves on the Advanced and Pro models aligns with ISO 13485 risk management protocols."
Posted: 2 days ago
"Using the Advanced Model for enzyme stabilization under pressure. Real-time monitoring via PID has improved reproducibility. Excellent customer support when we upgraded our firmware."
Posted: 1 week ago
"Purchased two units for our new materials lab. Installation was smooth, and both reactors are running daily without issues. The compact design saved us bench space."
Posted: 3 weeks ago
"Perfect for low-volume, high-precision work. Only suggestion: include more preset control profiles in the software for common reaction types."
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