A man stands while two people sit at a table in an office setting, smiling and engaged in conversation. The mood is friendly and collaborative.

Solution

Solution

Solution

Flexible Solutions for the Hardest-to-Abate Industries

ZEFIRA enables practical decarbonization across the carbon, hydrogen, and biogenic value chains — converting captured CO₂, renewable hydrogen, or biogenic resources into sustainable fuels and materials.

A man stands while two people sit at a table in an office setting, smiling and engaged in conversation. The mood is friendly and collaborative.

Solution

Flexible Solutions for the Hardest-to-Abate Industries

ZEFIRA enables practical decarbonization across the carbon, hydrogen, and biogenic value chains — converting captured CO₂, renewable hydrogen, or biogenic resources into sustainable fuels and materials.

The Industrial Challenge

The Industrial Challenge

The Industrial Challenge

Where Emissions Are Hardest to Eliminate

From steel and chemicals to aviation and shipping, many industries still depend on fossil feedstocks and centralized production assets.

Their emissions remain difficult to abate because current alternatives are often costly, energy-intensive, or not yet scalable.

ZEFIRA bridges this gap with modular process systems that combine advanced membranes and plasma modules.

These systems integrate seamlessly into existing plants and operate efficiently with renewable energy or low-carbon feedstocks such as captured CO₂ and biogenic resources.

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Our Approach

Our Approach

Our Approach

Our Approach

Modular, Circular, Electrified.

ZEFIRA is building a modular technology platform rooted in advanced carbon-membrane systems. These membranes are designed to capture, separate, and convert carbon, hydrogen, and syngas streams, helping industries cut emissions and produce low-carbon fuels and chemicals.

Building on this foundation, ZEFIRA is extending its membrane expertise into plasma modules, where selective separation becomes the key to unlocking efficient, fully electrified conversion. This next step applies our core know-how in molecular control to create compact plasma systems for carbon and syngas transformation, paving the way toward defossilized fuels and feedstocks.

Together, these technologies deliver scalable, flexible solutions for on-site decarbonization practical today and ready for tomorrow’s energy landscape.

Our approach helps industrial partners to:

‒ Achieve on-site decarbonization without major plant redesign.

‒ Increase efficiency through selective conversion and recovery.

‒ Reduce emissions and recycle loads.

‒ Operate efficiently alongside variable renewable-power supply.

Industry Applications

Industry Applications

Industry Applications

Delivering Impact Where It Matters Most

ZEFIRA’s platform is designed to adapt across multiple industrial ecosystems from process-gas recycling to renewable-fuel synthesis. Each application leverages the same membrane and plasma expertise, tailored to the specific chemistry, pressure, and energy context of the sector

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Steel, Chemical, and Refining Industries

ZEFIRA enables circular use of process gases in some of the world’s toughest industrial environments. Its high-resistance carbon membranes recover hydrogen and CO₂ from blast-furnace and DRI off-gases, from ammonia and methanol synthesis loops, and from refinery off-gases, where heat, pressure, and impurities challenge conventional materials.

By recycling these molecules within existing process loops, ZEFIRA helps industries cut emissions, reduce hydrogen demand, and improve overall conversion efficiency across steelmaking, chemical, and refining operations.

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Steel, Chemical, and Refining Industries

ZEFIRA enables circular use of process gases in some of the world’s toughest industrial environments. Its high-resistance carbon membranes recover hydrogen and CO₂ from blast-furnace and DRI off-gases, from ammonia and methanol synthesis loops, and from refinery off-gases, where heat, pressure, and impurities challenge conventional materials.

By recycling these molecules within existing process loops, ZEFIRA helps industries cut emissions, reduce hydrogen demand, and improve overall conversion efficiency across steelmaking, chemical, and refining operations.

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Steel, Chemical, and Refining Industries

ZEFIRA enables circular use of process gases in some of the world’s toughest industrial environments. Its high-resistance carbon membranes recover hydrogen and CO₂ from blast-furnace and DRI off-gases, from ammonia and methanol synthesis loops, and from refinery off-gases, where heat, pressure, and impurities challenge conventional materials.

By recycling these molecules within existing process loops, ZEFIRA helps industries cut emissions, reduce hydrogen demand, and improve overall conversion efficiency across steelmaking, chemical, and refining operations.

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Steel, Chemical, and Refining Industries

ZEFIRA enables circular use of process gases in some of the world’s toughest industrial environments. Its high-resistance carbon membranes recover hydrogen and CO₂ from blast-furnace and DRI off-gases, from ammonia and methanol synthesis loops, and from refinery off-gases, where heat, pressure, and impurities challenge conventional materials.

By recycling these molecules within existing process loops, ZEFIRA helps industries cut emissions, reduce hydrogen demand, and improve overall conversion efficiency across steelmaking, chemical, and refining operations.

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Aviation & Shipping

Aviation and maritime transport need drop-in fuels that cut carbon without changing engines or infrastructure.

ZEFIRA’s membrane technology supports both Power-to-X and bio-based routes to renewable methanol, dimethyl ether (DME), and sustainable aviation fuel (SAF).

By improving efficiency in key synthesis steps such as reverse water-gas shift, methanol or DME synthesis, and ethanol-to-ethylene conversion, ZEFIRA enables more compact and scalable production units.

For SAF, our technology acts as a key enabler for Fischer–Tropsch and alcohol-to-jet pathways, helping industry bring defossilized fuels to market faster and at lower cost.

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Aviation & Shipping

Aviation and maritime transport need drop-in fuels that cut carbon without changing engines or infrastructure.

ZEFIRA’s membrane technology supports both Power-to-X and bio-based routes to renewable methanol, dimethyl ether (DME), and sustainable aviation fuel (SAF).

By improving efficiency in key synthesis steps such as reverse water-gas shift, methanol or DME synthesis, and ethanol-to-ethylene conversion, ZEFIRA enables more compact and scalable production units.

For SAF, our technology acts as a key enabler for Fischer–Tropsch and alcohol-to-jet pathways, helping industry bring defossilized fuels to market faster and at lower cost.

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Aviation & Shipping

Aviation and maritime transport need drop-in fuels that cut carbon without changing engines or infrastructure.

ZEFIRA’s membrane technology supports both Power-to-X and bio-based routes to renewable methanol, dimethyl ether (DME), and sustainable aviation fuel (SAF).

By improving efficiency in key synthesis steps such as reverse water-gas shift, methanol or DME synthesis, and ethanol-to-ethylene conversion, ZEFIRA enables more compact and scalable production units.

For SAF, our technology acts as a key enabler for Fischer–Tropsch and alcohol-to-jet pathways, helping industry bring defossilized fuels to market faster and at lower cost.

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Aviation & Shipping

Aviation and maritime transport need drop-in fuels that cut carbon without changing engines or infrastructure.

ZEFIRA’s membrane technology supports both Power-to-X and bio-based routes to renewable methanol, dimethyl ether (DME), and sustainable aviation fuel (SAF).

By improving efficiency in key synthesis steps such as reverse water-gas shift, methanol or DME synthesis, and ethanol-to-ethylene conversion, ZEFIRA enables more compact and scalable production units.

For SAF, our technology acts as a key enabler for Fischer–Tropsch and alcohol-to-jet pathways, helping industry bring defossilized fuels to market faster and at lower cost.

03

Biogas & Waste Valorisation

Biogas and waste gases are valuable renewable-carbon resources, yet their variable composition and small scale often limit their use.

ZEFIRA’s membrane technology upgrades and purifies these streams, turning CO₂-rich biogas into high-value syngas or renewable feedstocks for methanol and DME synthesis.

Looking ahead, ZEFIRA is extending this know-how to plasma-assisted reforming, aiming to electrify biogas conversion and unlock new pathways for fully renewable fuel production. Together, these solutions make carbon recycling practical, local, and circular.

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Biogas & Waste Valorisation

Biogas and waste gases are valuable renewable-carbon resources, yet their variable composition and small scale often limit their use.

ZEFIRA’s membrane technology upgrades and purifies these streams, turning CO₂-rich biogas into high-value syngas or renewable feedstocks for methanol and DME synthesis.

Looking ahead, ZEFIRA is extending this know-how to plasma-assisted reforming, aiming to electrify biogas conversion and unlock new pathways for fully renewable fuel production. Together, these solutions make carbon recycling practical, local, and circular.

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Biogas & Waste Valorisation

Biogas and waste gases are valuable renewable-carbon resources, yet their variable composition and small scale often limit their use.

ZEFIRA’s membrane technology upgrades and purifies these streams, turning CO₂-rich biogas into high-value syngas or renewable feedstocks for methanol and DME synthesis.

Looking ahead, ZEFIRA is extending this know-how to plasma-assisted reforming, aiming to electrify biogas conversion and unlock new pathways for fully renewable fuel production. Together, these solutions make carbon recycling practical, local, and circular.

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Biogas & Waste Valorisation

Biogas and waste gases are valuable renewable-carbon resources, yet their variable composition and small scale often limit their use.

ZEFIRA’s membrane technology upgrades and purifies these streams, turning CO₂-rich biogas into high-value syngas or renewable feedstocks for methanol and DME synthesis.

Looking ahead, ZEFIRA is extending this know-how to plasma-assisted reforming, aiming to electrify biogas conversion and unlock new pathways for fully renewable fuel production. Together, these solutions make carbon recycling practical, local, and circular.

Benefits for Partners

Benefits for Partners

Benefits for Partners

Benefits for Partners

Measurable Impact, Immediate Results

ZEFIRA’s modular systems deliver tangible performance gains — improving efficiency, flexibility, and integration while reducing operating costs.

Up to 35 % higher conversion efficiency in reactive systems

Up to 50 % lower energy use and OPEX through reduced pressure and recycle requirements

‒ Compact design, cutting CAPEX and footprint

‒ Easy integration into existing industrial assets

‒ Flexible operation, aligned with renewable-power supply

Quote: “ZEFIRA’s modular systems bring deep decarbonization within industrial reach.”

a large industrial building with a lot of pipes
a large industrial building with a lot of pipes
a large industrial building with a lot of pipes
a large industrial building with a lot of pipes
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How We Work

How We Work

How We Work

How We Work

From Concept to Deployment

ZEFIRA works hand-in-hand with industrial and research partners to design, validate, and scale decarbonization solutions based on our modular technology platform.

Each collaboration is tailored to project goals but typically includes:

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Flawless Execution Process

We believe that great design is only as good as its execution. Our flawless execution process ensures that every detail, from material selection to final installation.

Flawless Execution Process

We believe that great design is only as good as its execution. Our flawless execution process ensures that every detail, from material selection to final installation.

Flawless Execution Process

We believe that great design is only as good as its execution. Our flawless execution process ensures that every detail, from material selection to final installation.

Flawless Execution Process

We believe that great design is only as good as its execution. Our flawless execution process ensures that every detail, from material selection to final installation.

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Creating Inspired Interiors

Our design philosophy is rooted in creativity, functionality, and elegance, ensuring that each interior we craft is both visually stunning and deeply personal by blending.

Creating Inspired Interiors

Our design philosophy is rooted in creativity, functionality, and elegance, ensuring that each interior we craft is both visually stunning and deeply personal by blending.

Creating Inspired Interiors

Our design philosophy is rooted in creativity, functionality, and elegance, ensuring that each interior we craft is both visually stunning and deeply personal by blending.

Creating Inspired Interiors

Our design philosophy is rooted in creativity, functionality, and elegance, ensuring that each interior we craft is both visually stunning and deeply personal by blending.

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Crafting Perfection Step-by-Step

We believe that great design is a journey, not just a destination. Our step-by-step process ensures that every detail is carefully planned and executed to perfection.

Crafting Perfection Step-by-Step

We believe that great design is a journey, not just a destination. Our step-by-step process ensures that every detail is carefully planned and executed to perfection.

Crafting Perfection Step-by-Step

We believe that great design is a journey, not just a destination. Our step-by-step process ensures that every detail is carefully planned and executed to perfection.

Crafting Perfection Step-by-Step

We believe that great design is a journey, not just a destination. Our step-by-step process ensures that every detail is carefully planned and executed to perfection.

Related Technologies

Related Technologies

Related Technologies

Related Technologies

Built on Proven Science

Every ZEFIRA solution is powered by our proprietary carbon-membrane platform, developed through years of collaborative R&D and validated across multiple European demonstration projects.

This foundation now enables commercial-ready modules for CO₂, hydrogen, and syngas processing — and serves as the basis for next-generation electrified systems that will define tomorrow’s circular fuel economy.

a large industrial building with a lot of pipes
a large industrial building with a lot of pipes
a large industrial building with a lot of pipes
a large industrial building with a lot of pipes
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Let’s Build the Transition Together

We collaborate with industrial partners, technology developers, and investors who share our ambition to accelerate defossilization. Reach out to explore collaboration, pilot testing, or investment opportunities within our membrane and plasma-membrane programmes.

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Let’s Build the Transition Together

We collaborate with industrial partners, technology developers, and investors who share our ambition to accelerate defossilization. Reach out to explore collaboration, pilot testing, or investment opportunities within our membrane and plasma-membrane programmes.

Bg Line

Let’s Build the Transition Together

We collaborate with industrial partners, technology developers, and investors who share our ambition to accelerate defossilization. Reach out to explore collaboration, pilot testing, or investment opportunities within our membrane and plasma-membrane programmes.

Bg Line

Let’s Build the Transition Together

We collaborate with industrial partners, technology developers, and investors who share our ambition to accelerate defossilization. Reach out to explore collaboration, pilot testing, or investment opportunities within our membrane and plasma-membrane programmes.

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