SOLUTIONS

Conventional carbon capture wasn't designed for you.

Absorber columns can demand substantial space, energy, and site infrastructure. We provide a compact, modular alternative designed around the constraints and economics of your operation.

A New Class of Carbon Capture Technology

For many real-world applications, fuel combustion remains unavoidable. Our goal is not to eliminate it, but to capture CO₂ after combustion, before it’s released into the atmosphere.

Hollow Fiber Contactor (HFC) captures CO₂ using a bundle of hollow fibres with microscopic pores. As flue gas flows on one side of the fibres, a liquid solvent flows on the other. The carbon passes through the pores and is absorbed by the solvent.

Our contactors remove up to 95% of CO₂ from flue gas.
Gas and liquid never mix so there’s no flooding, foaming, or solvent loss.
HFC technology can pair with different solvents to optimize your flue-gas composition.
The compact design saves space across a range of applications and conditions.

A New Class of Carbon Capture Technology

For many real-world applications, fuel combustion remains unavoidable. Our goal is not to eliminate it, but to capture CO₂ after combustion, before it’s released into the atmosphere.

Hollow Fiber Contactor (HFC) captures CO₂ using a bundle of hollow fibres with microscopic pores. As flue gas flows on one side of the fibres, a liquid solvent flows on the other. The carbon passes through the pores and is absorbed by the solvent.

Designed to capture up to 90% of CO₂, depending on flue gas, solvent, and operating conditions.
Gas and liquid phases remain physically separated, helping avoid flooding and foaming, and reducing solvent carryover.
We work with different formulations selected for the composition and requirements of your flue gas.
The compact design saves space across a range of applications and conditions.

See how we’re applying our technology to your industry.
APPLICATIONS

A New Class of Carbon Capture Technology

For many real-world applications, fuel combustion remains unavoidable. Our goal is not to eliminate it, but to capture CO₂ after combustion, before it’s released into the atmosphere.

Hollow Fiber Contactor (HFC) captures CO₂ using a bundle of hollow fibres with microscopic pores. As flue gas flows on one side of the fibres, a liquid solvent flows on the other. The carbon passes through the pores and is absorbed by the solvent.

Our contactors remove up to 95% of CO₂ from flue gas.
Gas and liquid never mix so there’s no flooding, foaming, or solvent loss.
HFC technology can pair with different solvents to optimize your flue-gas composition.
The compact design saves space across a range of applications and conditions.
Our contactors remove up to 95% of CO₂ from flue gas.
Gas and liquid never mix so there’s no flooding, foaming, or solvent loss.
HFC technology can pair with different solvents to optimize your flue-gas composition.
The compact design saves space across a range of applications and conditions.

Integrated Modular Carbon Capture

Our modular system integrates CO₂ absorption, solvent regeneration, controls, and supporting equipment. Its repeatable architecture can simplify site construction, shorten installation, and scale as project requirements evolve.

The Ionada system is designed to fit your site: your emissions, your space, your needs.

End-to-End Solutions

Ionada provides complete, site-specific solutions—not just equipment. We work with your team from opportunity assessment and feasibility through process design, engineering, integration, commissioning, and performance validation. Each system can incorporate flue-gas pre-treatment, CO₂ capture, solvent regeneration, dehydration, purification, and compression as required.

This integrated approach reduces interface risk and produces captured CO₂ ready to transport, store, or use.

Engineer in protective gear operating an industrial control system, illustrating hands-on development, testing, and optimization of carbon capture technology for reducing emissions in industrial applications.

Development Services

Our Development Services give industrial R&D teams and technology partners access to Ionada’s deep carbon-capture expertise, automated test stations, and process-modelling capabilities. We test and compare HFC configurations, solvents, and operating conditions, generating the data needed to optimize performance and advance solutions.

We collaborate directly with R&D teams inside industrial companies, as well as research institutions and technology developers, on focused development programs ranging from experimental design and component testing to solvent and contactor evaluation, integrated system development, and pilot-scale validation.

Meet The Team

A diverse group of passionate professionals dedicated to bringing creativity and innovation to everything we do.

Marco Alves

Chief Design Officer

Jenny Murtaugh

Chief Financial Officer

John Doe

Software Engineer

How the technology works

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“Ionada is addressing an important gap in industrial environmental performance. Its compact, modular carbon capture system is designed for smaller and distributed emission sources that conventional systems often struggle to serve—and for practical retrofit into existing operations..” — John Adams, Managing Partner, NGIF Cleantech Ventures

Transform the Economics of Your Operation

Jonathan Dogterom

Vice President, Business Development

Jonathan has built his career around turning complex technologies into commercial businesses. He co-founded Sustainable Energy Technologies, now Eguana Technologies, and held business development roles at Hydrogenics, now part of Cummins, before helping climate and deep-tech companies navigate commercialization through MaRS Discovery District. At Ionada, he leads business development and strategic partnerships—connecting carbon capture technology with the customers, projects, and opportunities needed to accelerate commercial deployment.

Alan Sasnowski

Program Manager

Alan has spent more than 30 years taking promising engineering programs from concept to launch. Across Magna, BionX, and Elby, his work has spanned product development, prototyping, supplier coordination, testing, and production readiness. At Ionada, he brings those moving pieces together, driving multidisciplinary programs that turn carbon capture technology into systems ready to build, deploy, and scale.

Edoardo Panziera

Founder & Chief Executive Officer

Edoardo has built his career at the intersection of technology, product development, and commercialization. He has led advanced environmental technologies from concept and laboratory testing through pilots and commercial implementation across multiple industries.

Driven by the belief that breakthrough technologies only create impact when they are successfully deployed in the real world, Edoardo has guided Ionada from an early-stage concept into a globally recognized carbon capture technology company.

Dave Pascoe

Chief Operating Officer

Dave has spent almost 40 years turning advanced engineering into products that can actually be built and delivered. As a former CTO at IAC and engineering executive at Magna International, he led global technology, product development, manufacturing, and operational initiatives at scale. At Ionada, he brings that operating discipline to carbon capture—building the processes and capabilities needed for reliable, repeatable commercial deployment.

Michael Willetts

Chief Financial Officer

Michael brings 30 years of financial leadership spanning global industry and emerging green technology, from Ford Motor Company to Forward Water Technologies. His career has focused on financial strategy, corporate governance, and investment management across businesses at very different stages of growth. At Ionada, he leads financial strategy, risk management, and capital allocation—building the financial foundation needed to commercialize and scale.

Dr. Nader Mosavat

Vice President, Research & Development

Nader has spent more than 15 years working on the question at the heart of carbon capture: how to take promising science and make it work at industrial scale. A PhD engineer, his career spans CCUS research, process development, field validation, and technology scale-up across academic and industrial settings. At Ionada, he leads the technical roadmap, validation, and performance advancement, moving the technology toward commercial-scale deployment.