PSA-H2 Plant

PSA-H2 Plant is a high-efficiency hydrogen purification solution designed to produce ultra-high purity hydrogen for continuous industrial use. Developed by Beijing Peking University Pioneer Technology Corporation Ltd., a state-recognized high-tech enterprise specializing in VPSA and PSA gas separation, PSA-H2 Plant is engineered for users who require dependable hydrogen quality, strong feed gas adaptability, and a practical total cost of ownership.

99%+
Hydrogen Purity
1,000–300,000 Nm³/h
Production Capacity
Wide Feed Gas
Compatibility
Low Cost Process
PSA-H₂ Technology
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Advanced PSA Engineering

Proven PSA-H₂ Technology for Industrial Hydrogen Purification

Engineered and tested across extensive industrial deployments and built on decades of manufacturing expertise in adsorption-based gas separation, PSA-H2 Plant integrates PKU Pioneer’s fast, low-consumption PSA-H2 separation process with independently developed high-efficiency H2 separation adsorbent. This approach enables a simple process configuration with high product purity, high yieldout rate, convenient load adjustment, and lower operating cost, helping users improve energy efficiency and production reliability.

The plant is designed for broad integration across chemical synthesis, refining, and modern coal chemical operations, purifying hydrogen from diverse hydrogen-containing gas mixtures. PKU Pioneer supports complete project delivery from engineering to equipment manufacture and construction, backed by a sophisticated service system and deep R&D capability in adsorbents and catalysts.

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Capabilities

Key Features & Specifications

Technology Brief

PKU Pioneer has developed a fast, low-consumption and high-efficiency PSA-H2 separation process by combining the adsorption characteristics of the independently developed and produced high-efficiency H2 separation adsorbent. The PSA-H2 plant has the characteristics of low investment, high efficiency, simple process, high purity of product gas, high yieldout rate, low operating cost, strong applicability of raw gas and convenient load adjustment by using Pioneer’s new PSA-H2 equipment. By using Pioneer’s new PSA H2 separation technology, H2 can be purified from H2-containing gas mixtures such as shift gas, coke oven gas, semi-water gas, methanol purge gas, methanol cracking gas, ammonia cracking gas, formaldehyde tail gas, refinery reformed gas, refinery FCC dry gas, and refined gas.

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Typical Applications

For Chemical Synthesis

H2 mainly used as intermediate products or raw materials for chemical synthesis, such as ammonia, methanol, ethylene glycol, and photogas synthesis to further generate TDI, MDI, etc.

For Petroleum Refining

H2 used in processes of petroleum refining and petrochemicals, such as hydrocracking, catalytic hydrogenation, hydrorefining, hydrodesulfurization, benzene hydrogenation to cyclohexane, etc.

Modern Coal Chemical Industry

H2 used for direct or indirect synthesis of liquid fuels, olefins and other chemical products, such as direct liquefaction of coal, indirect liquefaction of coal (F-T synthesis), coal to natural gas (methanation), etc.

Used for Reduction

Used as reducing gas in heat treatment and metal hydride production.

Technical Advantages

Advanced PSA-H₂ Technology Advantages

PSA-H₂ Plant is designed with advanced process engineering and proprietary adsorbent technology to deliver efficient, reliable, and cost-effective hydrogen purification.

1

Innovative Process Design

Pioneer’s fast, low-consumption, high-efficiency PSA-H2 separation process successfully solves the existing H2 separation plant’s prevalent problems of high investment, long cycle time and large footprint, significantly improves the PSA-H2 unit’s utilization efficiency and reduces the PSA-H2 plant’s one-time investment and long-term operating costs.

2

Proprietary High-efficiency Adsorbent

Pioneer independently developed and produced high-efficiency adsorbent for H2 separation, with large adsorption capacity, leading performance index and strong adaptability to raw gas.

3

Excellent Product Index

High purity of H2 product gas (up to 99.999%) and high yield of the hydrogen plant are important for users to save energy and increase efficiency.

Project References

Typical Cases

Value Proposition

Key Benefits & Competitive Advantages

Ultra-high hydrogen purity up to 99.999% supports demanding downstream synthesis, refining, and specialty chemical applications.

Wide feed gas adaptability enables hydrogen purification from shift gas, coke oven gas, semi-water gas, methanol purge gas, methanol cracking gas, ammonia cracking gas, formaldehyde tail gas, refinery reformed gas, refinery FCC dry gas, and refined gas.

Lower total project cost supported by low investment positioning, reduced footprint, and a fast, low-consumption separation process designed to improve unit utilization efficiency.

Simple process configuration improves operational reliability and reduces training burden for plant operations teams.

High yieldout rate helps users maximize hydrogen recovery value from hydrogen-containing process gases.

Convenient load adjustment supports variable production scheduling and stable hydrogen supply to downstream units.

Proprietary adsorbent capability improves long-term supply stability and performance consistency, supported by independent development and production.

Project-proven deployment capability demonstrated by typical cases across butyloctanol production, glycol synthesis, and TDI production line hydrogen purification.

Start Your System Design

Reduce dependency on external supply and stabilize your production with VPSA oxygen generation.

Applications

Application Scenarios & Use Cases

Scenario Industry Key Benefit Why This Product
Hydrogen purification from shift gas Chemical and coal chemical Improves hydrogen quality for synthesis and utilities Designed for hydrogen purification from shift gas with high purity up to 99.999%
Coke oven gas hydrogen purification Steel and chemicals co-production Converts hydrogen-containing byproduct gas into valuable H2 product Strong applicability to raw gas and proven PSA separation approach
Methanol purge gas hydrogen recovery Methanol and derivatives Increases hydrogen utilization and reduces vent losses Compatible with methanol purge gas and supports low operating cost
Refinery reformed gas hydrogen purification Petroleum refining Supports hydroprocessing hydrogen demand with stable quality Applicable to refinery reformed gas and designed for continuous industrial operation
Refinery FCC dry gas hydrogen purification Refining and petrochemicals Upgrades mixed gas streams into useful hydrogen product Listed feed gas compatibility and high efficiency PSA separation process
Ammonia cracking gas purification Hydrogen supply and chemicals Produces high purity hydrogen for downstream use Suitable for ammonia cracking gas with excellent product index
Formaldehyde tail gas hydrogen purification Specialty chemicals Recovers hydrogen value from tail gas streams Explicitly suited for formaldehyde tail gas with strong adaptability
Hydrogen for reduction in heat treatment Metallurgy and materials Provides stable reducing atmosphere gas supply Hydrogen used for reduction and purification supports process stability

solutions

Solutions for All Your Oxygen Usage Scenarios

Every sector has unique gas needs. We engineer solutions that fit.

Comparison

Competitive Comparison

Feature/Aspect This Product Typical Alternative
Hydrogen product purity Up to 99.999% Often lower or requires additional polishing steps
Feed gas adaptability ✓ Wide range of hydrogen-containing gas mixtures Often limited to narrow feed compositions
Process efficiency focus Fast, low-consumption PSA-H2 separation process Higher energy consumption or less optimized cycles
Investment profile Low investment positioning Higher capital cost for similar purity targets
Footprint and cycle time challenges Designed to reduce large footprint and long cycle time issues Common industry pain points remain
Operating cost Low operating cost positioning Higher total operating cost
Load adjustment Convenient load adjustment Often less flexible
Delivery experience Typical cases across multiple industries and regions Fewer comparable references
Engineering Depth

Technology & Design Highlights

Fast, Low-Consumption PSA-H2 Separation Process

PSA-H2 Plant applies a fast, low-consumption and high-efficiency PSA-H2 separation process designed to improve unit utilization efficiency and reduce both one-time investment and long-term operating costs. The process is engineered to address prevalent issues in hydrogen separation plants such as high investment, long cycle time, and large footprint, while maintaining stable product hydrogen purity.

Proprietary High-Efficiency H2 Separation Adsorbent

Separation performance is enabled by PKU Pioneer’s independently developed and produced high-efficiency adsorbent for H2 separation. The adsorbent offers large adsorption capacity, leading performance index, and strong adaptability to raw gas, supporting stable purification across varying feed gas sources and operating conditions.

Broad Feed Gas Integration for Industrial Hydrogen Purification

The system is designed for hydrogen purification from multiple industrial gas mixtures, including shift gas, coke oven gas, semi-water gas, methanol purge gas, methanol cracking gas, ammonia cracking gas, formaldehyde tail gas, refinery reformed gas, refinery FCC dry gas, and refined gas. This adaptability supports use across chemicals, refining, and coal chemical value chains.

Product Index Driven Design for Energy Saving and Efficiency

High purity hydrogen product gas up to 99.999% and high yield of the hydrogen plant are core design targets. These indices support users seeking energy saving and efficiency improvement in hydrogen-intensive processes, especially where hydrogen quality directly influences catalyst performance, conversion efficiency, and overall unit stability.

Quality & Compliance

Industry Compliance & Quality Assurance

Beijing Peking University Pioneer Technology Corporation Ltd. was established in 1999 and is a state-recognized high-tech enterprise specializing in VPSA and PSA gas separation and energy-saving and environmental protection technologies, as well as the design, manufacture and engineering construction of complete sets of equipment. The company operates with multiple subsidiaries and maintains an R&D center, pilot base, adsorbent and catalyst production bases, and a Beijing key laboratory of engineering platform, supporting full-cycle capability from materials to complete equipment delivery.

Relying on the College of Chemistry and Molecular Engineering of Peking University and jointly establishing an R&D platform, PKU Pioneer sustains a highly efficient research and development team, rich engineering experience, and a sophisticated service system. The complete set of units developed based on proprietary adsorbents and catalysts supports industrial gas applications across iron and steel, chemical industry, non-ferrous metallurgy, glass and fiberglass, new energy, solid waste, paper making, waste incineration, and water treatment. PKU Pioneer has designed and constructed over 400 large and medium VPSA gas separation and purification plants and projects, with performance indicators reaching the international advanced standard, reinforcing trust in engineering rigor and delivery consistency.

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Worldwide

Global Reach & Target Markets

PSA-H2 Plant is engineered for global hydrogen purification demands across chemical synthesis, petroleum refining, and modern coal chemical industries where stable high purity hydrogen and flexible feed gas handling are critical. With extensive successful case studies and rich experience serving clients across multiple regions, PKU Pioneer supports localization-aware engineering, integration, and service delivery aligned with regional industrial standards, plant safety practices for hydrogen systems, and project execution expectations.

IMG 6426

East Asia

Customer Types: Chemical manufacturers, refineries, steel groups, EPC firms
Industry Focus: Hydrogen purification for synthesis, refining hydrotreating, steel and chemicals co-production
Our Advantage: Deep engineering experience in PSA gas separation and strong materials capability in proprietary adsorbents and catalysts

Southeast Asia

Customer Types: Industrial manufacturers, petrochemical operators, engineering contractors, distributors
Industry Focus: Hydrogen supply for chemical synthesis and refinery upgrades
Our Advantage: Proven ability to integrate PSA purification with varied feed gases and deliver stable high purity hydrogen

Middle East

Customer Types: Refinery and petrochemical operators, EPC firms, industrial utilities, government-linked projects
Industry Focus: Hydrogen purification for hydrocracking, hydrorefining, desulfurization, and petrochemical processing
Our Advantage: Strong fit for continuous operation requirements and cost-focused purification with convenient load adjustment

Europe

Customer Types: Specialty chemical producers, process technology integrators, engineering consultancies
Industry Focus: High purity hydrogen for catalyst-sensitive synthesis chains such as TDI and MDI
Our Advantage: High product purity capability up to 99.999% supports stringent quality requirements and stable catalyst performance

Americas

Customer Types: Refineries, chemical plants, EPC contractors, industrial gas users
Industry Focus: Hydrogen purification from refinery and process off-gases and mixed reformate streams
Our Advantage: Broad feed gas adaptability supports practical integration into existing plants with variable gas compositions
Track Record

Customer Success & Experience

Based on decades of manufacturing expertise and long-term specialization in PSA and VPSA gas separation, PKU Pioneer has delivered hydrogen purification solutions built around proprietary adsorbents and field-validated process design. This hands-on experience supports reliable project execution from front-end design to equipment manufacture, installation coordination, and commissioning support, helping customers achieve stable hydrogen quality and efficient resource utilization.

Typical applications include hydrogen purification supporting butyloctanol production in Shandong, glycol synthesis in Xinjiang, and hydrogen purification for a TDI production line in Fujian. These case types demonstrate cross-industry suitability and practical capability to handle different feed gas sources, operating modes, and downstream hydrogen requirements.

Customers benefit from PKU Pioneer’s integrated capability covering R&D, pilot validation, adsorbent production, and complete equipment engineering construction. This end-to-end capability supports repeatable outcomes, dependable long-term operation, and service responsiveness that improves customer satisfaction and encourages repeat orders across multi-phase expansions and new production lines.

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Support

FAQ

PSA-H2 Plant provides hydrogen purity up to 99.999% with production capacity from 1000Nm3/h to 300,000Nm3/h. This range supports both medium and large hydrogen purification projects across industrial value chains.

The plant can purify hydrogen from shift gas, coke oven gas, semi-water gas, methanol purge gas, methanol cracking gas, ammonia cracking gas, formaldehyde tail gas, refinery reformed gas, refinery FCC dry gas, and refined gas. This broad applicability supports integration into chemical, refining, and coal chemical processes.

The process is designed to be fast, low-consumption, and high-efficiency while maintaining high product gas purity and high yieldout rate. It addresses common industry issues such as high investment, long cycle time, and large footprint.

PKU Pioneer independently develops and produces high-efficiency adsorbent for H2 separation with large adsorption capacity and strong adaptability to raw gas. This supports stable purification performance across varying feed compositions and operating conditions.

Purified hydrogen is widely used in chemical synthesis such as ammonia, methanol, ethylene glycol, and butyl alcohol and in downstream products such as TDI and MDI. It is also used in petroleum refining processes including hydrocracking, catalytic hydrogenation, hydrorefining, hydrodesulfurization, and benzene hydrogenation to cyclohexane.

The PSA-H2 plant is designed for convenient load adjustment. This helps users match hydrogen production to downstream demand changes while maintaining stable hydrogen quality.

Typical cases include a 16920/99% PSA-H2 plant for butyloctanol production in Shandong, a 76000/99.9% PSA-H2 equipment installation for glycol synthesis in Xinjiang, and a 4000/99% hydrogen purification unit for a TDI production line in Fujian. These demonstrate multi-industry suitability and practical deployment capability.

PKU Pioneer provides design, manufacture, and engineering construction capability supported by an R&D center, pilot base, and adsorbent and catalyst production bases. A sophisticated service system supports project delivery and ongoing operational support for industrial users.

OUR PRODUCT

Engineered Solutions Built for Performance

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  • 4-5th Floor, New Times Mansion, No. 7 Huayuan Road, Haidian District, Beijing, China

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