The 3-ICP-100 is a high-performance triplex cryogenic reciprocating plunger pump manufactured by CS&P, engineered to surpass industry standards for reliability, efficiency and output stability. Specially optimized cold-end assemblies deliver cryogenic liquids under elevated working pressure, while the modular design also supports non-cryogenic medium operation. This versatile pump serves oilfield well service, industrial gas, alternative fuel, food & beverage processing, medical and aerospace sectors.
It is the core pumping component for liquid nitrogen pump skids, matched for coiled tubing support, fracturing, purging and high-pressure cryogenic injection jobs. Compatible with multiple low-temperature media including liquid nitrogen, oxygen, argon, methane (LNG), ethylene and CO₂. Oxygen-cleaned configuration is available for oxygen service applications.
Purpose-built cold-end structure handles ultra-low temperature cryogenic fluids steadily. Optimized sealing and plunger assembly minimizes cold leakage, reduces frost formation and extends service life under continuous cryogenic operation.
Wide Operating Speed Range
Adjustable rotational speed from 60 RPM to 1,200 RPM, enables flexible flow regulation to satisfy low-rate precise injection and large-volume high-pressure pumping conditions.
High Load Capacity & Stable Output
Max rod load reaches 12,400 lbs, triplex structure delivers smoother flow with less pressure fluctuation compared to simplex or duplex pumps, protecting downstream high-pressure manifolds and piping.
Multi-Media Compatibility
Works with liquid nitrogen, LNG, CO₂, argon and other cryogenic media. Optional oxygen-cleaned treatment meets strict requirements for oxygen service, covering oilfield, industrial gas and aerospace scenarios.
Pressure Lubrication System
Adopts forced pressure lubrication, effectively reduces friction heat between moving parts, improves wear resistance and supports long-duration continuous heavy-duty operation. Gear reduction version with 3.04:1 ratio is available for different power matching demands.
Dual Cryogenic & Non-Cryogenic Application
Not limited to low-temperature fluids; the pump can be reconfigured for non-cryogenic medium transfer. One pump platform adapts to oilfield well service, industrial gas, new energy fuel and food processing projects.
Applicable Media
✅ Liquid Nitrogen
✅ Oxygen
✅ Argon
✅ Methane (LNG)
✅ Ethylene
✅ CO₂
Application Scenarios
Coiled tubing support (liquid nitrogen injection, foam fracturing)
Oilfield well service, nitrogen displacement & flowback operations
High-pressure cryogenic pumping & cryogenic transfer
Pipeline purging, inert gas pressurization
Onshore oil & gas reservoir fracturing stimulation
Industrial gas, LNG and alternative fuel processing
Medical cryogenic delivery and aerospace cryogenic systems
Standard & Optional Configuration
Main 3-ICP-100 triplex reciprocating pump assembly
Pressure forced lubrication system
Gear reduction unit (3.04:1 ratio, optional)
Standard cryogenic sealing set
Oxygen cleaning treatment (optional, for oxygen service)
Complete installation drawings, maintenance manual and OEM spare parts list
FAQ
What fluids can the 3-ICP-100 pump handle?
It supports liquid nitrogen, oxygen, argon, LNG, ethylene and CO₂. Oxygen cleaning service is available for oxygen working conditions.
What is the speed range of 3-ICP-100?
Adjustable speed from 60 RPM up to 1200 RPM to realize stepless flow regulation.
What is the maximum rod load?
Maximum rod load reaches 12,400 lbs for stable high-pressure cryogenic pumping.
Is this pump suitable for liquid nitrogen pump skid?
Absolutely. It is widely adopted as the core plunger pump for oilfield liquid nitrogen pumper skids matched with coiled tubing units.
Inquiry CTA
Interested in CS&P original 3-ICP-100 cryogenic reciprocating pump for your liquid nitrogen skid or cryogenic pumping project? Send your working medium, pressure and flow requirements. We provide full datasheet, dimension drawing and competitive quotation within 24 hours.
Interested in this product?
Contact us for pricing, technical details, and delivery.