説明
3ZW-6/30 窒素コンプレッサー – 3.00 MPa 高圧プロセス用途向け3段式オイルフリーN2ブースター
Engineered to deliver 6 m³/min at 3.00 MPa discharge pressure, the 3ZW-6/30 is a three-stage, three-row oil-free piston nitrogen compressor designed for ultra-high-pressure nitrogen injection, gas cylinder filling stations, and demanding chemical synthesis processes. Zero oil contamination, robust multi-stage architecture, and optimized for continuous-duty operation at extreme pressure.
製品概要
の 3ZW-6/30 nitrogen compressor represents the pinnacle of our oil-free piston compressor technology, engineered specifically for applications that demand both substantial flow capacity and ultra-high discharge pressure. With a rated capacity of 6 m³/min そして並外れた 3.00 MPaの吐出圧力, this unit occupies the high-pressure segment of our industrial nitrogen compressor portfolio, serving the most demanding process applications in the chemical, petrochemical, and gas distribution industries.
The “3ZW” designation signifies the three-stage, three-row (三列三级) architecture that is fundamental to achieving the 3.00 MPa discharge pressure while maintaining thermal stability and mechanical reliability. Each of the three compression stages operates at a moderate pressure ratio, with dedicated intercoolers between stages removing the heat of compression. This multi-staged approach is essential because the overall pressure ratio from atmospheric inlet to 3.00 MPa exceeds the safe operating limits of single-stage or two-stage designs, both in terms of discharge temperature and mechanical stress on the pistons and crankshaft.
What distinguishes the 3ZW-6/30 from conventional alternatives is its 完全にオイルフリーの圧縮経路. The piston rings and rider bands are precision-machined from advanced self-lubricating PTFE composite materials that operate without any hydrocarbon lubricants. At 3.00 MPa discharge pressure, the risk of oil vapor carryover is exponentially higher than at low-pressure applications, making the oil-free design not merely advantageous but absolutely mandatory for any application requiring high-purity nitrogen. The unit achieves ISO 8573-1 クラス0認証 natively, without downstream oil-filtration equipment.

Technical Specifications – 3ZW-6/30
| パラメータ | 価値 | ユニット |
|---|---|---|
| モデル | 3ZW-6/30 | – |
| パターン | Three-stage, Three-row (三列三级) | – |
| 容量 | 6 | m³/分 |
| 吐出圧力 | 3.00 | MPa |
| コンプレッサーのサイズ(長さ×幅×高さ) | 1845 × 1660 × 2360 | mm |
| 重さ | 3.00 | t |
| 力 | 75 | kW |
| 電圧 | 380 | V |
| ガス媒体 | 窒素(N₂) | – |
| 潤滑 | オイルフリー | – |
* すべての仕様は標準基準条件(ISO 1217、附属書C)に基づいています。実際の性能は、設置場所の標高、周囲温度、および吸気条件によって異なる場合があります。
主な特長とエンジニアリング上の利点
1. Three-Stage Compression for Ultra-High Pressure
の three-stage, three-row architecture of the 3ZW-6/30 is the engineering foundation that makes 3.00 MPa discharge pressure achievable with oil-free piston technology. The overall pressure ratio of approximately 30:1 to 60:1 (from atmospheric inlet) is divided across three compression cylinders, with each stage operating at a pressure ratio of approximately 3:1 to 4:1. This staged approach is thermodynamically essential because single-stage compression to 3.00 MPa would produce discharge temperatures exceeding 300°C, far beyond the safe operating limit of PTFE sealing materials. Between each stage, a dedicated high-efficiency shell-and-tube intercooler removes the heat of compression, maintaining discharge temperatures below 155°C at all stages. This thermal management preserves PTFE ring integrity and extends valve plate life by approximately 50% compared to two-stage designs attempting equivalent pressure ratios.
2. Advanced High-Pressure Oil-Free PTFE Sealing System
The 3ZW-6/30 employs a proprietary 自己潤滑ピストンリングおよびライダーバンドアセンブリ manufactured from ultra-high-performance PTFE composites specifically formulated for 3.00 MPa service. These rings are reinforced with glass fiber, bronze particulates, and molybdenum disulfide to achieve a coefficient of friction below 0.05 without any external hydrocarbon lubrication. At 3.00 MPa discharge pressure, the partial pressure of oil vapor would be approximately 10 times higher than at 0.30 MPa, making oil contamination exponentially more severe and more difficult to remove downstream. The 3ZW-6/30’s native oil-free design achieves ISO 8573-1 クラス0認証 without any downstream filtration, coalescing, or adsorption equipment. The PTFE formulation is rated for continuous operation at temperatures up to 185°C, with a safety margin that accommodates transient temperature excursions during startup and load changes.
3. Three-Row Opposed-Cylinder Force Balance
メインフレームは鋳造されています GG25 グレー鋳鉄 with reinforced wall sections and integral cooling water passages. The three-row opposed-cylinder arrangement provides superior force balance compared to single-row or two-row designs, with first-order and second-order inertial forces largely self-canceling. This mechanical advantage is particularly critical for high-pressure compressors where the peak gas forces on the pistons are substantially higher than in low-pressure applications. The three-row configuration reduces the unbalanced forces transmitted to the foundation by over 85% compared to single-row designs, permitting installation on a lighter reinforced concrete inertia block (minimum 5 tonnes) and reducing the risk of vibration-induced fatigue in connected piping systems. The compact dimensions—1845 × 1660 × 2360 mm—are remarkable for a three-stage compressor of this pressure class, achieved through a vertically stacked cylinder arrangement that minimizes the machine’s footprint.
4. 標準380V産業用モータードライブ
The 3ZW-6/30 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 is particularly valuable for the 3ZW-6/30 because its moderate power requirement (75 kW) does not justify the complexity and cost of medium-voltage infrastructure. The motor is directly coupled to the crankshaft through a flexible disc coupling, eliminating the maintenance burden and efficiency losses associated with belt or gearbox drives.

アプリケーションシナリオ
Ultra-High-Pressure Nitrogen Cylinder Filling
The 3ZW-6/30 is the ideal primary booster for nitrogen cylinder filling stations serving industrial, medical, and specialty gas markets. While the compressor’s 3.00 MPa discharge pressure does not reach the 15–20 MPa required for direct cylinder filling, it serves as a highly efficient intermediate stage that dramatically reduces the compression ratio required of downstream high-pressure filling compressors. In a typical filling station configuration, the 3ZW-6/30 boosts nitrogen from 0.05–0.10 MPa to 3.00 MPa, after which a compact high-pressure diaphragm or piston compressor completes the filling to 20 MPa. This staged approach improves overall system efficiency by 25–35% compared to single-stage high-pressure compression from atmospheric inlet. The oil-free design is mandatory for cylinder filling because any oil contamination would be trapped in the filled cylinders and delivered to end-users, potentially compromising their processes and exposing the filling station to liability.

Chemical Synthesis & High-Pressure Reactor Inerting
In chemical process plants, the 3ZW-6/30 nitrogen compressor provides ultra-high-pressure nitrogen for high-pressure reactor inerting, catalyst bed preservation, and emergency depressurization of process vessels. The 3.00 MPa discharge pressure is sufficient to inject nitrogen into reactors operating at pressures up to 2.5 MPa, maintaining positive inert gas blankets during all phases of operation. The three-stage compression ensures that the nitrogen remains thermally stable and free of oil contamination, which is critical in chemical synthesis where even trace contaminants can poison catalysts, initiate unwanted side reactions, or compromise product purity. The 6 m³/min capacity can serve multiple high-pressure reactors simultaneously through a centralized nitrogen header.
Gas Liquefaction & Cryogenic Storage Pressure Maintenance
In nitrogen liquefaction plants and cryogenic storage facilities, the 3ZW-6/30 serves as a high-pressure booster that compresses nitrogen vapor from storage tanks or recondensers to the pressure required for distribution or further processing. The 3.00 MPa discharge pressure is adequate for driving nitrogen through heat exchangers, recondensers, and distribution networks in small to medium liquefaction plants. The oil-free design is essential because any oil contamination in the high-pressure nitrogen would be carried into the cryogenic system, where it would freeze and block heat exchanger passages, causing operational failures and costly maintenance. The three-stage compression with intercooling ensures that the nitrogen remains at manageable temperatures throughout the compression process, preventing thermal damage to downstream cryogenic equipment.

Oil & Gas Well Nitrogen Injection
In oil and gas production operations, high-pressure nitrogen is injected into wells for enhanced oil recovery (EOR), well stimulation, and gas lift operations. The 3ZW-6/30’s 3.00 MPa discharge pressure is sufficient for many shallow to medium-depth well applications, where nitrogen is used to displace oil, reduce reservoir pressure, or lift production fluids to the surface. The oil-free design prevents hydrocarbon contamination of the reservoir, which could alter formation permeability and reduce oil recovery efficiency. The 6 m³/min capacity can support continuous nitrogen injection for extended well stimulation campaigns or intermittent gas lift operations for multiple wells.
材料と構造
The 3ZW-6/30 is constructed from premium materials selected for ultra-high-pressure nitrogen compatibility, thermal resistance, and extended operational life:
| 成分 | 材料 | 仕様 |
|---|---|---|
| Cylinder Block (1st Stage) | ねずみ鋳鉄 | GG25 / HT250, standard wall thickness |
| Cylinder Block (2nd Stage) | ねずみ鋳鉄 | GG25 / HT250, reinforced wall + ribbing |
| Cylinder Block (3rd Stage) | ねずみ鋳鉄 | GG25 / HT250, heavy-duty reinforced wall |
| クランクシャフト | 鍛造合金鋼 | 42CrMo4, Q&T, ISO 1940 G2.5 dynamically balanced |
| ピストンリング | PTFE-ガラス-青銅-MoS₂複合材 | 超高圧対応、自己潤滑式、最高使用温度185℃ |
| ライダーバンド | PTFE複合材 | Piston guidance, anti-scuffing, wear rate <0.04 mm/1000h |
| バルブプレート | ステンレス鋼 | SS316, high-pressure concentric ring design |
| Intercoolers (×2) | 炭素鋼製シェル/SS316製チューブ | ASME VIII Div.1、1.5倍の耐圧試験、30分間保持 |
| アフタークーラー | 炭素鋼製シェル/SS316製チューブ | 高圧フィン付きチューブ、32℃冷却水 |
| 高圧配管 | シームレスステンレス鋼 | SS316、ANSIクラス900フランジ |
すべての圧力支持部品は、以下の基準に厳密に従って設計および製造されています。 ASME BPVC セクション VIII ディビジョン 1 または中国のGB 150規格に準拠しています。すべての溶接継手はASME Section V、Article 2に従って100%放射線検査(RT)を受け、完成した圧力容器はすべて、最大許容使用圧力(MAWP)の1.5倍の圧力で最低30分間の静水圧試験を受けます。高圧配管システムは、3.00 MPaの運転圧力で漏れのない完全性を確保するために、ANSI Class 900フランジ接続を備えたシームレスSS316で製造されています。

設置およびメンテナンスに関するガイドライン
基礎および構造要件
The 3ZW-6/30 has a dry weight of 3.00 tonnes and a center of gravity approximately 800 mm above the baseplate. Thanks to the three-row opposed-cylinder design, unbalanced forces are minimal despite the ultra-high-pressure operation, permitting installation on a reinforced concrete inertia block of 5–6 tonnes. The block should be mounted on elastomeric vibration isolators (natural frequency 7–10 Hz). Minimum clearance requirements: 1.2 m on the non-drive side for valve access, 1.0 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 with spring hangers and anchored to prevent vibration-induced fatigue at 3.00 MPa. All high-pressure connections must be verified with ultrasonic testing after installation.
冷却水システムの設計
冷却水の需要は約 15 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit supplies the cylinder jackets and two intercoolers in parallel branches. Given the three-stage compression and high pressure ratio, the intercoolers are absolutely critical for thermal management and must receive adequate cooling water flow at all times. 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 and chemical treatment is strongly recommended for all installations to ensure consistent water quality and prevent scale formation in the intercoolers.
予防保守スケジュール
| 間隔 | サービス項目 | 対応が必要 |
|---|---|---|
| 毎日 | 運用検査 | Check vibration, abnormal noise, cooling water flow, discharge pressure/temperature at all stages |
| 250時間 | バルブプレート検査(全工程) | Remove and inspect all suction/discharge valves for carbon deposits, spring fatigue, cracking |
| 1,000時間 | ピストンリング摩耗評価(全段階) | Measure groove clearance at all stages; replace rings if clearance exceeds 0.18 mm |
| 2,500時間 | 中間オーバーホール | Replace all piston rings, rider bands, and valve plate assemblies across all three stages |
| 5,000時間 | 大規模な改修 | Inspect crankshaft journals, measure all bearing clearances, replace bearings if >0.06 mm |
The oil-free design of the 3ZW-6/30 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製ピストンリングおよびライダーバンド, which typically achieve 2,500–4,000 hours of service life under clean nitrogen conditions at ultra-high pressure. The high-pressure valve plates (particularly on the third stage) may require more frequent inspection than low-pressure equivalents due to the increased mechanical stress, but the overall maintenance burden remains significantly lower than oil-lubricated systems of equivalent pressure capability.

法令遵守および安全認証
The 3ZW-6/30 nitrogen compressor is designed, manufactured, and tested to meet or exceed the following international standards and regulatory frameworks:
ASME BPVC セクション VIII Div.1、GB 150-2011、PED 2014/68/EU モジュール A
IEC 60034-1(IE3効率)、IEC 60204-1、ISO 12100機械安全規格
ISO 8573-1 クラス0(油分含有量)、TÜVラインランドによる独立試験済み
ISO 9001:2015(品質マネジメント)、ISO 14001:2015(環境マネジメント)
Nitrogen is classified as a simple asphyxiant gas. At 3.00 MPa discharge pressure, the risk of rapid gas release and oxygen displacement is extremely elevated. All 3ZW-6/30 installations must incorporate continuous oxygen deficiency monitoring in the compressor room and all adjacent areas. High-pressure discharge piping must be equipped with pressure relief valves rated at 110% of MAWP and rupture discs as secondary protection, with discharge directed to a safe location. All high-pressure piping must be designed, fabricated, and inspected in accordance with ASME B31.3 (Process Piping). 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 ultra-high-pressure gas safety protocols and wear appropriate PPE before operating or maintaining this equipment. No personnel shall be present in the compressor room during pressure testing or initial startup.

パフォーマンスと効率の分析
The 3ZW-6/30 achieves a 比消費電力は約12.50kW/m³/分 of nitrogen delivered at 3.00 MPa discharge pressure from atmospheric inlet. This specific power figure reflects the thermodynamic reality of ultra-high-pressure compression, where the work required increases substantially with pressure ratio. Within the ultra-high-pressure oil-free piston compressor segment (discharge pressure >2.50 MPa), this efficiency is competitive and significantly superior to diaphragm compressors, which are the primary alternative for oil-free ultra-high-pressure service. For comparison, oil-lubricated reciprocating compressors in similar ultra-high-pressure applications typically consume 13.0–15.0 kW/m³/min, while diaphragm compressors may exceed 18 kW/m³/min.
Over a standard 8,000-hour annual operating schedule, the 3ZW-6/30’s efficiency advantage versus less efficient alternatives yields approximately 72,000–144,000 kWh of annual energy savings. At $0.08/kWh, this represents $5,760–$11,520 in direct electricity cost reduction per year. However, the primary economic justification for the 3ZW-6/30 is typically the 石油関連消耗品の排除と下流の油除去装置の回避 that would be mandatory with lubricated alternatives at this pressure level. The 超高圧窒素圧縮装置の総所有コスト is reduced by an estimated 30–45% over a 10-year operational life when oil-free operation is compared to lubricated systems with full downstream purification.
The absence of oil in the compression path is particularly valuable at ultra-high pressure because oil contamination becomes exponentially more concentrated and more difficult to remove as pressure increases. At 3.00 MPa, the partial pressure of oil vapor would be approximately 15 times higher than at 0.30 MPa, making downstream oil-filtration systems virtually ineffective and prohibitively expensive. The 3ZW-6/30’s native oil-free design eliminates this challenge entirely, ensuring that nitrogen purity is maintained regardless of operating pressure.
カスタマイズおよびOEM対応
We offer comprehensive customization options to adapt the 3ZW-6/30 to specific site conditions, integration requirements, and end-user specifications:
- スキッドマウント型ターンキーパッケージ: Pre-assembled compressor, motor, three intercoolers, aftercooler, high-pressure discharge piping, instrumentation, and control panel on a structural steel skid with integrated lifting lugs and anchor bolt templates. Factory pre-testing of all systems reduces commissioning time by 70%.
- 危険区域構成: 石油化学プラント向けATEX Zone 2およびIECEx規格準拠のモーターおよび電気機器用筐体。ガス検知機能、自動換気インターロック、防爆型計装機器を内蔵。
- 高度なプロセス制御: Optional Siemens S7-1200 or Allen-Bradley CompactLogix PLC with 10-inch HMI touchscreen, remote monitoring via Modbus TCP/IP or OPC-UA, and seamless DCS/SCADA integration. Automatic stage-by-stage pressure monitoring and alarm systems. High-pressure safety interlocks including automatic unload on overpressure and emergency isolation valves on all stages.
- 環境保護: 沿岸設置向けのC5-M海洋グレードコーティング、周囲温度55℃に対応した耐熱電気部品、1メートル地点での騒音を85dB(A)から72dB(A)に低減するIP54規格の防音筐体。
- OEMおよびプライベートブランド: Custom paint colors, branded nameplates, and localized documentation packages for gas equipment distributors and system integrators.
カスタム構成は以下から入手可能です 最小注文数量:1個. Engineering review and proposal generation typically require 5–7 business days. Standard delivery time is 12–14 weeks; repeat orders are delivered in 8–10 weeks from order confirmation.

Case Study: Chemical Synthesis Plant Nitrogen Injection Upgrade
クライアント: A specialty chemical manufacturer in Indonesia operating high-pressure batch reactors for polymer production
チャレンジ: The plant required ultra-high-pressure nitrogen (2.80–3.00 MPa) for reactor inerting and catalyst bed preservation during batch polymerization cycles. Their existing oil-lubricated compressor (imported European brand, 12 years in service) was experiencing severe oil carryover into the nitrogen stream, with contamination levels reaching 5.2 mg/m³. This oil contamination was poisoning the Ziegler-Natta polymerization catalyst, reducing catalyst efficiency by 30% and causing off-specification polymer batches. The oil was also fouling the reactor heat transfer surfaces, requiring quarterly chemical cleaning. Annual maintenance costs had escalated to $65,000.
解決: 私たちは供給しました 3ZW-6/30 oil-free nitrogen compressor as the primary high-pressure nitrogen source, configured on a custom skid with three integrated intercoolers, aftercooler, and a Siemens S7-1200 PLC control panel with stage-by-stage pressure monitoring. The 3.00 MPa discharge pressure met the reactor inerting requirements with a safety margin. The oil-free design eliminated catalyst poisoning and reactor fouling. A 2 m³ surge vessel was installed upstream to buffer demand fluctuations from the batch reactor cycle.
18か月後の定量的な結果:
- 窒素油含有量: Reduced from 5.2 mg/m³ to <0.01 mg/m³ISO 8573-1クラス0を達成
- Catalyst efficiency: Restored to 95% (from 65%), reducing catalyst consumption by 32%
- Off-specification batches: 完全に排除された, saving $45,000/year in rework costs
- Reactor cleaning frequency: Reduced from quarterly to annually, saving $18,000/year
- Annual maintenance cost: Reduced by 48% ($65,000 to $33,800)
- Payback period: 1.6 years based on catalyst savings, rework elimination, and maintenance reduction
“The 3ZW-6/30 has transformed our polymerization process. The elimination of oil contamination has restored our catalyst performance to design levels and eliminated our off-spec batch problem. Our maintenance team now spends their time on preventive activities rather than emergency oil-related repairs. The payback was faster than our finance team projected.” — Production Director, Specialty Chemical Plant

よくある質問と選択ガイド
関連製品およびソリューション
DWシリーズ高圧窒素コンプレッサー
DWシリーズは、0.40MPa~2.00MPaの吐出圧力に対応するように設計されており、窒素注入、高圧パイプライン昇圧、化学合成などの用途に使用できます。処理能力は2~130m³/分です。
ZWシリーズ 多段式オイルフリーコンプレッサー
酸素、窒素、水素、および特殊ガス用の縦型多段式オイルフリーコンプレッサー。最大吐出圧力は9.00MPaで、超高圧ガス充填や化学プロセス用途に対応します。
LWシリーズ大容量窒素コンプレッサー
極低温空気分離装置(ASU)のバックアップ、VPSA(真空圧力調整装置)の昇圧、および産業用パイプライン配管向けに設計された、高流量オイルフリーピストンコンプレッサー(20~130 m³/分)。吐出圧力は0.30~0.80 MPa。
当社の包括的な概要については、 工業用窒素圧縮機 オイルフリー酸素圧縮機、水素圧縮機、二酸化炭素圧縮機、および特注設計の特殊ガスソリューションを含む製品ポートフォリオの詳細については、当社のアプリケーションエンジニアリングチームにお問い合わせいただくか、オンライン製品カタログをご覧ください。
超高圧窒素システムのアップグレードをご検討ですか?
当社のアプリケーションエンジニアが、お客様の窒素流量要件、吸引条件、吐出圧力目標、およびシステム統合上の制約を評価するために待機しております。お問い合わせをいただいてから48時間以内に、無料の技術提案書、基礎レイアウト図、配管計装図(P&ID)、および詳細な総所有コスト(TCO)分析をご提供いたします。
メールアドレス: [email protected] 24時間以内に返信いたします

