Current research projects

Image Refrigerants, lubricants and mixtures
Image State of system and failure analyses
Image High temperature heat pump
Image Micro fluidic expansion valve
Image Corrosion inhibitor for ammonia absorption systems
Image Cold meter
Image Test method for high - temperature heat pump - oils
Image Certification of efficient air conditioning and ventilation systems through the new "indoor air quality seal" for non-residential buildings
Image Practical training, diploma, master, bachelor
Image Investigation of material-dependent parameters
Image Preformance measurements of heat exchangers
Image Influenced melting point of water by magnetic field
Image Range of services laboratory analyses
Image In-situ investigation concerning the swelling behaviour of polymer materials under elevated pressures and temperatures
Image Ice Slurry Generation
Image Overall System Optimization of Refrigeration Plant Systems for Energy Transition and Climate Protection

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Hydrogen and methane testing field at the ILK

BMWi

Dr. Andreas Kade

+49-351-4081-5117

Simultaneously pressures up to 1,000 bar, temperatures down to –253°C

ILK Dresden operates an innovative testing ground for cryogenic high-pressure applications with hydrogen (H2), methane (CH4), and methane–hydrogen mixtures. With this, different services can be offered, among other things:

  • Test and qualification of components at temperatures ranging from 20 K (−253 °C) to room temperature and pressures ranging from high vacuum to 1000 bar (e.g. test of sealings, permeation tests).
  • Investigation of charge and discharge processes at cryogenic or room-temperature-operated storage systems for hydrogen and methane (e.g. adsorber storage systems, cryo-compressed hydrogen).
  • Investigation of catalyst materials for the ortho–para conversion of hydrogen.
  • Long-time thermal charging of components and materials in hydrogen or methane atmosphere at up to +200 °C and up to 160 bar for investigating degradation effects (e.g. hydrogen embrittlement).
  • Development of different hydrogen and methane components (e.g. recooling systems, latent-heat storage systems, cryogenic pressure storage systems, heat exchangers, cryogenic pumps).
  • Realisation of complete-system solutions for hydrogen and methane.

The following diagram depicts the specific storage density that can be achieved depending on temperature and pressure:


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Further Projects

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Computational fluid dynamics CFD

Scientific analysis of flows

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Humidifier System for High-Purity Gases

Nafion - moisture transfer

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Behavior of multiphase cryogenic fluids

experimental und numerical investigations

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Innovative Parahydrogen Generator Based on Magnets

Magnetic Gas Separation of the Hydrogen Isomers