ZW-2.1/8~25 Nitrogen Compressor – Variable Inlet Oil-Free N2 Booster for Wide-Range Industrial Applications

설명

ZW-2.1/8~25 Nitrogen Compressor – Variable Inlet Oil-Free N2 Booster for Wide-Range Industrial Applications

Engineered to deliver 2.1 m³/min at 2.50 MPa discharge pressure with 0.80 MPa inlet capability, the ZW-2.1/8~25 is a two-stage, single-row oil-free piston nitrogen compressor designed for nitrogen recycle, gas liquefaction booster duty, and high-pressure process applications with variable inlet conditions. Zero oil contamination, compact footprint, and optimized for continuous-duty operation.

 

제품 개요

그만큼 ZW-2.1/8~25 nitrogen compressor represents a specialized solution within our oil-free piston compressor portfolio, distinguished by its variable inlet pressure capability ranging from 0.80 MPa up to the discharge pressure of 2.50 MPa. With a rated capacity of 2.1 m³/min and a discharge pressure of 2.50 MPa, this unit is purpose-built for nitrogen recycle applications, gas liquefaction booster circuits, and process systems where the inlet nitrogen is already partially compressed.

What makes the ZW-2.1/8~25 unique is its ability to accept inlet nitrogen at pressures up to 0.80 MPa, as indicated by the model designation “8~25” (representing inlet pressure range of 0.8 MPa to 2.5 MPa). This variable inlet capability eliminates the need for upstream pressure reduction when feeding from medium-pressure nitrogen headers, improving overall system efficiency and reducing pressure losses. The compressor can also operate as a conventional booster from atmospheric or low-pressure inlet when required, providing exceptional operational flexibility.

압축기는 다음을 사용합니다. two-stage, single-row (二列一级) configuration that is optimized for the moderate pressure ratio required when boosting from 0.80 MPa to 2.50 MPa. The single-row design simplifies the mechanical architecture while the two-stage arrangement ensures efficient thermodynamic performance and manageable discharge temperatures. Each stage features independent cooling, preserving the integrity of the PTFE sealing elements even under sustained operation.

ZW-2.1/8~25 nitrogen compressor two stage single row piston design

Technical Specifications – ZW-2.1/8~25

매개변수 단위
모델 ZW-2.1/8~25
무늬 Two-stage, Single-row (二列一级)
용량 2.1 (inlet 0.80 MPa) m³/min
토출 압력 2.50 MPa
Inlet Pressure Range 0.80 ~ 2.50 MPa
압축기 크기 (길이 × 너비 × 높이) 1900 × 1296 × 2290 mm
무게 2.60
75 킬로와트
전압 380 다섯
가스 매체 질소(N₂)
매끄럽게 하기 오일 프리

* All specifications are rated at standard reference conditions (ISO 1217, Annex C). Actual performance may vary based on site altitude, ambient temperature, and inlet conditions. Capacity is specified at 0.80 MPa inlet pressure; actual capacity varies with inlet pressure.

주요 특징 및 엔지니어링 장점

1. Variable Inlet Pressure Capability (0.80–2.50 MPa)

The ZW-2.1/8~25 is uniquely engineered to accept inlet nitrogen across a broad pressure range from 0.80 MPa up to 2.50 MPa. This variable inlet capability is achieved through a robust valve design and cylinder sizing that accommodates varying suction densities without mechanical distress. When fed from a medium-pressure nitrogen header at 0.80 MPa, the compressor operates at its rated 2.1 m³/min capacity. When inlet pressure increases toward the discharge pressure, the compressor transitions into a pressure-maintaining or recycle mode with reduced power consumption. This flexibility eliminates the need for upstream pressure regulators or throttling valves that would waste energy and create noise, making the ZW-2.1/8~25 ideal for nitrogen recycle loops and process systems with variable upstream pressure.

2. Oil-Free PTFE Composite Sealing System

The ZW-2.1/8~25 utilizes a proprietary 자가 윤활 피스톤 링 및 라이더 밴드 어셈블리 manufactured from high-performance PTFE composites reinforced with glass fiber and bronze particulates. This material achieves a coefficient of friction below 0.06 without any external hydrocarbon lubrication, ensuring the nitrogen stream remains completely free of oil contamination. At 2.50 MPa discharge pressure, the risk of oil vapor carryover is significantly magnified compared to low-pressure applications, making the oil-free design not merely advantageous but fundamentally essential. The PTFE formulation is rated for continuous operation at temperatures up to 180°C, ensuring reliable sealing integrity under the thermal stress of high-pressure compression.

3. Compact Single-Row Design for Space Efficiency

그만큼 two-stage, single-row (二列一级) architecture of the ZW-2.1/8~25 is mechanically simpler than two-row designs, resulting in a more compact footprint and lower weight. At 1900 × 1296 × 2290 mm and 2.60 tonnes, the unit occupies less than 2.5 m² of floor space and can be transported and positioned using standard forklift equipment. The single-row configuration is well-suited for the moderate flow rate of 2.1 m³/min, where the inertial forces are manageable without the complexity of opposed-cylinder arrangements. This dimensional efficiency makes the ZW-2.1/8~25 particularly attractive for retrofit installations in existing process plants where machinery room space is limited.

4. Standard 380V Industrial Motor Drive

The ZW-2.1/8~25 is driven by a 75 kW, 380V, 50Hz three-phase induction motor conforming to IEC 60034-1 efficiency class IE3. The standard low-voltage configuration integrates directly into existing 380V industrial distribution panels without requiring medium-voltage switchgear or step-down transformers. This electrical simplicity reduces both capital expenditure and commissioning complexity, making the unit accessible to a wide range of industrial facilities regardless of their electrical infrastructure scale.

ZW-2.1/8~25 nitrogen compressor general assembly compact single row design

응용 시나리오

Nitrogen Recycle & Pressure Boosting Loops

In chemical process plants and gas treatment facilities, the ZW-2.1/8~25 serves as a nitrogen recycle compressor that recovers nitrogen from process vents and boosts it back to the required distribution pressure. The variable inlet capability is critical in these applications because the recovered nitrogen may be at any pressure between atmospheric and the process operating pressure. The compressor automatically adapts to the available inlet pressure, maintaining efficient operation across the full range. This recycle capability reduces nitrogen consumption by 30–50% compared to once-through nitrogen systems, delivering substantial operating cost savings and environmental benefits.

ZW-2.1/8~25 nitrogen compressor nitrogen recycle pressure boosting loop

Gas Liquefaction Booster Duty

In small-scale nitrogen liquefaction plants, the ZW-2.1/8~25 nitrogen booster compresses nitrogen from the liquefier vaporizer or storage tank to the pressure required for distribution or further processing. The 2.50 MPa discharge pressure is sufficient for feeding high-pressure nitrogen into cryogenic storage systems or for driving nitrogen through heat exchangers and process equipment. The variable inlet capability allows the compressor to accept nitrogen directly from the liquefier at its operating pressure, eliminating the need for intermediate pressure reduction and improving overall liquefaction plant efficiency.

Medium-Pressure Header Pressure Maintenance

Industrial facilities with medium-pressure nitrogen distribution headers (0.80–1.50 MPa) often require a pressure maintenance compressor to compensate for demand fluctuations and pipeline losses. The ZW-2.1/8~25 can accept nitrogen directly from the header at its operating pressure and boost it to 2.50 MPa for high-pressure consumers or back into the header to maintain pressure during peak demand periods. This dual-mode operation—acting as both a booster and a pressure maintainer—provides exceptional operational flexibility and reduces the need for separate compressor units.

ZW-2.1/8~25 nitrogen compressor medium pressure header pressure maintenance

Laboratory & Pilot Plant High-Pressure Nitrogen

Research laboratories and pilot-scale chemical plants require high-pressure nitrogen for high-pressure reactor inerting, catalyst testing, and supercritical fluid applications. The ZW-2.1/8~25’s compact footprint and standard 380V electrical supply make it suitable for installation in laboratory utility rooms or pilot plant buildings. The 2.50 MPa discharge pressure is adequate for most laboratory high-pressure applications, while the oil-free certification ensures that nitrogen purity meets the stringent requirements of research-grade experiments and analytical instrumentation.

자재 및 시공

The ZW-2.1/8~25 is constructed from materials selected for high-pressure nitrogen compatibility, thermal resistance, and compact structural integrity:

요소 재료 사양
실린더 블록(LP) 회색 주철 GG25 / HT250, 표준 벽 두께
실린더 블록(마력) 회색 주철 GG25 / HT250, 강화벽 + 리브
크랭크 샤프트 단조 합금강 42CrMo4, Q&T, dynamically balanced
피스톤 링 PTFE-유리-청동 복합재 고압 등급, 자가 윤활식, 최대 180°C
라이더 밴드 PTFE 복합재 Piston guidance, anti-scuffing
밸브 플레이트 스테인리스 스틸 SS316, 고압 동심 링 설계
인터쿨러 탄소강 쉘 / SS316 튜브 ASME VIII Div.1, 1.5× hydrotest
애프터쿨러 탄소강 쉘 / SS316 튜브 고압 핀 튜브, 32°C 냉각수
고압 배관 이음매 없는 스테인리스 스틸 SS316, ANSI Class 600 플랜지

All pressure-bearing components are designed and fabricated in accordance with ASME BPVC 섹션 VIII 부문 1 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 maximum allowable working pressure (MAWP) for a minimum hold period of 30 minutes. High-pressure piping systems are fabricated from seamless SS316 with ANSI Class 600 flanged connections to ensure leak-tight integrity at 2.50 MPa operating pressure.

ZW-2.1/8~25 nitrogen compressor factory precision machining quality control

설치 및 유지 관리 지침

기초 및 구조 요구사항

The ZW-2.1/8~25 has a dry weight of 2.60 tonnes and a center of gravity approximately 750 mm above the baseplate. A reinforced concrete pad of 4–5 tonnes is sufficient for stable operation, mounted on elastomeric vibration isolators (natural frequency 8–12 Hz). The single-row design generates moderate unbalanced forces that are easily managed with standard foundation practices. Minimum clearance requirements: 1.0 m on the non-drive side for valve access, 0.8 m on the drive side for motor maintenance, and 1.5 m overhead for crane access. Special attention must be paid to the high-pressure discharge piping, which must be properly supported and anchored to prevent vibration-induced fatigue at 2.50 MPa.

냉각수 시스템 설계

냉각수 수요는 대략 다음과 같습니다. 10 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit supplies the cylinder jackets and intercooler in parallel. Given the high pressure ratio, the intercooler is critical for thermal management and must receive priority cooling water flow. Water quality specifications: pH 6.5–8.5, total dissolved solids < 500 mg/L, chloride content < 50 mg/L (to prevent SS316 tube corrosion), suspended solids < 30 mg/L, and total hardness < 300 mg/L as CaCO₃. A closed-loop cooling tower with side-stream filtration is recommended for sites with marginal water quality.

예방 정비 일정

간격 서비스 항목 조치 필요
일일 운영 점검 Check vibration, abnormal noise, cooling water flow, discharge pressure, temperature
250시간 밸브 플레이트 검사 흡입/배출 밸브를 분리하여 탄소 침전물, 스프링 피로, 균열 여부를 점검하십시오.
1,000시간 피스톤 링 마모 평가 링 홈 간극을 측정하고, 간극이 0.20mm를 초과하면 링을 교체하십시오.
3,000시간 중간 정비 피스톤 링, 라이더 밴드 및 밸브 플레이트 어셈블리를 모두 교체하십시오.
6,000시간 대대적인 개편 크랭크축 저널을 점검하고, 메인 베어링 간극을 측정하며, 간극이 0.08mm보다 크면 베어링을 교체하십시오.

The oil-free design of the ZW-2.1/8~25 dramatically simplifies maintenance compared to lubricated alternatives. There are no oil changes, no oil analysis, no filter replacements, and no separator cartridge changes. The primary consumable wear items are the PTFE 피스톤 링 및 라이더 밴드, which typically achieve 3,000–5,000 hours of service life under clean nitrogen conditions. The high-pressure valve plates may require more frequent inspection than low-pressure equivalents due to increased mechanical stress, but the overall maintenance burden remains significantly lower than oil-lubricated systems.

ZW-2.1/8~25 nitrogen compressor workshop assembly and quality inspection

규정 준수 및 안전 인증

The ZW-2.1/8~25 nitrogen compressor is designed, manufactured, and tested to meet or exceed the following international standards and regulatory frameworks:

Pressure Equipment
ASME BPVC 섹션 VIII Div.1, GB 150-2011, PED 2014/68/EU 모듈 A
전기 및 기계 안전
IEC 60034-1(IE3 효율), IEC 60204-1, ISO 12100 기계 안전
Oil-Free Certification
ISO 8573-1 0등급(유지 함량) 기준 충족, TÜV 라인란트에서 독립적으로 테스트 완료
품질 및 환경
ISO 9001:2015, ISO 14001:2015
⚠️ 중요 안전 경고 – 고압 작업

Nitrogen is classified as a simple asphyxiant gas. At 2.50 MPa discharge pressure, the risk of rapid gas release and oxygen displacement is significantly elevated. All ZW-2.1/8~25 installations must incorporate continuous oxygen deficiency monitoring in the compressor room and adjacent areas. High-pressure discharge piping must be equipped with pressure relief valves rated at 110% of MAWP and rupture discs as secondary protection. Ventilation systems must maintain ambient oxygen above 19.5% per OSHA 29 CFR 1910.146. Emergency shutdown interlocks should activate at 19.5% O₂ (alarm) and trigger automatic isolation at 18.0% O₂ (hard shutdown). Personnel must be trained in high-pressure gas safety protocols before operating or maintaining this equipment.

ZW-2.1/8~25 nitrogen compressor ISO certification and compliance documentation

성과 및 효율성 분석

The ZW-2.1/8~25 achieves a specific power consumption of approximately 35.71 kW per m³/min of nitrogen at 2.50 MPa discharge pressure from 0.80 MPa inlet. This specific power figure reflects the thermodynamic reality of high-pressure compression from an already elevated inlet pressure. However, the true efficiency advantage of the ZW-2.1/8~25 lies in its ability to accept high-pressure inlet without energy-wasting pressure reduction. When compared to systems that throttle 0.80 MPa nitrogen down to atmospheric pressure before re-compressing to 2.50 MPa, the ZW-2.1/8~25 saves approximately 40–50% of the compression energy by utilizing the available inlet pressure directly.

Over an 8,000-hour annual operating cycle in a typical nitrogen recycle application, the ZW-2.1/8~25’s variable inlet capability yields approximately 120,000–180,000 kWh of energy savings compared to systems requiring upstream pressure reduction. At $0.08/kWh, this represents $9,600–$14,400 in annual electricity cost reduction. When combined with the elimination of oil-related consumables and the avoidance of downstream purification equipment, the total cost of ownership for nitrogen recycle compression is reduced by an estimated 30–40% over a 10-year operational life.

The absence of oil in the compression path is particularly valuable in recycle applications because any oil contamination would accumulate in the closed nitrogen loop, progressively degrading product quality and potentially contaminating process equipment. The ZW-2.1/8~25’s native oil-free design ensures that nitrogen purity is maintained indefinitely in recycle service.

맞춤 제작 및 OEM 역량

We offer flexible customization options to adapt the ZW-2.1/8~25 to specific site conditions and integration requirements:

  • Skid-Mounted Packages: Pre-assembled compressor, motor, coolers, instrumentation, and control panel on a structural steel skid with forklift pockets. Reduces field installation to electrical and cooling water connections only.
  • 위험 지역 구성: ATEX Zone 2 and IECEx compliant enclosures for petrochemical installations. Gas detection and automatic ventilation interlocks integrated into the control system.
  • PLC & Remote Monitoring: Optional Siemens LOGO! or S7-1200 PLC with HMI touchscreen, Ethernet connectivity, and SMS/email alarms. Compatible with Modbus TCP/IP for SCADA integration.
  • Acoustic Enclosures: Compact IP54-rated sound enclosure reducing noise from 82 dB(A) to 68 dB(A) at 1 meter, suitable for indoor installations in noise-sensitive environments.
  • OEM 및 자체 브랜드: Custom paint schemes, branded nameplates, and localized documentation for gas equipment distributors and system integrators.

사용자 지정 구성은 다음에서 이용 가능합니다. 최소 주문 수량 1개엔지니어링 제안서는 일반적으로 3~5영업일 이내에 제공됩니다. 표준 납기는 10~12주이며, 특정 주문에 한해 8주 이내의 신속 납기가 가능합니다.

ZW-2.1/8~25 nitrogen compressor custom skid mounted package installation

Case Study: Chemical Plant Nitrogen Recycle System

고객: A specialty chemical manufacturer in Thailand operating batch reactors with nitrogen inerting

도전: The plant was consuming 8,000 Nm³/day of nitrogen for reactor inerting, with the spent nitrogen vented to atmosphere at 0.60 MPa after passing through the reactors. This once-through approach was costing $180,000/year in nitrogen purchase and represented a significant environmental waste stream. The plant wanted to recover and recycle the nitrogen but needed a compressor capable of accepting the variable outlet pressure from the reactors (0.40–0.80 MPa) and boosting it to 2.00 MPa for re-use in the high-pressure reactor feed system.

해결책: We supplied a ZW-2.1/8~25 oil-free nitrogen compressor configured on a custom skid with integrated intercooler, aftercooler, and a Siemens LOGO! PLC control panel. The variable inlet capability allowed the compressor to accept nitrogen directly from the reactor vent header at whatever pressure was available, eliminating the need for upstream pressure regulation. A 1 m³ surge vessel was installed upstream to dampen pressure fluctuations from the batch reactor cycle.

24개월 후 정량화된 결과:

  • Nitrogen consumption: Reduced by 65% (from 8,000 to 2,800 Nm³/day), saving $117,000/year
  • Nitrogen vent emissions: Reduced by 65%, improving environmental compliance score
  • Oil contamination in recycled nitrogen: <0.01 mg/m³, ensuring no process contamination
  • Compressor availability: 98.5% over 24 months, with only scheduled maintenance downtime
  • 투자회수기간: 1.8 years based on nitrogen cost savings alone

“The ZW-2.1/8~25 has paid for itself in under two years. The variable inlet capability was the key feature that made this project feasible—we didn’t need to modify our reactor vent system or add pressure regulators. Our nitrogen costs have dropped by two-thirds and our environmental footprint has improved dramatically.” — Plant Manager, Specialty Chemical Facility

ZW-2.1/8~25 nitrogen compressor chemical plant recycle installation

자주 묻는 질문 및 선택 가이드

What is the expected service life of the ZW-2.1/8~25?

The ZW-2.1/8~25 is engineered for a 최소 설계 수명 12년 (approximately 100,000 operating hours) in clean nitrogen service. The cast-iron frame and forged steel crankshaft are rated for the full design life. PTFE piston rings and rider bands are the primary wear components, with replacement intervals of 3,000–5,000 hours. Valve plate assemblies typically achieve 2,000–3,500 hours before requiring refurbishment under high-pressure conditions.

Can the ZW-2.1/8~25 operate from atmospheric inlet pressure?

Yes. While the ZW-2.1/8~25 is optimized for inlet pressures from 0.80 MPa, it can also operate from atmospheric or low-pressure inlet (0.03–0.10 MPa) when required. However, capacity will be reduced at lower inlet pressures due to the lower gas density. At atmospheric inlet, the effective capacity is approximately 1.2–1.5 m³/min. For applications requiring full 2.1 m³/min capacity from atmospheric inlet, a larger compressor model should be selected.

Is the ZW-2.1/8~25 suitable for outdoor installation?

The standard ZW-2.1/8~25 is designed for 실내 설치 환기가 잘 되는 기계실에서 사용하십시오. 실외 사용을 위해서는 선택 사양을 제공합니다. IP54 방수형 외함 with space heating (for -20°C climates), solar shields (for 55°C ambient), and forced ventilation. The acoustic enclosure option is recommended for outdoor installations to maintain noise compliance.

How does the variable inlet capability benefit my nitrogen system?

The variable inlet capability eliminates the need for upstream pressure regulators or throttling valves that waste energy by reducing high-pressure nitrogen to atmospheric pressure before re-compression. By accepting nitrogen directly at its available pressure (0.80 MPa or higher), the ZW-2.1/8~25 reduces the required compression work by 40–50% compared to systems that throttle inlet pressure. This translates directly to lower electricity consumption, reduced cooling water demand, and lower overall operating costs. For a detailed energy analysis of your specific application, refer to our 질소 압축기 ROI 분석.

When should I avoid selecting the ZW-2.1/8~25?

The ZW-2.1/8~25 is NOT the optimal choice for: (1) Discharge pressures above 3.00 MPa—더 높은 압력이 필요한 경우 당사의 DW 시리즈 또는 ZW 다단 시리즈를 고려하십시오. (2) Capacity requirements above 5 m³/min—larger models in the LW or DW series offer better scale efficiency; (3) Applications where inlet pressure is consistently below 0.30 MPa—the variable inlet capability provides limited benefit at low inlet pressures, and a standard booster compressor may be more cost-effective; (4) 정격 용량 40% 미만에서 연속 유량 조절—piston compressors experience reduced efficiency at deep turndown.

관련 제품 및 솔루션

DW 시리즈 고압 질소 압축기

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.

DW 시리즈 살펴보기 →

ZW 시리즈 다단식 무오일 압축기

Vertical, multi-stage oil-free compressors for oxygen, nitrogen, hydrogen, and specialty gases. Discharge pressures up to 9.00 MPa for ultra-high-pressure applications.

ZW 시리즈 살펴보기 →

LW 시리즈 대용량 질소 압축기

극저온 공기분리장치(ASU) 백업, VPSA 부스팅 및 산업용 파이프라인 분배에 사용되는 고유량 무오일 피스톤 압축기(20~130m³/min). 토출 압력은 0.30~0.80MPa입니다.

LW 시리즈 살펴보기 →

저희에 대한 포괄적인 개요를 보시려면 산업용 질소 압축기 오일프리 산소 압축기, 수소 압축기, 이산화탄소 압축기 및 맞춤형 특수 가스 솔루션을 포함한 당사 제품 포트폴리오에 대한 자세한 내용은 애플리케이션 엔지니어링 팀에 문의하거나 온라인 제품 카탈로그를 참조하십시오.

Ready to Optimize Your Nitrogen Recycle System?

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

이메일: [email protected] 24시간 이내 답변드리겠습니다.