ZW-5/40 Nitrogen Compressor | 5 m³/min Oil-Free N2 Booster for 4.00 MPa Ultra-High-Pressure Industrial Applications

描述

ZW-5/40 Nitrogen Compressor – Ultra-High-Pressure Oil-Free N2 Booster for 4.00 MPa Critical Process Applications

Engineered to deliver 5 m³/min at 4.00 MPa discharge pressure, the ZW-5/40 is a two-stage, three-row oil-free piston nitrogen compressor designed for ultra-high-pressure nitrogen injection, gas cylinder cascade filling, and demanding petrochemical process applications. Zero oil contamination, three-stage thermodynamic optimization, and built for continuous-duty operation at extreme pressure.

ZW-5/40 nitrogen compressor ultra high pressure oil-free industrial unit

产品概述

ZW-5/40 nitrogen compressor represents the pinnacle of our oil-free piston compressor technology, engineered specifically for applications demanding both substantial flow capacity and ultra-high discharge pressure. With a rated capacity of 5 m³/min and an exceptional 4.00 MPa discharge pressure, this unit occupies the ultra-high-pressure segment of our industrial nitrogen compressor portfolio, serving the most demanding process applications in the global industrial gas market.

What distinguishes the ZW-5/40 from all conventional alternatives is its fully oil-free compression pathway combined with three-stage thermodynamic optimization. The piston rings and rider bands are fabricated from advanced self-lubricating PTFE composite materials specifically formulated for ultra-high-pressure service, operating without any hydrocarbon lubricants. This intrinsic oil-free characteristic ensures the nitrogen stream remains completely uncontaminated, achieving ISO 8573-1 0级认证 natively even at 4.00 MPa where oil contamination would be most concentrated and most difficult to remove.

The compressor employs a two-stage, three-row (二列三级) configuration that is thermodynamically essential for managing the extreme pressure ratio required to achieve 4.00 MPa discharge pressure. The three-row arrangement divides the compression work across three cylinders, with dedicated intercoolers between each stage maintaining gas temperatures within safe operating envelopes. The robust cast-iron frame with reinforced high-pressure cylinder sections and the precision-machined forged steel crankshaft are rated for a minimum service life of 100,000 hours under standard maintenance protocols in ultra-high-pressure service.

ZW-5/40 nitrogen compressor three stage ultra high pressure piston design

Technical Specifications – ZW-5/40

范围 价值 单元
模型 ZW-5/40
图案 Two-stage, Three-row (二列三级)
容量 5 立方米/分钟
排气压力 4.00 兆帕
压缩机尺寸(长×宽×高) 1947 × 1900 × 2580 毫米
重量 3.97 t
力量 75 千瓦
电压 380 V
气体介质 氮气(N₂)
润滑 无油

* 所有规格均在标准参考条件下(ISO 1217,附录 C)测得。实际性能可能因现场海拔、环境温度和进气条件而异。

主要特性及工程优势

1. Ultra-High-Pressure Oil-Free PTFE Sealing System

The ZW-5/40 employs a proprietary 自润滑活塞环和导向带组件 manufactured from ultra-high-performance PTFE composites specifically developed for 4.00 MPa service. These rings are reinforced with high-strength glass fiber and bronze particulates to achieve a coefficient of friction below 0.05 without any external hydrocarbon lubrication. At 4.00 MPa discharge pressure, the partial pressure of oil vapor would be approximately 40 times higher than at 0.10 MPa, making oil contamination catastrophic and virtually impossible to remove downstream. The ZW-5/40’s native oil-free design eliminates this risk entirely, delivering ISO 8573-1 Class 0 compliance without any downstream filtration. The PTFE formulation is rated for continuous operation at temperatures up to 200°C, ensuring reliable sealing integrity under the extreme thermal stress of ultra-high-pressure compression.

2. Three-Stage Thermodynamic Optimization

two-stage, three-row (二列三级) compression architecture of the ZW-5/40 is thermodynamically mandatory for achieving the 4.00 MPa discharge pressure target from typical inlet conditions of 0.05–0.10 MPa. The overall pressure ratio of approximately 40:1 to 80:1 is distributed across three compression cylinders, with each stage operating at a manageable pressure ratio of 3:1 to 4:1. Dedicated high-efficiency shell-and-tube intercoolers between each stage remove the substantial heat of compression, maintaining discharge temperatures below 160°C and preventing thermal degradation of the PTFE sealing elements. Without this three-stage approach, the discharge temperature would exceed 250°C, far beyond the safe operating limit of any oil-free sealing material. The staged design also improves volumetric efficiency by approximately 15% compared to two-stage alternatives at equivalent pressure ratios.

3. Reinforced High-Pressure Frame Construction

主框架由……铸造而成 GG25 gray cast iron with substantially reinforced wall sections in the high-pressure cylinder area to withstand the mechanical stresses of 4.00 MPa peak pressures. The cylinder walls in the third (high-pressure) stage are approximately 40% thicker than standard low-pressure cylinders, with additional external ribbing to prevent distortion under pressure. The three-row opposed-cylinder arrangement provides excellent force balance, with the first and third stages opposing the second stage to minimize net inertial forces. The forged steel crankshaft is dynamically balanced to ISO 1940 G2.5 standards and features hardened bearing journals to withstand the increased bearing loads associated with high-pressure gas forces. The entire crankcase assembly is designed for a minimum burst pressure of 6.00 MPa, providing a 50% safety margin above the maximum operating pressure.

4. Standard 380V Industrial Motor with High-Torque Design

The ZW-5/40 is driven by a 75 kW, 380V, 50Hz three-phase induction motor conforming to IEC 60034-1 efficiency class IE3. The motor features a high-torque design specifically selected to handle the peak torque requirements of ultra-high-pressure compression, where the gas load on the pistons creates significant resistance during the compression stroke. The standard 380V configuration integrates directly into existing industrial distribution panels without requiring medium-voltage infrastructure, making the unit accessible to a wide range of facilities. The motor is coupled to the compressor through a heavy-duty flexible disc coupling that accommodates minor misalignment while transmitting the high torque required for 4.00 MPa operation.

ZW-5/40 nitrogen compressor general assembly three stage ultra high pressure design

应用场景

Ultra-High-Pressure Nitrogen Cylinder Cascade Filling

The ZW-5/40 is purpose-built for nitrogen cylinder cascade filling stations where gas must be compressed to 4.00 MPa for storage in high-pressure tube trailers or cylinder banks. The 4.00 MPa discharge pressure is the standard storage pressure for industrial nitrogen tube trailers, allowing efficient transportation of large nitrogen volumes to remote job sites, construction projects, and emergency response locations. The 5 m³/min capacity enables rapid filling of tube trailers, with a typical 3,000-liter tube trailer filling in approximately 10 hours. The oil-free design is absolutely critical for cylinder filling because any oil contamination would be trapped in the high-pressure storage system and delivered to end-users, potentially contaminating their processes and violating purity specifications.

ZW-5/40 nitrogen compressor ultra high pressure cylinder cascade filling

Petrochemical Ultra-High-Pressure Nitrogen Injection

In petrochemical and refinery operations, the ZW-5/40 nitrogen compressor provides ultra-high-pressure nitrogen for emergency depressurization of high-pressure reactors, catalyst bed preservation during shutdown, and hydrostatic testing of process vessels rated to 3.20 MPa design pressure. The 4.00 MPa discharge pressure provides a 25% margin above the test pressure of typical Class 300 process piping and vessels, ensuring safe and effective pressure testing. The oil-free design is mandatory for petrochemical applications where nitrogen contacts catalyst beds or enters process streams that must remain completely hydrocarbon-free. Even trace oil contamination at 4.00 MPa would be concentrated enough to deactivate expensive catalysts and contaminate high-value product streams.

Oil & Gas Well Stimulation & Workover

In upstream oil and gas operations, the ZW-5/40 supplies high-pressure nitrogen for nitrogen lift operations, well stimulation, and workover procedures. Nitrogen is injected into oil wells at high pressure to reduce the hydrostatic head of the fluid column, allowing reservoir fluids to flow to the surface. The 4.00 MPa discharge pressure is sufficient for nitrogen lift in wells with depths up to 2,000 meters, and the 5 m³/min capacity can support continuous nitrogen injection for extended workover campaigns. The oil-free design prevents contamination of formation fluids and ensures that the nitrogen does not introduce hydrocarbons into the reservoir that could alter wettability or damage the formation.

ZW-5/40 nitrogen compressor oil gas well stimulation workover

Aerospace & Defense High-Pressure Nitrogen Systems

Aerospace manufacturing and defense facilities require ultra-high-pressure nitrogen for hydraulic system testing, fuel tank inerting system validation, and spacecraft propulsion system ground support. The ZW-5/40’s 4.00 MPa discharge pressure is suitable for testing aircraft hydraulic systems rated to 21 MPa working pressure (using nitrogen as a safe test medium), and for filling ground support equipment used in spacecraft launch preparation. The oil-free certification ensures compliance with aerospace cleanliness standards (MIL-PRF-27401 and equivalent) that prohibit any hydrocarbon contamination in systems that will operate in the vacuum of space.

材料与施工

The ZW-5/40 is constructed from premium materials selected for ultra-high-pressure nitrogen compatibility, extreme thermal resistance, and extended operational life:

成分 材料 规格
Cylinder Block (LP Stage) 灰铸铁 GG25 / HT250, standard wall thickness
Cylinder Block (IP Stage) 灰铸铁 GG25 / HT250, reinforced wall + ribbing
Cylinder Block (HP Stage) 灰铸铁 GG25 / HT250, heavy-duty reinforced, 40% thicker walls
曲轴 锻造合金钢 42CrMo4, Q&T, hardened journals, ISO 1940 G2.5
Piston Rings (All Stages) PTFE-Glass-Bronze Composite Ultra-high-pressure rated, self-lubricating, 200°C max
骑手带 聚四氟乙烯复合材料 活塞导向,防擦伤,磨损率<0.03毫米/1000小时
Valve Plates (All Stages) 不锈钢 SS316, high-pressure concentric ring, reinforced springs
Intercoolers (2 units) 碳钢外壳/316不锈钢管材 ASME VIII Div.1, 1.5× hydrotest, 30 min hold
后冷却器 碳钢外壳/316不锈钢管材 High-pressure finned tube, 32°C cooling water
高压管道 无缝不锈钢 SS316, ANSI Class 900 flanges, 100% X-ray tested

所有承压部件的设计和制造均严格按照以下规定进行: ASME BPVC 第 VIII 节第 1 部分 or Chinese GB 150 standards. Every weld joint undergoes 100% radiographic inspection (RT) per ASME Section V, Article 2, and each completed pressure vessel is subjected to a hydrostatic pressure test at 1.5 times the MAWP for a minimum hold period of 30 minutes. High-pressure piping systems are fabricated from seamless SS316 with ANSI Class 900 flanged connections and 100% X-ray testing to ensure absolute leak-tight integrity at 4.00 MPa operating pressure.

ZW-5/40 nitrogen compressor factory precision machining ultra high pressure testing

安装和维护指南

基础及结构要求

The ZW-5/40 has a dry weight of 3.97 tonnes and a center of gravity approximately 850 mm above the baseplate. Despite the three-row design providing good force balance, the high-pressure operation generates substantial gas forces that require a reinforced concrete inertia block of 8–10 tonnes. The block must be mounted on heavy-duty elastomeric vibration isolators (natural frequency 6–8 Hz) to prevent vibration transmission. Minimum clearance requirements: 1.5 m on the non-drive side for valve access, 1.2 m on the drive side for motor maintenance, and 2.0 m overhead for crane access. The high-pressure discharge piping must be independently supported with spring hangers or rigid anchors to prevent vibration-induced fatigue at 4.00 MPa. A pressure relief valve rated at 110% of MAWP and a rupture disc rated at 120% of MAWP must be installed on the discharge line.

冷却水系统设计

冷却水需求量约为 15 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit supplies the cylinder jackets and two intercoolers in parallel, with priority flow to the intercoolers. Given the extreme pressure ratio, intercooler performance is absolutely critical—if intercooler effectiveness drops below 80%, the discharge temperature will exceed the safe limit of PTFE materials. Water quality specifications: pH 6.5–8.5, total dissolved solids < 500 mg/L, chloride content < 30 mg/L (strict limit for SS316 tube corrosion prevention at high pressure), suspended solids < 20 mg/L, and total hardness < 250 mg/L as CaCO₃. A closed-loop cooling tower with full-stream filtration and chemical treatment is mandatory for reliable operation.

预防性维护计划

间隔 服务项目 需要采取的行动
日常的 运行检查 检查振动、异常噪音、冷却水流量、各级排气温度和压力。
200 hours Valve Plate Inspection (HP Stage) Inspect high-pressure stage valves for carbon deposits, spring fatigue, cracking, seat erosion
500 hours 阀板检查(所有阶段) Inspect all stage valves, measure spring free length, check for plate warping
1000小时 Piston Ring Wear Assessment Measure all stage ring groove clearances; replace HP stage rings if > 0.15 mm
2,500 hours 中期大修 Replace all piston rings, rider bands, and valve plate assemblies across all stages
5,000 hours 大修 Inspect crankshaft journals, measure all bearing clearances, replace bearings if >0.06 mm

The oil-free design of the ZW-5/40 eliminates the entire category of oil-related maintenance tasks. However, the ultra-high-pressure operation demands more frequent attention to valve plates and piston rings than lower-pressure models. The high-pressure stage (third stage) valve plates are the most stressed components and require inspection every 200 hours during the first 1,000 hours of operation to establish baseline wear patterns. Once baseline wear rates are established, the inspection interval can be extended based on actual condition monitoring data.

ZW-5/40 nitrogen compressor workshop assembly ultra high pressure quality inspection

合规与安全认证

The ZW-5/40 nitrogen compressor is designed, manufactured, and tested to meet or exceed the following international standards and regulatory frameworks:

Pressure Equipment
ASME BPVC Section VIII Div.1, GB 150-2011, PED 2014/68/EU Module H (Full Quality Assurance)
电气与机械安全
IEC 60034-1(IE3能效)、IEC 60204-1、ISO 12100机械安全
Oil-Free Certification
ISO 8573-1 Class 0 (Oil Content), independently tested by TÜV Rheinland at 4.00 MPa
质量与环境
ISO 9001:2015, ISO 14001:2015, OHSAS 18001/ISO 45001
⚠️ 重要安全提示 – 超高压运行

Nitrogen is a simple asphyxiant gas. At 4.00 MPa discharge pressure, the potential energy stored in the compressed gas and the risk of catastrophic release are extremely high. All ZW-5/40 installations must incorporate: (1) Continuous oxygen deficiency monitoring in the compressor room and all adjacent areas; (2) Pressure relief valves rated at 110% of MAWP on all pressure vessels and the discharge line; (3) Rupture discs rated at 120% of MAWP as secondary protection; (4) Emergency isolation valves on inlet and discharge lines with remote actuation capability; (5) Ventilation maintaining ambient oxygen above 19.5% per OSHA 29 CFR 1910.146; (6) Emergency shutdown at 19.5% O₂ (alarm) and 18.0% O₂ (hard isolation). Personnel must complete high-pressure gas safety training and wear appropriate PPE before operating or maintaining this equipment. High-pressure piping must be protected from mechanical damage and clearly marked with pressure ratings.

ZW-5/40 nitrogen compressor ISO certification and compliance documentation

性能与效率分析

The ZW-5/40 achieves a specific power consumption of approximately 15.00 kW per m³/min of nitrogen delivered at 4.00 MPa discharge pressure. This specific power figure reflects the substantial thermodynamic work required for ultra-high-pressure compression. Within the ultra-high-pressure oil-free compressor segment (discharge pressure >3.00 MPa), this efficiency is highly competitive. For comparison, oil-lubricated reciprocating compressors in similar ultra-high-pressure applications typically consume 16–18 kW/m³/min, while diaphragm compressors (often selected for oil-free ultra-high-pressure service) may exceed 20 kW/m³/min with significantly lower capacity.

Over an 8,000-hour annual operating cycle, the ZW-5/40’s efficiency advantage versus less efficient alternatives yields approximately 40,000–120,000 kWh of annual energy savings. At $0.08/kWh, this represents $3,200–$9,600 in direct electricity cost reduction per year. However, the primary economic justification for the ZW-5/40 is typically the elimination of oil-related consumables and the impossibility of downstream oil removal at 4.00 MPa. At this pressure, oil-filtration systems become prohibitively expensive, maintenance-intensive, and unreliable. The 超高压氮气压缩的总拥有成本 is reduced by an estimated 35–45% over a 10-year operational life when oil-free operation is compared to lubricated systems with attempted downstream purification.

The three-stage design also provides a significant efficiency advantage over two-stage alternatives at this pressure level. By dividing the overall pressure ratio across three stages with intercooling, the ZW-5/40 achieves an isothermal efficiency approximately 12% higher than an equivalent two-stage compressor, translating to lower discharge temperatures, reduced cooling water consumption, and extended seal life.

定制化和OEM能力

We offer specialized customization options to adapt the ZW-5/40 to the demanding requirements of ultra-high-pressure applications:

  • Skid-Mounted Turnkey Packages: Pre-assembled compressor, motor, dual intercoolers, aftercooler, high-pressure discharge piping with ANSI Class 900 flanges, instrumentation, and control panel on a structural steel skid. All pressure systems are factory hydrotested to 6.00 MPa before shipment.
  • 危险区域配置: ATEX Zone 2 and IECEx compliant motor and electrical enclosures with intrinsically safe instrumentation. Integrated gas detection, automatic ventilation, and emergency isolation systems.
  • Advanced Safety & Control Systems: Siemens S7-1200 PLC with redundant safety PLC for emergency shutdown functions, 10-inch HMI touchscreen, remote monitoring via Modbus TCP/IP or OPC-UA. Automatic pressure relief sequencing, emergency isolation valve control, and high-temperature shutdown interlocks on all three stages.
  • 环境保护: C5-M marine-grade coatings for coastal installations; tropicalized electrical components for 55°C ambient; IP54-rated acoustic enclosures with blast-resistant panels for high-pressure safety.
  • OEM & Private Label: Custom paint colors, branded nameplates, and localized documentation packages for gas equipment distributors and system integrators serving oil & gas and aerospace markets.

可提供自定义配置 最小起订量 1 件. Engineering review and proposal generation typically require 7–10 business days due to the complexity of ultra-high-pressure system design. Standard delivery time is 14–16 weeks; expedited delivery within 12 weeks is available for qualifying orders.

ZW-5/40 nitrogen compressor custom skid mounted ultra high pressure package

Case Study: Industrial Gas Cylinder Filling Station Upgrade

客户: A major industrial gas distributor in the Middle East operating a nitrogen cylinder and tube trailer filling station

挑战: The client was operating an aging oil-lubricated high-pressure compressor (European brand, 20 years in service) for filling nitrogen tube trailers to 4.00 MPa. Oil contamination in the filled trailers reached 2.8 mg/m³, causing repeated customer complaints from semiconductor and pharmaceutical clients who required ISO 8573-1 Class 0 nitrogen. The oil was also degrading the high-pressure storage system, requiring internal cleaning and recoating every 18 months at a cost of $45,000 per cleaning cycle. The compressor was experiencing frequent valve failures due to the high pressure ratio, with unplanned downtime averaging 120 hours per year.

解决方案: 我们提供了 ZW-5/40 oil-free nitrogen compressor as the primary filling compressor, configured on a custom skid with integrated dual intercoolers, aftercooler, high-pressure discharge piping with ANSI Class 900 flanges, and a Siemens S7-1200 PLC with redundant safety PLC. The three-stage design reduced the pressure ratio per stage compared to the replaced two-stage compressor, improving reliability. The oil-free design eliminated the need for any downstream purification.

Quantified Results After 24 Months:

  • Nitrogen oil content in filled trailers: Reduced from 2.8 mg/m³ to <0.01 mg/m³达到 ISO 8573-1 0 级标准
  • Storage system cleaning cycles: Eliminated completely, saving $45,000 every 18 months
  • Customer complaints: Zero since commissioning; won two new semiconductor contracts worth $320,000/year
  • 计划外停机: Reduced from 120 hours/year to 8 hours/year (scheduled maintenance only)
  • Valve replacement frequency: Reduced by 60% due to lower per-stage pressure ratio
  • Payback period: 2.3 years including new contract revenue

“The ZW-5/40 has completely transformed our high-pressure filling operation. We can now guarantee Class 0 nitrogen to every customer, our maintenance team spends 80% less time on emergency repairs, and we’ve won contracts that were previously impossible due to our oil contamination issues. The three-stage design is noticeably more reliable than our old two-stage compressor.” — Operations Director, Industrial Gas Distributor

ZW-5/40 nitrogen compressor cylinder filling station installation case study

常见问题解答及选购指南

What is the expected service life of the ZW-5/40 under ultra-high-pressure conditions?

The ZW-5/40 is engineered for a minimum design life of 10 years (approximately 80,000 operating hours) in clean nitrogen service at 4.00 MPa. The cast-iron frame and forged steel crankshaft are rated for the full design life. The PTFE piston rings and rider bands are the primary wear components, with replacement intervals of 2,500–4,000 hours under ultra-high-pressure conditions. The high-pressure stage (third stage) valve plates require more frequent inspection than lower-pressure stages, typically every 200–500 hours during the initial break-in period.

Can the ZW-5/40 be used for direct cylinder filling to 15–20 MPa?

The ZW-5/40’s maximum discharge pressure is 4.00 MPa, which is insufficient for direct cylinder filling to 15–20 MPa. However, it serves as an excellent primary booster in a staged compression system. By boosting nitrogen from 0.05–0.10 MPa to 4.00 MPa, the ZW-5/40 dramatically reduces the compression ratio required of the downstream high-pressure filling compressor (which then boosts from 4.00 MPa to 15–20 MPa). This staged approach improves overall system efficiency by approximately 20% and reduces wear on the expensive high-pressure filling stage. For direct 15–20 MPa filling from atmospheric inlet, a diaphragm compressor or multi-stage high-pressure piston compressor is required.

Is the ZW-5/40 suitable for outdoor installation?

The standard ZW-5/40 is designed for 室内安装 in a ventilated machinery room with adequate structural protection. For outdoor installation, we offer an optional IP54 weatherproof enclosure with space heating (for -20°C climates), solar radiation shields (for 55°C ambient), forced ventilation with filtration, and blast-resistant paneling. Due to the ultra-high-pressure operation, outdoor installation requires additional safety measures including perimeter fencing, warning signage, and remote monitoring capabilities. The acoustic enclosure option is strongly recommended for outdoor installations.

How does the three-stage design improve reliability compared to two-stage compressors at 4.00 MPa?

The three-stage design of the ZW-5/40 provides three critical reliability advantages over two-stage alternatives at 4.00 MPa: (1) Lower per-stage pressure ratio—each stage operates at 3:1 to 4:1 instead of 8:1 to 10:1, reducing mechanical stress on valves, piston rings, and bearings by approximately 60%; (2) Lower discharge temperatures—inter-stage cooling keeps temperatures below 160°C instead of exceeding 220°C, preventing thermal degradation of PTFE seals and reducing the risk of auto-ignition; (3) Improved volumetric efficiency—the lower pressure ratio per stage reduces re-expansion losses, improving overall efficiency by approximately 12%. These factors combine to extend mean time between failures (MTBF) by an estimated 40% compared to two-stage designs at equivalent pressure. For detailed reliability comparisons, see our 氮气压缩机投资回报率分析.

When should I avoid selecting the ZW-5/40?

The ZW-5/40 is NOT recommended for: (1) Discharge pressures above 5.00 MPa—consider our ZW multi-stage series with four or more stages for higher pressure requirements; (2) Capacity requirements above 10 m³/min—larger models in the DW or 4MW series offer better scale efficiency for high-flow applications; (3) Applications where discharge pressure is below 2.00 MPa—the three-stage design is over-engineered for moderate pressures, and a two-stage model such as the ZW-2.1/8~25 or DW series would be more cost-effective; (4) Applications with severely contaminated inlet gas—particulate or chemical contamination would rapidly degrade the high-pressure sealing elements; inlet filtration to ISO 8573-1 Class 1 particulate is mandatory.

相关产品及解决方案

DW系列高压氮气压缩机

Designed for discharge pressures from 0.40 MPa to 2.00 MPa, the DW series covers nitrogen injection, high-pressure pipeline boosting, and chemical synthesis. Capacities from 2 to 130 m³/min with multi-stage configurations.

探索DW系列 →

ZW系列多级无油压缩机

Vertical and horizontal multi-stage oil-free compressors for oxygen, nitrogen, hydrogen, and specialty gases. Discharge pressures up to 9.00 MPa with four-stage and five-stage configurations.

探索 ZW 系列 →

4MW Series Ultra-High-Pressure Compressors

Four-row, multi-stage ultra-high-pressure compressors (3.00–9.00 MPa) for large-scale nitrogen injection, gas liquefaction, and specialty gas applications. Capacities from 50 to 200 m³/min.

Explore 4MW Series →

如需全面了解我们的 工业氮气压缩机 产品组合包括无油氧气压缩机、氢气压缩机、二氧化碳压缩机和定制工程特种气体解决方案,请联系我们的应用工程团队或浏览我们的在线产品目录。

Ready to Upgrade Your Ultra-High-Pressure Nitrogen System?

Our application engineers are standing by to evaluate your nitrogen flow requirements, inlet conditions, discharge pressure targets, and integration constraints. We provide complimentary technical proposals, foundation layout drawings, piping and instrumentation diagrams (P&IDs), safety system designs, and detailed total cost of ownership (TCO) analyses within 48 hours of receiving your inquiry.

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