Current research projects

Image Tensile and compression testing
Image Behavior of multiphase cryogenic fluids
Image Lifetime prediction of hermetic compressor systems
Image Preformance measurements of heat exchangers
Image Filter Tests
Image Mass Spectrometer
Image Low Temperature Tribology
Image Calibration leak for the water bath leak test
Image Investigation of materials
Image Innovative Parahydrogen Generator Based on Magnets
Image Performance tests of refrigerant compressors
Image Helium extraction from natural gas
Image Measurements on ceiling mounted cooling systems
Image Service offer for Leak Detection and Tightness Test
Image Characterisation of Superconductors in Hydrogen Atmosphere
Image Panel with indirect evaporative cooling via membrane

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Innovative Parahydrogen Generator Based on Magnets

Euronorm GmbH

Erik Neuber

+49-351-4081-5122

Magnetic Gas Separation of the Hydrogen Isomers

Molecular hydrogen occurs in two isomeric forms which differ in their configuration of the nuclear spin: orthohydrogen and parahydrogen, whereas the latter accounts for only 25% of the whole gas at room temperature. Contrary to this, parahydrogen in its concentrated form is utilised especially for hyperpolarisation (so-called PHIP – Parahydrogen Induced Polarisation), which is a widespread method in the fields of medicine and chemistry to enhance the contrast of MRI and NMR apparatus.
However, all procedures for the production of this spin isomer are based upon cryogenic methods, which have comparatively high expenses for energy and maintenance. Because of this, there exists the demand for a cheap and efficient method to enrich parahydrogen for direct use in successive applications.

Project Goals

  • Development of an innovative ortho–para converter, which works at room temperature by using the principle of magnetic gas separation;
  • Measurement of the separation ability of the chosen principle at room temperature and optimisation of the resulting effect and
  • Enrichment up to 99% of parahydrogen at a variable volume flow (pursued are at least 4 standard litres per minute).

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Further Projects - Research and Development

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