LW-9.5/30 Nitrogen Compressor – Oil-Free N2 Booster for 3.00 MPa High-Pressure Process Applications

説明

LW-9.5/30 Nitrogen Compressor – Oil-Free N2 Booster for 3.00 MPa High-Pressure Process Applications

Engineered to deliver 9.5 m³/min at 3.00 MPa discharge pressure, the LW-9.5/30 is a two-stage, three-row oil-free piston nitrogen compressor designed for high-pressure nitrogen injection, gas liquefaction booster duty, and demanding petrochemical process applications. Zero oil contamination, continuous-duty rated, and built for 24/7 industrial reliability at elevated pressure.

LW-9.5/30 nitrogen compressor high pressure oil-free industrial unit

製品概要

LW-9.5/30 nitrogen compressor occupies a critical position in our oil-free piston compressor lineup, engineered specifically for applications demanding both substantial flow capacity and high discharge pressure. With a rated capacity of 9.5 m³/min そして並外れた 3.00 MPaの吐出圧力, this unit addresses the most demanding high-pressure nitrogen boosting requirements in industrial gas processing, chemical synthesis, and petrochemical operations.

What distinguishes the LW-9.5/30 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. This intrinsic oil-free characteristic ensures the nitrogen product stream remains completely uncontaminated, achieving ISO 8573-1 クラス0認証 natively. At 3.00 MPa discharge pressure, the risk of oil vapor carryover is magnified compared to low-pressure applications, making the oil-free design not merely advantageous but absolutely essential for process integrity.

コンプレッサーのアーキテクチャは 二段三列 (二列三级) configuration that optimally distributes the substantial pressure ratio across multiple compression stages. This multi-stage approach is thermodynamically essential for managing the thermal loads associated with 3.00 MPa discharge pressure while preserving the integrity of the PTFE sealing elements. Each stage features an independent intercooler, ensuring gas temperatures remain within safe operating envelopes even during sustained maximum-capacity operation. The robust cast-iron frame and dynamically balanced forged steel crankshaft are rated for a minimum service life of 12万時間 標準的な保守手順に従って。

LW-9.5/30 nitrogen compressor high pressure three stage piston assembly

Technical Specifications – LW-9.5/30

パラメータ 価値 ユニット
モデル LW-9.5/30
パターン 二段三列(二列三级)
容量 9.5 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) 3127 × 1550 × 2543 mm
重さ 3.70 t
110 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. Multi-Stage Compression for Extreme Pressure Ratios

two-stage, three-row (二列三级) architecture of the LW-9.5/30 is thermodynamically essential for achieving the 3.00 MPa discharge pressure target from typical inlet pressures of 0.05–0.10 MPa. The overall pressure ratio of approximately 30:1 to 60:1 is distributed across three compression rows with two inter-stage cooling points. This multi-stage approach limits the discharge temperature of each stage to below 160°C, preventing thermal degradation of the PTFE sealing elements and extending valve plate life by approximately 50% compared to two-stage designs operating at equivalent overall pressure ratios. The three-row configuration also provides superior force balance characteristics, reducing vibration transmission to the foundation.

2. High-Pressure Oil-Free PTFE Composite Sealing

The LW-9.5/30 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 high-density PTFE composites specifically formulated for high-pressure service. These rings are reinforced with glass fiber and bronze particulates to achieve a coefficient of friction below 0.06 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 difficult to remove downstream. The LW-9.5/30’s native oil-free design eliminates this challenge entirely, delivering ISO 8573-1 クラス0認証 without any downstream filtration equipment. The PTFE formulation is rated for continuous operation at temperatures up to 185°C, ensuring reliable sealing integrity under the thermal stress of ultra-high-pressure compression.

3. Reinforced Frame Construction for High-Pressure Loads

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 substantially reinforced wall sections and integral cooling water passages. The high-pressure cylinder features thickened wall castings, additional external ribbing, and stress-relief grooves to withstand the mechanical stresses associated with 3.00 MPa peak pressures. The three-row configuration provides superior inertial force distribution compared to two-row designs, with the additional row contributing to smoother torque delivery and reduced torsional vibration in the crankshaft. This mechanical refinement is particularly valuable for high-pressure compressors where the peak gas forces on the pistons are substantially elevated.

4. 標準380V産業用モータードライブ

The LW-9.5/30 is driven by a 110 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. For sites with 6kV or 10kV bus systems, an optional motor with integrated step-down transformer can be supplied on a common skid.

LW-9.5/30 nitrogen compressor general assembly high pressure three row design

アプリケーションシナリオ

High-Pressure Nitrogen Injection for Chemical Synthesis

In chemical process plants, the LW-9.5/30 provides high-pressure nitrogen for ammonia synthesis loop purging, urea reactor inerting, and methanol synthesis catalyst preservation. The 3.00 MPa discharge pressure is sufficient to inject nitrogen directly into high-pressure chemical reactors operating at 2.0–2.5 MPa, maintaining positive inert gas blankets during all phases of operation. The oil-free design is absolutely critical in chemical synthesis applications because any hydrocarbon contamination would poison precious metal catalysts, degrade product quality, and potentially create hazardous conditions in exothermic reactions.

LW-9.5/30 nitrogen compressor chemical synthesis high pressure injection

Gas Liquefaction & Cryogenic Storage Booster

In nitrogen liquefaction plants and cryogenic storage facilities, the LW-9.5/30 nitrogen booster compresses nitrogen from the liquefier vaporizer or storage tank to the pressure required for distribution, further processing, or transfer to high-pressure storage vessels. The 3.00 MPa discharge pressure is sufficient for feeding nitrogen into cryogenic liquid storage systems, driving nitrogen through high-pressure heat exchangers, and supplying nitrogen to process equipment requiring elevated pressure. The oil-free design prevents contamination of cryogenic equipment and ensures that liquefied nitrogen product meets the stringent purity requirements of food-grade, medical-grade, and electronics-grade applications.

Petrochemical High-Pressure Vessel Inerting & Testing

In petrochemical and refinery operations, the LW-9.5/30 provides high-pressure nitrogen for reactor catalyst preservation, emergency nitrogen injection into high-pressure vessels, hydrostatic testing of process piping, and pipeline pressure testing. The 3.00 MPa discharge pressure is sufficient to inject nitrogen into process vessels operating at pressures up to 2.5 MPa, maintaining positive inert gas blankets during startup, shutdown, and upset conditions. The oil-free certification is mandatory for petrochemical applications where nitrogen contacts catalyst beds or enters process streams that must remain completely hydrocarbon-free.

LW-9.5/30 nitrogen compressor petrochemical high pressure vessel inerting

超臨界流体抽出および処理

In food processing, pharmaceutical manufacturing, and specialty chemical production, supercritical nitrogen is used for extraction of active compounds, particle formation, and precision cleaning of sensitive components. The critical point of nitrogen is 3.39 MPa and -147°C, meaning the LW-9.5/30’s 3.00 MPa discharge pressure brings nitrogen very close to supercritical conditions when combined with moderate cooling. This near-supercritical nitrogen is used for extracting caffeine from coffee, decaffeinating tea, extracting essential oils, and cleaning precision optical components. The oil-free design is non-negotiable in these applications because any hydrocarbon contamination would be extracted along with the target compounds, compromising product purity and safety.

材料と構造

The LW-9.5/30 is constructed from premium materials selected for ultra-high-pressure nitrogen compatibility, thermal resistance, and extended operational life:

成分 材料 仕様
シリンダーブロック(LP) ねずみ鋳鉄 GG25 / HT250, standard wall thickness
Cylinder Block (IP) ねずみ鋳鉄 GG25 / HT250, reinforced wall + ribbing
シリンダーブロック(HP) ねずみ鋳鉄 GG25 / HT250, heavy reinforced wall + stress relief
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 ピストンガイド、耐摩耗性、摩耗率 <0.03 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。

LW-9.5/30 nitrogen compressor factory precision machining and high pressure testing

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 LW-9.5/30 has a dry weight of 3.70 tonnes and a center of gravity approximately 850 mm above the baseplate. Due to the three-row configuration, the unbalanced forces are well-distributed, permitting installation on a 6~8トンの鉄筋コンクリート慣性ブロック. 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 1.8 m overhead for crane access. Special attention must be paid to the high-pressure discharge piping, which must be properly supported, anchored, and stress-relieved to prevent vibration-induced fatigue at 3.00 MPa.

冷却水システムの設計

冷却水の需要は約 22 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit supplies the cylinder jackets and two intercoolers in parallel. Given the extreme pressure ratio, the intercoolers are absolutely critical for thermal management and must receive priority 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 sites with marginal water quality.

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
250時間 バルブプレートの点検 Remove and inspect all stage valves for carbon deposits, spring fatigue, cracking
1,000時間 ピストンリング摩耗評価 Measure groove clearance on all stages; replace rings if clearance exceeds 0.18 mm
3,000時間 中間オーバーホール Replace all piston rings, rider bands, and valve plate assemblies across all stages
6,000時間 大規模な改修 Inspect crankshaft journals, measure all bearing clearances, replace bearings if >0.08 mm

The oil-free design of the LW-9.5/30 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 3,000–5,000 hours of service life under clean nitrogen conditions at high pressure. The high-pressure valve plates on the third stage may require more frequent inspection due to the extreme mechanical stress at 3.00 MPa, but the overall maintenance burden remains significantly lower than oil-lubricated systems.

LW-9.5/30 nitrogen compressor workshop assembly and quality inspection

法令遵守および安全認証

The LW-9.5/30 nitrogen compressor is designed, manufactured, and tested to meet or exceed the following international standards and regulatory frameworks:

圧力機器
ASME BPVC セクション VIII Div.1、GB 150-2011、PED 2014/68/EU モジュール A
電気および機械の安全
IEC 60034-1(IE3効率)、IEC 60204-1、ISO 12100機械安全規格
オイルフリー認証
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
品質と環境
ISO 9001:2015、ISO 14001:2015
⚠️ 重大な安全上の注意 – 超高圧運転

Nitrogen is classified as a simple asphyxiant gas. At 3.00 MPa discharge pressure, the risk of rapid gas release and oxygen displacement is severely elevated. All LW-9.5/30 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. All high-pressure joints must be inspected for leaks using helium mass spectrometry or equivalent methods before commissioning. 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 certified in high-pressure gas safety protocols before operating or maintaining this equipment. High-pressure nitrogen must never be directed toward personnel or unprotected surfaces.

LW-9.5/30 nitrogen compressor ISO certification and compliance documentation

パフォーマンスと効率の分析

The LW-9.5/30 achieves a specific power consumption of approximately 11.58 kW per m³/min of nitrogen delivered at 3.00 MPa discharge pressure. This specific power figure reflects the thermodynamic reality of ultra-high-pressure compression, where the work required increases substantially with pressure ratio. Within the high-pressure oil-free piston compressor segment (discharge pressure >2.50 MPa), this efficiency is competitive and often superior to diaphragm compressors, which are the primary alternative for oil-free ultra-high-pressure service. For comparison, oil-lubricated reciprocating compressors in similar applications typically consume 12.0–14.0 kW/m³/min, while diaphragm compressors may exceed 18 kW/m³/min.

Over a standard 8,000-hour annual operating schedule, the LW-9.5/30’s efficiency advantage versus less efficient alternatives yields approximately 38,000–95,000 kWh of annual energy savings. At $0.08/kWh, this represents $3,040–$7,600 in direct electricity cost reduction per year. However, the primary economic justification for the LW-9.5/30 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 3.00 MPa, the partial pressure of oil vapor is approximately 10 times higher than at 0.30 MPa, making downstream oil removal exponentially more difficult and expensive. 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 multi-stage design also contributes to efficiency by reducing the mean effective temperature and improving volumetric efficiency. The two inter-stage cooling points remove approximately 35% of the heat of compression, reducing the work required in subsequent stages and improving the overall isothermal efficiency of the compression process.

カスタマイズおよびOEM対応

We offer comprehensive customization options to adapt the LW-9.5/30 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, dual intercoolers, aftercooler, high-pressure discharge piping, instrumentation, and control panel on a structural steel skid. All high-pressure joints are factory-tested to 1.5× MAWP before shipment. Reduces field installation to electrical and cooling water connections only.
  • 危険区域構成: ATEX Zone 2 and IECEx compliant motor and electrical enclosures for petrochemical installations. Integrated gas detection, automatic ventilation interlocks, and emergency isolation valves 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 DCS/SCADA integration. High-pressure safety interlocks including automatic unload on overpressure, emergency isolation valves, and staged pressure relief.
  • 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: ガス機器販売業者およびシステムインテグレーター向けに、特注の塗装色、ブランドロゴ入りの銘板、地域に合わせたドキュメントを提供します。

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 5–7 business days. Standard delivery time is 12–14 weeks; expedited delivery within 10 weeks is available for qualifying orders.

LW-9.5/30 nitrogen compressor custom skid mounted high pressure package

Case Study: Chemical Plant High-Pressure Nitrogen System Upgrade

クライアント: A fertilizer manufacturer in Indonesia operating ammonia and urea synthesis plants

チャレンジ: The plant’s existing high-pressure nitrogen supply consisted of an oil-lubricated compressor (20 years in service) feeding the ammonia synthesis loop and urea reactor inerting systems. Oil contamination in the nitrogen stream had reached 2.8 mg/m³, causing progressive poisoning of the iron-based ammonia synthesis catalyst. Catalyst activity had declined by 15% over 18 months, reducing plant output and increasing energy consumption. The catalyst replacement cost was estimated at $450,000, and the plant faced a potential production shutdown.

解決: 私たちは供給しました LW-9.5/30 oil-free nitrogen compressor as the primary high-pressure booster, configured on a custom skid with integrated dual intercoolers, aftercooler, and a Siemens S7-1200 PLC control panel with SCADA integration. The 3.00 MPa discharge pressure met all high-pressure inerting requirements, while the oil-free design eliminated catalyst poisoning. A 2 m³ surge vessel was installed upstream to buffer demand fluctuations from the batch-operated urea reactor inerting system.

24か月後の定量的な結果:

  • 窒素油含有量: Reduced from 2.8 mg/m³ to <0.01 mg/m³ISO 8573-1クラス0を達成
  • Ammonia synthesis catalyst activity: Stabilized, with no further decline observed
  • Avoided catalyst replacement cost: $450,000 (deferred indefinitely)
  • Plant output improvement: Restored to design capacity, increasing revenue by $2.1M/year
  • エネルギー消費量: Improved by 5.2% versus the replaced unit, saving $12,800/year
  • 予期せぬシステム停止: イベントゼロ 24ヶ月間の連続稼働

“The LW-9.5/30 saved our ammonia plant from a catastrophic catalyst replacement and shutdown. The oil-free design has restored our catalyst activity and eliminated the contamination that was destroying our production. This compressor paid for itself in the first six months through avoided catalyst costs alone.” — Chief Engineer, Fertilizer Manufacturing Plant

LW-9.5/30 nitrogen compressor chemical plant installation case study

よくある質問と選択ガイド

What is the expected service life of the LW-9.5/30?

The LW-9.5/30 is engineered for a minimum design life of 12 years (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 on the high-pressure stage typically achieve 2,000–3,500 hours before requiring refurbishment under ultra-high-pressure conditions.

Can the LW-9.5/30 operate from a VPSA nitrogen generator with low inlet pressure?

Yes. The LW-9.5/30 can accommodate 入口圧力の変動範囲:0.03 MPa~0.12 MPa without performance degradation. However, for VPSA applications with significant pressure pulsation, we strongly recommend installing a minimum 2 m³ surge vessel upstream of the compressor suction to dampen cyclic fluctuations and protect the valves from hydraulic shock. An optional pulsation dampener can be fitted for severe pulsation conditions. Note that at very low inlet pressures, the required compression ratio increases, which may reduce the effective capacity marginally.

Is the LW-9.5/30 suitable for outdoor installation?

The standard LW-9.5/30 is designed for 屋内設置 in a ventilated machinery room. For outdoor use, we offer an optional IP54防水筐体 with space heating (for -20°C climates), solar radiation shields (for 55°C ambient), and forced ventilation. The acoustic enclosure option is strongly recommended for outdoor installations to maintain noise compliance with local regulations (typically 75 dB(A) at property boundary).

How does the LW-9.5/30 compare to diaphragm compressors for ultra-high-pressure nitrogen?

Diaphragm compressors offer absolute oil-free compression and can achieve very high pressures (up to 300 MPa), but they suffer from lower capacity, higher specific power consumption, and significantly higher capital cost compared to piston compressors. The LW-9.5/30 delivers 9.5 m³/min at approximately 11.6 kW/m³/min, while an equivalent diaphragm compressor would deliver 2–3 m³/min at 18+ kW/m³/min and cost 4–6 times more. For applications where 3.00 MPa is sufficient, the LW-9.5/30 offers a compelling combination of capacity, efficiency, and cost-effectiveness. For pressures above 4.00 MPa, diaphragm or multi-stage piston compressors become necessary. See our 窒素圧縮機のROI分析 詳細な比較については、こちらをご覧ください。

When should I avoid selecting the LW-9.5/30?

The LW-9.5/30 is NOT recommended for: (1) Discharge pressures above 3.50 MPa(2)より高い圧力要件には、当社のZWマルチステージシリーズまたはダイヤフラムコンプレッサーをご検討ください。 Capacity requirements above 15 m³/min—DWシリーズまたは4MWシリーズの大型モデルは、より優れたスケール効率を提供します。(3) Applications where discharge pressure is consistently below 1.50 MPa—lower-pressure models such as the LW-52/8 or LW-40/4 offer significantly better specific power consumption and should be selected for medium-pressure applications; (4) Continuous flow modulation below 40% of rated capacity—piston compressors are less efficient at deep turndown.

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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。

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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。

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