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Product description

On the GMZ Enerji site, Electrospinning Systems are published as modular electrospinning systems with adjustable parameters and a user-friendly interface, for membrane R&D, coatings, filters, sensors and advanced textile applications. The Next-Generation Nanofiber Membranes block describes electrospun membranes with tunable porosity and PFSA-free technology. The company’s own PDF catalogue (GMZ Enerji Electrospinning Equipments) shows rotary collector, feed and multi-needle spinneret components. EuroQuity states customized electrospinning equipment is manufactured for internal development and for external academic and industrial clients.

Technical specifications

Minimum order (MOQ)
1 pcs

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Fuel cell and reversible PEM system membranes — GMZ Enerji Sistemleri Sanayi ve Ticaret Limited Şirketi

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Under Applications, Fuel Cells & Reversible Systems is published as high-performance membranes for fuel cell applications and reversible energy storage. GMZ membranes used are listed as PEM Series and AEM Series. The Electrolyzer & Fuel Cell Systems block describes in-house prototype systems to validate membrane performance, enabling hydrogen generation, off-grid hybrid systems and renewable energy integration. A LinkedIn project output describes a unitized regenerative PEM fuel cell stack integrated with a solar energy system, using in-house proton exchange membranes to operate in both electrolysis and fuel-cell modes.

Eski̇şehi̇r · Eskisehir Organized Industrial Zone

GMZ PEM Series proton exchange membrane — GMZ Enerji Sistemleri Sanayi ve Ticaret Limited Şirketi

GMZ Enerji Sistemleri Sanayi ve Ticaret Limited Şirketi

GMZ PEM Series proton exchange membrane

Fuel Cells Product

The GMZ Enerji site publishes the PEM Series as proton exchange membranes for electrolyzers and fuel cells. PFSA-free, customizable ion-exchange membranes are described for hydrogen, energy and water systems. Published PEM figures: thickness 60/80/100 μm, ion exchange capacity (IEC) 1.10–1.50 meq/g, tensile strength 30–40 MPa, pH stability 0–14 at 25 °C. The same product block states a fluorine-free design, 42% more efficient ion exchange capacity and 20% longer operational lifetime. Membranes are stated as TRL 9 and ready for commercialization.

Eski̇şehi̇r · Eskisehir Organized Industrial Zone

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According to the TÜBİTAK MAM Hydrogen and Fuel Cell page, carbon-supported Pt and Pt-alloy electrocatalysts and Ir-based electrocatalysts are produced. On the module-components product page the electrocatalyst is defined as a usually platinum-based critical material that accelerates reactions; together with the bipolar plate and MEA it is one of the three sub-components at the heart of the PEM fuel cell. Production is at TRL 7 with 50 sets per year for R&D and prototype demand. Work areas include design, development and production of the electrocatalyst and industrial services on characterization of fuel-cell cell components.

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According to the TÜBİTAK MAM Hydrogen and Fuel Cell page, gas-diffusion-layer membrane electrode assemblies can be developed 100% domestically for electrolyzer and PEM, DMFC and DSBHYP applications. On the fuel-cell module components product page the MEA is defined as the most critical, highest-value part of the cell where the electrochemical reaction takes place. Components can be produced with active areas from 5 cm² to 100 cm², supporting R&D from laboratory tests to small prototype systems. Technology readiness is TRL 7; annual capacity is 50 sets aimed at R&D and prototype demand. Uses: PEM fuel-cell development at academic institutions and R&D centres; prototype modules and stacks for portable power, UAV/land vehicles and APUs.

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PEM electrolyzer and MEA test-cell hardware

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