Current research projects

Image Air-flow test rig for fan characteristic measurement
Image Tensile and compression testing
Image Micro heat exchangers in refrigeration
Image Panel with indirect evaporative cooling via membrane
Image Filter Tests
Image In-Situ-Swelling Behaviour of Polymer Materials in Flammable Fluids
Image Heat2Power
Image Pulse-Tube-Refrigerator with sealed compressor
Image Test procedures for electrical components
Image Low temperature – test facilities
Image Innovative Manufacturing Technologies for Cryosorption Systems
Image Performance tests of refrigerant compressors
Image Humidifier System for High-Purity Gases
Image Range of services laboratory analyses
Image Combined building and system simulation
Image Solar Cooling

You are here:   /  Home


Production of novel barrier layers on polymer materials to reduce hydrogen permeation

BMWE

12/2025-05/2028

Christian Hanzelmann, M.Sc.

+49-351-4081-5416

in progress

PerWas

Project objective

Industry, the energy sector and transportation are among the largest contributors to greenhouse gas emissions worldwide. To achieve climate targets, such as reducing CO₂ emissions in Germany by at least 65% by 2030, hydrogen is becoming increasingly important as an energy carrier and as a storage medium for renewable energy.

For hydrogen to be used economically and safely, losses due to permeation in storage systems must be minimized. The aim of the project is therefore to develop a next-generation hydrogen tank system (Type V) with a significantly improved permeation barrier. Innovative material and surface concepts are intended to substantially reduce hydrogen permeability while enabling industrial-scale implementation.

The project results will particularly strengthen small and medium-sized enterprises along the hydrogen tank value chain—from the development and processing of CFRP materials and surface modification through to suppliers for the automotive and commercial vehicle industries—and enhance their competitiveness in national and international markets.

Partners in the joint project PerWas

  • Institut für Luft- und Kältetechnik gGmbH, Dresden (ILK)
  • FILK Freiberg Institute gGmbH, Freiberg (FILK)
  • Leibniz-Institut für Polymerforschung e.V., Dresden (IPF)

Project Advisory Committee

The joint project is technically supported by a committee consisting of testing and certification service providers, material and coating manufacturers, engineering firms, fibre-reinforced plastics and CFRP specialists, test bench and measurement technology companies, surface engineering providers, and sensor manufacturers.

Project structure

The research project is divided into three phases.

Phase 1: Preliminary investigations of flat matrix and barrier materials.

Phase 2: Development of a matrix–barrier layer system on flat tank wall components.

Phase 3: Transfer of the technology to a 3D component as a demonstrator.


Your Request

Further Projects

Image

Reduction of primary noise sources of fans

...using numerical and experimental methods with contra-rotating axial fan

Image

Software for technical building equipment

Design cooling load and energetic annual simulation (VDI 2078, VDI 6007, VDI 6020)

Image

Measurements on ceiling mounted cooling systems

Comparative performance measurement

Image

Micro fluidic expansion valve

for increasing of the efficiency of small and compact cooling units

Image

Solar Cooling

Solar Cooling with Photovoltaic