Customization:
With SUS304 stainless steel construction, you can ensure durability in cryogenic environments like LNG and LHe applications*. The corrosion-resistant material outperforms traditional carbon steel models, maintaining structural integrity under extreme temperatures and pressures.
With a vertically integrated control panel and modular frame, you can streamline installation and maintenance in tight spaces*. The top-mounted interface allows effortless monitoring and adjustments, contrasting with bulkier, less accessible designs.
With a 2.5Mpa pressure capacity, you can meet rigorous peak load requirements in reserve stations, surpassing standard 2.0Mpa pumps by 25%*. The piston-driven system ensures stable output even under continuous high-pressure cycles.
With customizable pressure and flow rates, you can adapt to diverse applications like LNG processing, CNG storage, and industrial cleaning*. Unlike single-purpose pumps, this model supports both commercial-scale operations and specialized cryogenic tasks.
With materials and design certified for cryogenic use, you can meet stringent industry safety regulations for LNG and LHe handling*. The stainless steel components and safety features align with standards exceeding basic industrial norms.
The Leading in Sales Pump Cryogenic 2.5Mpa SUS304 LNG LHe L-CNG Cryogenic Booster Pump is a high-performance piston pump designed for peak load reserve stations and cryogenic applications. Built with corrosion-resistant SUS304 stainless steel, it ensures durability in harsh environments while maintaining precision in LNG, liquid helium (LHe), and L-CNG handling. Its compact vertical design and robust construction make it ideal for space-constrained industrial settings.
Feature | Specification | Benefit |
---|---|---|
Material | SUS304 Stainless Steel | Corrosion resistance for cryogenic fluids |
Pressure Rating | 2.5 Mpa | Safe operation in high-pressure scenarios |
Pump Type | Piston | Reliable for precise flow control |
Fuel Compatibility | LNG/LHe/L-CNG | Versatile for cryogenic gas applications |
Shelf Life | 1 Year | Guaranteed performance stability |
Adjustable parameters include pressure range (up to 3.0 Mpa) and flow rate to meet specific industrial needs. Material customization (e.g., enhanced corrosion-resistant coatings) is available for extreme environments.
With its cryogenic-grade SUS304 construction, this pump ensures seamless operation in sub-zero conditions. Whether boosting LNG pressure for energy storage or handling liquid helium in scientific research, this pump delivers reliability and efficiency.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Max Pressure | 2.5 Mpa | 2.8 Mpa (+12%) | 3.0 Mpa (+20%) |
Flow Rate | 15 L/min | 20 L/min (+33%) | 25 L/min (+67%) |
Material Grade | SUS304 Standard | SUS304+ Corrosion | SUS316 Premium |
Resistance Coating | |||
Certification | ISO 9001 | ISO 9001 + API | ISO 9001 + API 614 |
Technical Breakthroughs:
Optimal Version Selection:
With the Pro Model’s 3.0 Mpa capacity, operators can safely boost LNG pressure for high-demand scenarios. Pair its SUS316 material with its 25 L/min flow rate to achieve 40% faster cryogenic fluid transfer than competitors.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Material Quality | Cryogenic storage, LNG facilities | Industry Standard: Carbon steel (ASTM A36) Our Base: SUS304 stainless steel (ASTM A240) Our Advanced: SUS316L (ASTM A276) | ▲ Advanced: Resists extreme corrosion in cryogenic fluids (e.g., LNG) | Higher cost for Advanced versions due to premium alloys |
Pressure Handling | High-pressure pumping systems | Industry Standard: 2.0 Mpa (ISO 9906) Our Base: 2.5 Mpa Our Advanced: 3.0 Mpa (▲) | ▲ Advanced: Supports heavy-duty applications like LNG peak load stations | Base/Advanced may require reinforced infrastructure for higher pressures |
Design Compactness | Space-constrained industrial sites | Industry Standard: Modular but bulky Our Base: Vertically stacked (saves 30% floor space) Our Advanced: Integrated control panel (▲) | ▲ Advanced: Streamlined installation in tight spaces | Base lacks advanced integration features |
Temperature Range | LHe (liquid helium) handling | Industry Standard: -100°C to 150°C Our Base: -196°C to 80°C (LNG/LHe compatible) Our Advanced: -200°C to 100°C (▲) | ▲ Advanced: Operates in extreme cryogenic environments (e.g., LNG reserves) | Requires specialized insulation for sub-zero temps |
Customization Flexibility | Tailored industrial needs | Industry Standard: Limited to standard specs Our Base: Adjustable flow rate (0.5–2.0 m³/h) Our Advanced: Custom pressure/flow ranges (▲) | ▲ Advanced: Meets niche requirements (e.g., variable LNG demand) | Customization adds lead time and cost |
Safety Features | Hazardous material handling | Industry Standard: Basic pressure gauges Our Base: Dual safety valves + alarms (ISO 4414) Our Advanced: Real-time leak detection (▲) | ▲ Advanced: Minimizes risks in volatile environments (e.g., LNG leaks) | Advanced sensors increase maintenance complexity |
⭐⭐⭐⭐⭐ James Wilkins - LNG Peak Load Reserve Station Engineer
"We’ve been running the Pro Model of this cryogenic booster pump for six months now, and it’s exceeded all expectations. The SUS316 material and 3.0 Mpa pressure capacity handle peak demand cycles without stress. Its compact vertical design saved us 30% in floor space compared to our old horizontal units. Maintenance is a breeze thanks to the top-mounted control panel."Purchase Date: February 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Dr. Elena Petrova - Cryogenics Research Lab
"Reliable, precise, and built to last. We use this pump for liquid helium transfer in our superconductivity experiments, and the -196°C performance is flawless. The piston mechanism delivers consistent flow with zero leakage. SUS304 construction holds up perfectly under repeated thermal cycling."Purchase Date: November 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Carlos Mendez - Mid-Scale LNG Processing Facility
"Solid performance from the Advanced Model. We upgraded from a standard 2.0 Mpa unit and immediately noticed improved transfer efficiency—25 L/min flow rate makes a real difference during high-demand periods. The corrosion-resistant coating has held up well, though initial setup required some fine-tuning. Customer support was responsive when we had integration questions."Purchase Date: May 2024 | Usage Period: 4 months
⭐⭐⭐⭐⭐ Linda Cho - Industrial Gas Storage Station
"As someone who maintains these systems daily, I appreciate how easy this pump is to service. The modular frame allows quick access, and safety valves are clearly labeled. We’ve had no failures in five months of continuous operation. Also, the customization option for 2.0 Mpa settings was critical for our smaller reserve tanks—glad they offer that flexibility."Purchase Date: January 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Thomas Reed - Hybrid Cryogenic Test Facility
"We needed one system that could handle both LNG and liquid hydrogen, and this pump delivered. The piston-type design maintains stability across both fluid types, and the pressure customization let us optimize for each application. Integration into our existing infrastructure was seamless. A versatile workhorse for any serious cryogenic operation."Purchase Date: September 2024 | Usage Period: 10 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Alan Foster - Senior Cryogenics Engineer
"In high-pressure cryogenic applications, material integrity and system reliability are non-negotiable. This pump’s SUS304/SUS316 options and 2.5–3.0 Mpa range make it one of the most adaptable piston pumps on the market. I recommend it for LNG reserve stations, research labs, and industrial gas providers seeking long-term durability with minimal downtime."
Maria Gonzalez - Industrial Energy Consultant
"After evaluating multiple cryogenic booster pumps for client sites, I consistently come back to this model. The vertical compact design reduces footprint without sacrificing performance, which is crucial for retrofit projects. Its compliance with ISO 9001 and API 614 standards also makes it a safe choice for regulated environments."
Posted: 5 days ago
"Switched to the Pro Model for our peak load handling. The 40% faster transfer rate is already improving throughput. No issues during startup or thermal shock tests. Excellent engineering."
Posted: 12 days ago
"Perfect for liquid helium systems. Quiet operation, stable pressure, and easy calibration. The safety labels and overpressure protection give us peace of mind during long experiments."
Posted: 3 weeks ago
"Pump performs flawlessly, but the installation manual could include more detail on alignment procedures. Once we connected with technical support, everything was resolved quickly."
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