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Explore our range By purity level

N3 & Below?

TAKE A LOOK AT OUR INDUSTRIAL RANGE >

Purity Level N4.5

N4.5

Gas purity 99.995% - designed for general industrial use and suitable for handling non-corrosive and toxic gases.

Purity Level N5

N5

Gas purity 99.999% - designed for laboratory environments that require high-purity gases for accurate analyses. Suitable for non-corrosive and toxic gases.

Purity Level N6

N6

Gas purity 99.9999% - designed for labs, chemical processing and challenging environments where the most demanding gases are used. Suitable for corrosive and toxic gases.

Purity Level N7

N7

Gas purity 99.99999% - designed for applications where Ultra High Purity (UHP) gases are used. Suitable for corrosive and toxic gases.

Focus onAnalytical Laboratories

Pure
Precision

GCE Speciality recognises the importance of contamination-free gas control in analytical laboratories. Therefore, we offer high-purity gas solutions, enabling labs to achieve accurate and reproducible results in sensitive areas like research and pharmaceuticals.

We chose druva by GCE Speciality for the reliability and precision of their gas control systems, which are essential for the sensitive nature of our research.
Lab Technician - Roche Innovation Center, Basel

About GCE Speciality

GCE Speciality caters to the exacting high-purity sectors such as pharmaceuticals, laboratories, automobiles, and semiconductor manufacturing.

Our extensive portfolio includes precision regulators, manifolds, and other specialized products.

GCE Speciality has a strong focus on purity and precision to meet the stringent standards of the high-purity industry.

GCE Speciality Brands:
DruvaGasarcVictor

Latest Case Study

Roche pRED, Basel

The Roche Innovation Center, Basel faced several critical challenges in designing a cutting-edge laboratory environment to support its research in oncology, neuroscience, and infectious diseases. These challenges included:

  • Ensuring the safety, reliability, and performance of gas control systems to minimize operational risks.
  • Avoiding unplanned downtime, which could lead to underutilized labs and project delays.
  • Addressing increasing space constraints while maintaining a high level of functionality.
  • Mitigating project delays caused by unreliable lead times.

With a focus on creating a sustainable environment that fosters collaboration among more than 1,800 scientists, engineers, and clinicians, the lab required gas control equipment that would be both reliable and adaptable to meet the unique demands of critical research projects.

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