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Non-Cryogenic Air Separation Plants Market - Global Forecast 2025-2032

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    Report

  • 189 Pages
  • November 2025
  • Region: Global
  • 360iResearch™
  • ID: 5888934
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Senior executives navigating industrial gas markets are increasingly evaluating non-cryogenic air separation solutions for gains in efficiency, flexibility, and sustainability. As companies diversify their sourcing strategies and accelerate innovation cycles, non-cryogenic air separation plants deliver operational advantages well aligned with evolving industrial and regulatory requirements.

Market Snapshot: Non-Cryogenic Air Separation Plants Market Overview

The Non-Cryogenic Air Separation Plants Market grew from USD 2.46 billion in 2024 to USD 2.64 billion in 2025. It is expected to continue growing at a CAGR of 7.20%, reaching USD 4.29 billion by 2032. This strong momentum reflects surging demand in chemicals, electronics, healthcare, and metal fabrication sectors, as organizations prioritize cost-effective and energy-efficient alternatives to traditional cryogenic systems. The expanded application of pressure swing adsorption, membrane separation, and vacuum swing adsorption technologies drives the market’s scalable and modular characteristics.

Scope & Segmentation

  • Product Type: Argon (High Purity, Industrial), Nitrogen, Oxygen
  • End Use Industry: Chemicals & Petrochemicals (Fertilizers, Petrochemicals, Pharmaceuticals), Electronics & Semiconductors (LED Manufacturing, Semiconductor Manufacturing), Glass Manufacturing (Container Glass, Flat Glass), Healthcare (Hospitals, Medical Devices), Metal Fabrication (Heat Treatment, Welding & Cutting)
  • Technology: Membrane Separation (Ceramic, Polymeric), PSA (Carbon Molecular Sieve, Zeolite), Vacuum Swing Adsorption
  • Capacity: Large Scale, Medium Scale, Small Scale
  • Application: Gas Enrichment (Nitrogen Enrichment, Oxygen Enrichment), Gas Generation (On-Demand Generation, On-Site Generation), Gas Purification (Carbon Removal, Moisture Removal)
  • Region: Americas (North America: United States, Canada, Mexico; Latin America: Brazil, Argentina, Chile, Colombia, Peru), Europe, Middle East & Africa (Europe: United Kingdom, Germany, France, Russia, Italy, Spain, Netherlands, Sweden, Poland, Switzerland; Middle East: United Arab Emirates, Saudi Arabia, Qatar, Turkey, Israel; Africa: South Africa, Nigeria, Egypt, Kenya), Asia-Pacific (China, India, Japan, Australia, South Korea, Indonesia, Thailand, Malaysia, Singapore, Taiwan)
  • Key Companies: Air Products and Chemicals, Inc., Linde plc, Air Liquide S.A., Messer Group GmbH, Taiyo Nippon Sanso Corporation, Parker Hannifin Corporation, Honeywell International Inc., Koch Membrane Systems, Inc., Generon IGS, Inc., Oxymat A/S

Key Takeaways for Decision-Makers

  • Non-cryogenic air separation plants are increasingly adopted for modular and on-demand gas generation, reducing the need for centralized infrastructure.
  • These systems help manufacturers address logistical challenges related to the transportation and storage of bulk cryogenic gases, especially across diverse geographies.
  • Innovations in membrane and adsorption technologies are leading to reductions in capital and operating expenditures, while improving purity levels and system durability.
  • Decentralized and hybrid deployment models empower organizations to adjust production capacity according to shifting market and operational requirements.
  • Digitalization—ranging from advanced analytics to machine-learning-assisted system management—supports continuous performance optimization and higher uptime.

Tariff Impact and Supply Chain Dynamics

New United States tariffs enacted in 2025 on imported specialized membranes and adsorbent components have prompted manufacturers to reassess sourcing strategies. This has accelerated domestic production of critical components and fostered local partnerships, strengthening supply chain resilience. End-users face increased cost scrutiny and shift towards performance-based contracts, while innovation in the supply chain ecosystem supports ongoing cost optimization.

Methodology & Data Sources

This market study utilizes a combination of comprehensive desk research and in-depth interviews with senior industry figures across regions and market segments. Quantitative data is rigorously triangulated with qualitative insights to ensure robust analysis, and findings are then validated through independent expert input. The methodology ensures actionable clarity for strategy development.

Why This Report Matters

  • Equips leadership teams with clear insights into emerging technologies, regulatory impacts, and evolving segmentation trends within the non-cryogenic air separation sector.
  • Supports strategic planning by evaluating sustainability imperatives, tariff impacts, and localization opportunities in supply chain management.
  • Informs investment prioritization through deep coverage of technological advancements and competitive positioning among key players.

Conclusion

Strategic investments in non-cryogenic air separation technologies allow organizations to meet rising operational and environmental expectations. This report empowers decision-makers to evaluate, deploy, and optimize solutions tailored to market realities and regulatory priorities.

 

Additional Product Information:

  • Purchase of this report includes 1 year online access with quarterly updates.
  • This report can be updated on request. Please contact our Customer Experience team using the Ask a Question widget on our website.

Table of Contents

1. Preface
1.1. Objectives of the Study
1.2. Market Segmentation & Coverage
1.3. Years Considered for the Study
1.4. Currency & Pricing
1.5. Language
1.6. Stakeholders
2. Research Methodology
3. Executive Summary
4. Market Overview
5. Market Insights
5.1. Integration of solar photovoltaic power with non-cryogenic PSA oxygen plants for off-grid industrial applications
5.2. Deployment of advanced zeolite adsorbent materials in PSA systems for enhanced oxygen purity under variable load conditions
5.3. Adoption of IoT-enabled predictive maintenance platforms for continuous performance of non-cryogenic air separation units
5.4. Commercialization of modular membrane oxygen generators for decentralized medical and low-capacity industrial sites
5.5. Development of hybrid VPSA-PSA technologies to optimize energy consumption in small-scale gas separation operations
5.6. Use of non-cryogenic nitrogen generators in modified atmosphere packaging to extend shelf life of perishable goods
6. Cumulative Impact of United States Tariffs 2025
7. Cumulative Impact of Artificial Intelligence 2025
8. Non-Cryogenic Air Separation Plants Market, by Product Type
8.1. Argon
8.1.1. High Purity
8.1.2. Industrial
8.2. Nitrogen
8.3. Oxygen
9. Non-Cryogenic Air Separation Plants Market, by End Use Industry
9.1. Chemicals & Petrochemicals
9.1.1. Fertilizers
9.1.2. Petrochemicals
9.1.3. Pharmaceuticals
9.2. Electronics & Semiconductors
9.2.1. LED Manufacturing
9.2.2. Semiconductor Manufacturing
9.3. Glass Manufacturing
9.3.1. Container Glass
9.3.2. Flat Glass
9.4. Healthcare
9.4.1. Hospitals
9.4.2. Medical Devices
9.5. Metal Fabrication
9.5.1. Heat Treatment
9.5.2. Welding & Cutting
10. Non-Cryogenic Air Separation Plants Market, by Technology
10.1. Membrane Separation
10.1.1. Ceramic
10.1.2. Polymeric
10.2. PSA
10.2.1. Carbon Molecular Sieve
10.2.2. Zeolite
10.3. Vacuum Swing Adsorption
11. Non-Cryogenic Air Separation Plants Market, by Capacity
11.1. Large Scale
11.2. Medium Scale
11.3. Small Scale
12. Non-Cryogenic Air Separation Plants Market, by Application
12.1. Gas Enrichment
12.1.1. Nitrogen Enrichment
12.1.2. Oxygen Enrichment
12.2. Gas Generation
12.2.1. On-Demand Generation
12.2.2. On-Site Generation
12.3. Gas Purification
12.3.1. Carbon Removal
12.3.2. Moisture Removal
13. Non-Cryogenic Air Separation Plants Market, by Region
13.1. Americas
13.1.1. North America
13.1.2. Latin America
13.2. Europe, Middle East & Africa
13.2.1. Europe
13.2.2. Middle East
13.2.3. Africa
13.3. Asia-Pacific
14. Non-Cryogenic Air Separation Plants Market, by Group
14.1. ASEAN
14.2. GCC
14.3. European Union
14.4. BRICS
14.5. G7
14.6. NATO
15. Non-Cryogenic Air Separation Plants Market, by Country
15.1. United States
15.2. Canada
15.3. Mexico
15.4. Brazil
15.5. United Kingdom
15.6. Germany
15.7. France
15.8. Russia
15.9. Italy
15.10. Spain
15.11. China
15.12. India
15.13. Japan
15.14. Australia
15.15. South Korea
16. Competitive Landscape
16.1. Market Share Analysis, 2024
16.2. FPNV Positioning Matrix, 2024
16.3. Competitive Analysis
16.3.1. Air Products and Chemicals, Inc.
16.3.2. Linde plc
16.3.3. Air Liquide S.A.
16.3.4. Messer Group GmbH
16.3.5. Taiyo Nippon Sanso Corporation
16.3.6. Parker Hannifin Corporation
16.3.7. Honeywell International Inc.
16.3.8. Koch Membrane Systems, Inc.
16.3.9. Generon IGS, Inc.
16.3.10. Oxymat A/S

Companies Mentioned

The companies profiled in this Non-Cryogenic Air Separation Plants market report include:
  • Air Products and Chemicals, Inc.
  • Linde plc
  • Air Liquide S.A.
  • Messer Group GmbH
  • Taiyo Nippon Sanso Corporation
  • Parker Hannifin Corporation
  • Honeywell International Inc.
  • Koch Membrane Systems, Inc.
  • Generon IGS, Inc.
  • Oxymat A/S

Table Information