Aktuelle Forschungsprojekte

Image Test rigs for refrigeration and heat pump technology
Image Combined building and system simulation
Image Panel with indirect evaporative cooling via membrane
Image Industry 4.0 membrane heat and mass exchanger (i-MWÜ4.0)
Image Performance tests of refrigerant compressors
Image Optimizing HVAC operation with machine learning
Image Service offer for Leak Detection and Tightness Test
Image High Capacity Pulse Tube Cooler
Image High temperature heat pump
Image Thermostatic Expansion Valves
Image Brine (water)-water heat pump
Image Certification of efficient air conditioning and ventilation systems through the new "indoor air quality seal" for non-residential buildings
Image OVERALL SYSTEM OPTIMIZATION OF REFRIGERATION PLANT SYSTEMS FOR ENERGY TRANSITION AND CLIMATE PROTECTION
Image Hybrid- Fluid for CO2-Sublimation Cycle
Image Investigation of coolants
Image All-in-one device for freeze-drying and production of biomaterial

You are here:  Home /  Research and Development


Development of a Cryogenic Magnetic Air Separation Unit

Federal Ministry for Economic Affairs and Climate Action

02/2022-07/2024

Erik Neuber

+49-351-4081-5122

Oxygen Enrichment by Applied Cryogenic Magnetohydrodynamics

Nowadays, for oxygen enrichment from air, various commercial options are available, among other things, pressure swing adsorption, cryogenic rectification, and membranes. Although well-established, most of these methods do have a relative high specific energy demand for small-to-medium production rates (in this context: 0–100 TPD (tonnes per day) of oxygen) and relative high purities (at least 90 vol% of oxygen) [1].

To close this gap, ILK Dresden intends to develop and optimise an efficient cryogenic magnetic air separation unit that enables oxygen enrichment by means of OGMS (open-gradient magnetic separation). Motivated by provisional first-shot experiments, for a first setup, the following parameters are being targeted:

  • Operating pressure: 1–3 bar(a);
  • Degree of purity: 95 vol% oxygen;
  • Production rate: 5 standard l/min oxygen;
  • Specific energy demand: 160–180 kWh/t oxygen;
  • Required time for start-up: 30–60 min;
  • Continuous operation;
  • Less maintenance requirements than pressure swing adsorption;
  • Comparable space requirements as pressure swing adsorption.

Moreover, based on the experimental results, the scalability of the system for higher production rates of up to 100 TPD oxygen shall be analysed.

For this patented technology, ILK Dresden is looking for industrial partners that have interest in financial participation, specific applications, or further developments.

Granted Patent:

DE 10 2021 109 146 A1


Your Request

Further Projects - Research and Development

Image

Investigation of coolants

Secondary loop refrigerants

Image

Refrigerants, lubricants and mixtures

Determination of working fluid properties

Image

Reduction of primary noise sources of fans

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

Image

Micro fluidic expansion valve

for increasing of the efficiency of small and compact cooling units

Image

Hydrogen and methane testing field at the ILK

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