Hydrogen Component Test Equipment - iSorb HP Series

  • High-pressure gas sorption analysis up to 200 bar
  • Precise pressure measurement using high-accuracy transducers
  • Automated degassing with customizable parameters
  • Flexible sample handling with multiple cell sizes
  • Precise adsorptive dosing with calibrated manifold
  • Multi-gas ports for rapid gas switching

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The iSorb HP Series is a high-pressure gas sorption analyzer designed for accurate volumetric measurements of adsorption and desorption isotherms. It operates using a manometric (vacuum-volumetric) measurement principle and supports pressures from 0.0005 bar up to 200 bar and temperatures from -253.15 °C to 500 °C. The system is available in one- and two-sample configurations and is equipped with high-precision pressure transducers, automated degassing, and real-time monitoring software. It is used for the characterization of sorbent materials in applications such as hydrogen storage, CO₂ capture, gas separation, and adsorbent research.

Use Cases

  • Hydrogen storage material analysis
  • Metal hydride research
  • Gas separation analysis
  • Adsorbent material characterization

Capabilities

  • Performs manometric (vacuum-volumetric) gas sorption measurements
  • Records complete adsorption and desorption isotherms
  • Operates across a wide pressure range (0.0005 bar to 200 bar)
  • Supports cryogenic to high-temperature analysis (-253.15 °C to 500 °C)
  • Provides real-time monitoring and customizable measurement conditions
  • Allows multi-gas analysis with rapid switching between gases
Anton Paar GmbH

Anton Paar is a premium provider of analytical and material characterization solutions for the hydrogen value chain, specializing in the development of fuel cells, electrolyzers, and storage systems. They provide a comprehensive suite of instruments used to optimize catalyst efficiency, characterize gas diffusion layers, and analyze the structural properties of hydrogen storage materials (such as metal-organic frameworks). Their expertise spans the full research and production cycle—from the rheological behavior of catalyst inks to high-pressure gas sorption analysis and inline process monitoring for green hydrogen production.

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