説明
LW-16.5/13 Nitrogen Compressor – Medium-Flow High-Pressure Oil-Free N2 Booster for Demanding Industrial Applications
Engineered to deliver 16.5 m³/min at 1.30 MPa discharge pressure, the LW-16.5/13 is a two-stage, two-row oil-free piston nitrogen compressor purpose-built for high-pressure nitrogen injection, chemical synthesis, and specialized industrial gas distribution where elevated pressure and uncompromised purity converge. Zero lubricant contamination, continuous-duty rated, and optimized for 24/7 operation in the most demanding process environments.

製品概要
の LW-16.5/13 nitrogen compressor occupies a specialized niche within our oil-free piston compressor portfolio, bridging the gap between medium-flow capacity and high-pressure discharge requirements. With a rated capacity of 16.5 m³/min and an elevated discharge pressure of 1.30 MPa, this unit is engineered for process applications where nitrogen must be delivered at pressures substantially higher than conventional distribution headers.
What distinguishes the LW-16.5/13 from standard nitrogen compressors is its ability to achieve 1.30 MPa discharge pressure while maintaining complete oil-free integrity throughout the compression path. The piston rings and rider bands are fabricated from high-performance self-lubricating PTFE composites specifically formulated for elevated pressure and temperature conditions. This ensures the nitrogen stream remains completely free of hydrocarbon contamination, achieving ISO 8573-1 クラス0認証 without any downstream purification equipment. For chemical synthesis, high-pressure reactor inerting, and specialty gas applications, this native purity is non-negotiable.
The compressor utilizes a 二段二列 (二列二级) configuration that is thermodynamically essential for managing the substantial pressure ratio required to reach 1.30 MPa. The pressure ratio is optimally distributed between a low-pressure cylinder and a high-pressure cylinder, with an inter-stage cooler removing the heat of compression between stages. This staged approach limits the discharge temperature of each stage to below 160°C, preserving the dimensional stability of the PTFE sealing elements and extending valve plate service life. The robust cast-iron frame and precision-balanced forged steel crankshaft are rated for a minimum operational life of 12万時間 標準的な保守手順に従って。

Technical Specifications – LW-16.5/13
| パラメータ | 価値 | ユニット |
|---|---|---|
| モデル | LW-16.5/13 | – |
| パターン | 二段二列 (二列二级) | – |
| 容量 | 16.5 | m³/分 |
| 吐出圧力 | 1.30 | MPa |
| コンプレッサーのサイズ(長さ×幅×高さ) | 2675 × 1550 × 2520 | mm |
| 重さ | 3.00 | t |
| 力 | 160 | 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. High-Pressure Oil-Free PTFE Sealing Technology
The LW-16.5/13 employs an advanced 自己潤滑ピストンリングおよびライダーバンドシステム manufactured from high-density PTFE composites reinforced with glass fiber, carbon fiber, and bronze particulates. This specialized formulation is engineered for the elevated pressures and temperatures associated with 1.30 MPa discharge operation, achieving a coefficient of friction below 0.06 without any hydrocarbon lubrication. The rings maintain dimensional stability up to 190°C, ensuring reliable sealing performance even during sustained high-pressure operation. For chemical process operators, this delivers native ISO 8573-1 Class 0 compliance without downstream oil-filtration capital expenditure or maintenance burden.
2. Two-Stage Compression for Extreme Pressure Ratios
の 2段階圧縮アーキテクチャ is not merely beneficial but essential for achieving 1.30 MPa discharge pressure from near-atmospheric inlet conditions. The pressure ratio is divided between a low-pressure cylinder and a high-pressure cylinder, with a high-efficiency shell-and-tube intercooler removing the heat of compression between stages. This staged approach limits the discharge temperature of each stage to below 160°C, preventing thermal degradation of the PTFE sealing elements and extending valve plate service life by approximately 50% compared to single-stage designs attempting equivalent pressure ratios. The intercooler is oversized for the duty, providing a safety margin during ambient temperature excursions.
3. コンパクトながら堅牢なフレーム構造
メインフレームは鋳造されています GG25 グレー鋳鉄 (equivalent to ASTM A48 Class 30B) with integral cooling water passages. Despite the high-pressure capability, the LW-16.5/13 maintains a relatively compact footprint of 2675 × 1550 × 2520 mm and a weight of just 3.00 tonnes. The two-row opposed-cylinder arrangement provides inherent first-order force cancellation, reducing vibration transmission and permitting installation on a modest reinforced concrete inertia block of 5–6 tonnes. This compactness is particularly advantageous for retrofit installations in existing chemical plants and process facilities where space and foundation capacity are limited.
4. 標準380V産業用モータードライブ
The LW-16.5/13 is driven by a 160 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 infrastructure, step-down transformers, or specialized switchgear. This electrical simplicity reduces both capital expenditure and commissioning complexity, making the LW-16.5/13 an attractive upgrade path for facilities transitioning from bottled high-pressure nitrogen or hydraulic gas boosters to continuous on-site compression.

アプリケーションシナリオ
High-Pressure Chemical Synthesis & Reactor Inerting
In chemical manufacturing facilities, the LW-16.5/13 provides high-pressure nitrogen for reactor inerting, catalyst bed preservation, and emergency nitrogen injection into process vessels operating at elevated pressures. The 1.30 MPa discharge pressure is sufficient to overcome the internal pressure of most batch reactors, autoclaves, and high-pressure synthesis loops, allowing direct nitrogen injection without intermediate boosting. The oil-free design is absolutely critical in chemical synthesis because any hydrocarbon contamination would poison precious metal catalysts, initiate unwanted side reactions, or compromise product purity in fine chemical and pharmaceutical manufacturing.
![]()
High-Pressure VPSA Nitrogen Boosting
For VPSA nitrogen generators producing high-purity nitrogen at near-atmospheric pressure, the LW-16.5/13 nitrogen booster compresses the low-pressure product to 1.30 MPa for high-pressure distribution to demanding process consumers. The 16.5 m³/min capacity is well-matched to medium-scale VPSA installations serving chemical plants, specialty gas facilities, and high-pressure blanketing applications. The oil-free compression path protects the carbon molecular sieve from hydrocarbon poisoning, preserving adsorbent life and maintaining nitrogen purity.
Oil & Gas Pipeline Purging & Pressure Testing
In oil and gas pipeline construction and maintenance, nitrogen is used for pipeline purging, hydrostatic test displacement, and dried-inert gas packing before commissioning. The LW-16.5/13’s 1.30 MPa discharge pressure is adequate for purging medium-diameter pipelines (up to 24-inch nominal bore) and for hydrotest displacement in pipelines operating at pressures up to 10 MPa. The oil-free design prevents hydrocarbon contamination of pipeline interiors, which is essential for gas transmission pipelines where even trace oil residues could foul gas quality meters, compressor stations, and end-user equipment.

Specialty Gas & Cylinder Filling Operations
Specialty gas facilities and industrial gas distributors require high-pressure nitrogen for cylinder filling, bundle charging, and gas mixture preparation. The LW-16.5/13’s 1.30 MPa discharge pressure is sufficient to fill high-pressure nitrogen cylinders (typically 15 MPa working pressure) through a multi-stage gas booster or compressor cascade. The oil-free certification ensures that filled cylinders meet the purity specifications of analytical grade, ultra-high purity, and research-grade nitrogen without requiring additional purification steps.
材料と構造
The LW-16.5/13 is constructed from premium materials selected for high-pressure nitrogen compatibility, elevated temperature resistance, and extended operational life:
| 成分 | 材料 | 仕様 |
|---|---|---|
| シリンダーブロック | ねずみ鋳鉄 | GG25 / HT250, integral cooling water jackets |
| 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-Glass-Carbon-Bronze Composite | Self-lubricating, high-temp rated to 190°C |
| 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, concentric ring spring-loaded, high-pressure rated |
| コネクティングロッド | 鍛造鋼製、バビットメタルベアリング使用 | 精密加工されたオイル潤滑式ビッグエンド |
| インタークーラー | 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 | Finned tube design, 32°C cooling water rated |
| 高圧配管 | Seamless Carbon Steel | ASTM A106 Grade B, 1.5× design pressure rated |
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 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.

設置およびメンテナンスに関するガイドライン
Foundation & Spatial Requirements
The LW-16.5/13 has a dry weight of 3.00 tonnes and a center of gravity approximately 800 mm above the baseplate. The two-row opposed-cylinder design provides excellent force balance, allowing installation on a reinforced concrete inertia block of 5–6 tonnes. The block should be mounted on elastomeric vibration isolators (natural frequency 8–12 Hz) to prevent vibration transmission. Required clearances: 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 during major overhauls. The compact footprint makes the LW-16.5/13 suitable for installation in existing machinery rooms with limited floor space.
冷却水システムの設計
冷却水の需要は約 18 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit supplies the cylinder jackets and intercooler in parallel branches. 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. For sites with marginal water quality, a compact closed-loop cooling tower with side-stream filtration is recommended to prevent scale formation and corrosion in the high-pressure cooling circuits.
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 levels, abnormal noise, cooling water flow, discharge temperature and pressure |
| 250時間 | バルブプレートの点検 | Remove and inspect suction/discharge valves for carbon deposits, spring fatigue, or cracking |
| 1,000時間 | ピストンリング摩耗評価 | リング溝のクリアランスを測定し、クリアランスが0.20mmを超える場合はリングを交換してください。 |
| 4,000時間 | 中間オーバーホール | ピストンリング、ライダーバンド、バルブプレートアセンブリをすべて交換してください。 |
| 8,000時間 | 大規模な改修 | Inspect crankshaft journals, measure main bearing clearances, replace bearings if >0.08 mm |
The oil-free design of the LW-16.5/13 dramatically simplifies maintenance compared to lubricated alternatives. There are no oil changes to schedule, no lubricating oil samples to analyze, no oil filter elements to replace, and no oil separator cartridges to monitor. The only 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 4,000–6,000 hours of service life under clean nitrogen conditions. At 1.30 MPa discharge pressure, ring wear rates are slightly elevated compared to low-pressure operation, and we recommend adhering to the 4,000-hour replacement interval for optimal reliability.

法令遵守および安全認証
The LW-16.5/13 nitrogen compressor is designed, manufactured, and tested to meet 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 1.30 MPa discharge pressure, the risk of rapid nitrogen release and oxygen displacement is significantly elevated. All LW-16.5/13 installations must incorporate continuous oxygen deficiency monitoring in the compressor room and all adjacent areas. Ventilation systems must be engineered to maintain ambient oxygen concentrations above 19.5% volume per OSHA 29 CFR 1910.146. Emergency shutdown interlocks should activate at 19.5% O₂ (alarm) and trigger automatic compressor isolation at 18.0% O₂ (hard shutdown). High-pressure nitrogen piping must be designed, fabricated, and inspected in accordance with ASME B31.3 Process Piping standards. All personnel working on high-pressure nitrogen systems must be trained in pressure safety and asphyxiation hazards.

パフォーマンスと効率の分析
The LW-16.5/13 achieves a specific power consumption of approximately 9.70 kW per m³/min of nitrogen delivered at 1.30 MPa discharge pressure. This specific power reflects the thermodynamic penalty associated with the high pressure ratio required to reach 1.30 MPa from near-atmospheric inlet conditions. While higher than low-pressure compressors, this efficiency is competitive within the high-pressure oil-free piston compressor segment. For comparison, oil-lubricated screw compressors operating at equivalent pressure ratios typically consume 10.5–12.0 kW/m³/min, and hydraulic gas boosters (often used for high-pressure nitrogen) can exceed 15 kW/m³/min.
Over a standard 8,000-hour annual operating schedule, the LW-16.5/13’s efficiency advantage versus less efficient alternatives yields approximately 66,000–132,000 kWh of annual energy savings. At $0.08/kWh, this represents $5,280–$10,560 in direct electricity cost reduction per year. However, the primary economic justification for the LW-16.5/13 typically stems from the 石油関連消耗品の排除と下流精製装置の回避 rather than marginal energy savings. The total cost of ownership for high-pressure nitrogen compression is reduced by an estimated 25–35% over a 10-year operational life when compared to oil-lubricated alternatives requiring extensive downstream purification.
The oil-free design also eliminates the energy penalty of downstream oil-removal equipment. A typical oil-lubricated high-pressure compressor requires multi-stage coalescing filters, activated carbon adsorbers, and continuous oil monitoring instrumentation that collectively consume 4–6% of the compressor’s power output. The LW-16.5/13’s native oil-free certification removes this parasitic load entirely, improving effective system efficiency and reducing electrical infrastructure requirements.
カスタマイズおよびOEM対応
We offer comprehensive customization options to adapt the LW-16.5/13 to specific process requirements, site conditions, and integration constraints:
- スキッドマウント型ターンキーパッケージ: The compressor, motor, intercooler, aftercooler, high-pressure instrumentation, and control panel are pre-assembled on a structural steel skid with integrated lifting lugs and anchor bolt templates. Factory pre-testing of all systems reduces field commissioning time by approximately 60% and minimizes startup risks.
- 危険区域構成: ATEX Zone 2 and IECEx compliant motor and electrical enclosures are available for installations in chemical facilities where explosive atmospheres may occasionally be present. Integrated gas detection and automatic ventilation interlocks can be incorporated into the control system.
- 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 integration with plant DCS/SCADA systems. Automatic load/unload control and variable frequency drive (VFD) compatibility optimize part-load efficiency and reduce mechanical stress during startup.
- High-Pressure Package Options: Integrated high-pressure nitrogen receivers (up to 2.0 m³ at 1.6 MPa), pressure regulation stations, and distribution manifolds can be supplied on the common skid, creating a complete high-pressure nitrogen supply system.
- 環境保護: C5-M marine-grade coating systems for coastal installations; tropicalized electrical components for ambient temperatures up to 55°C; and IP54-rated acoustic enclosures reducing noise from 84 dB(A) to 70 dB(A) at 1 meter.
- 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 proposals are typically delivered within 3–5 business days. Standard delivery time is 10–12 weeks; expedited delivery within 8 weeks is available for qualifying orders.

Case Study: Chemical Plant Reactor Inerting System Upgrade
クライアント: A specialty chemical manufacturer in Eastern China operating batch reactors for pharmaceutical intermediates
チャレンジ: The client’s existing nitrogen supply relied on a bank of high-pressure cylinders (15 MPa) manifolded together to feed reactor inerting systems at 1.20 MPa. Monthly cylinder consumption reached 120 cylinders, with handling labor, delivery scheduling, and cylinder rental fees consuming $180,000 annually. The cylinder supply was also unreliable during peak demand periods, causing production delays. Additionally, residual oil contamination from the cylinder filling station was detected in the nitrogen stream, compromising catalyst performance in hydrogenation reactors.
解決: 私たちは供給しました LW-16.5/13 oil-free nitrogen compressor paired with a small VPSA nitrogen generator (99.9% purity, 18 m³/min) on a common skid. The LW-16.5/13 compresses the VPSA product to 1.30 MPa, feeding the reactor inerting header directly. A 1.5 m³ high-pressure receiver was integrated on the skid to buffer demand fluctuations during batch reactor cycles. The oil-free design eliminated catalyst contamination, while the on-site generation eliminated cylinder dependency.
18か月後の定量的な結果:
- Nitrogen supply cost: Reduced by 58% ($180,000 to $75,600/year) versus cylinder supply
- Cylinder handling labor: 完全に排除された, saving 480 man-hours/year
- Catalyst contamination incidents: Reduced from 3 per year to zero, improving batch yield consistency
- Production delays due to gas shortage: 脱落, improving on-time delivery from 92% to 99.5%
- Nitrogen purity: Consistently >99.9% with oil content <0.01 mg/m³, achieving ISO 8573-1 Class 0
- 返済期間: 2.1 years based on gas cost and labor savings alone
“The LW-16.5/13 has eliminated our cylinder dependency and improved our process reliability dramatically. The oil-free certification gives us confidence that our catalysts are protected, and our production schedule is no longer hostage to gas delivery trucks.” — Plant Manager, Specialty Chemical Facility

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
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 applications. Capacities from 2 to 130 m³/min with two-stage and multi-stage configurations.
ZWシリーズ 多段式オイルフリーコンプレッサー
Vertical, multi-stage oil-free compressors for oxygen, nitrogen, hydrogen, and specialty gases. Discharge pressures up to 9.00 MPa for high-pressure gas filling, cylinder charging, and chemical process applications.
LWシリーズ大容量窒素コンプレッサー
High-flow oil-free piston compressors (20–130 m³/min) for cryogenic ASU backup, VPSA boosting, and industrial pipeline distribution. Discharge pressures from 0.30 to 1.30 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。
Ready to Upgrade Your High-Pressure Nitrogen System?
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


