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Friedrich-Alexander-Universität Chair of Energy Process Engineering
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  1. Friedrich-Alexander-Universität
  2. Faculty of Engineering
  3. Department Chemical and Biological Engineering
Friedrich-Alexander-Universität Chair of Energy Process Engineering
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Technical Equipment

In page navigation: Research
  • Working groups and their research topics
    • Research topics Prof. Karl
    • Combustion and Gasification of Biomass
      • Ash melting behavior
      • BMEL-Project: EmissionPredictor
      • BMEL-project: SmartWirbelschicht
      • BMWi-project: ANICA
      • BMWi-project: BioWasteStirling
      • BMWi-project: FuelBand
      • BMWi-Projekt: FuelBand2
      • CampusFES-project PlasmaGas
      • DFG-Project: KoksAgglomeration
      • E|Home-Center: HomeORC
      • EnCN – project part Peak-Load High Temperature Heat Storage
      • EU-Project SolBio-Rev
      • Heatpipe-Reformer Technology
      • Hydrogen from biomass
      • Kinetics of Biomass Gasification
      • Stirling Engine
      • ZIM-Project Pyrolysis furnace
    • Second Generation Fuels & Fuelcells
      • BMEL-project: FlexBiomethane
      • BMWi-project Ash-to-Gas
      • BMWi-Project BiogasGoesHydrogen
      • BMWi-project: FlexSOFC
      • BMWi-project: IntenseMethane
      • BMWi-Project: KonditorGas
      • BMWi-project: ORBIT
      • BMWi-project: Power-to-Biogas
      • CO2freeSNG
      • CO2freeSNG 2.0
      • EnCN – project part ‘Große Speicher’
      • EU-Project CarbonNeutralLNG
      • EU-Project i³upgrade
      • Load-flexible high-temperature electrolysis
      • Renewable hydrogen in the natural gas grid
    • Energy Systems & Energy Economics
      • BMWi-project ESM-Regio
      • BMWi-project: Kläffizient
      • BMWK- Project ProKläR-mission
      • BMWK-project SyntheseREADY
      • CARINA
      • EnCN – project part 1.1: Base load storage systems with low-temperature storages
      • SustainableGas
    • Research topics Prof. Herkendell
      • BMBF-project: MultiKulti
      • BMWi-project Hy2BioMethane
      • EU-Projekt: BIOMETHAVERSE
  • Publications
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    • Study on energy prices
    • Finished Theses
  • Facilities
    • Experimental plants
      • 100 kW fluidized bed furnace
      • 100 kW Heatpipe Reformer
      • 100 kWh pilot-carbonate-storage
      • 200 kW Vertical Grate Furnace
      • 6 kWh pilot-carbonate-storage
      • Carnot Battery
      • Catalytical methanation
      • Catalytical methanation: ADDmeth
      • Gas controll system with reactor test bench
      • Heatpipe test rig for low temperature heatpipes
      • Heatpipe-based catalytical methanation
      • High pressure stirred tank reactor
      • Lab-scale fluidized bed with online reactor weighing
      • Lab-scale scrubber
      • Micro-CHP-pilot-plant
      • Modular test bench SOFC Stack
      • ORBIT-Trickle-bed reactor
      • Permeation test bench
      • Plasma-gasifier
      • Small-scale Gasifier
      • SOFC-SOEC Test bench
      • Steam Reformer
      • Stirling engine
      • Stirred-tank fermenter
      • Test bench for heatpipes in industrial scale
      • Test bench for planar heatpipes
      • Trickle-bed fermenter
    • Technical Equipment
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Technical Equipment

Gerne nehmen wir Ihre Aufträge zur Analyse von Brennstoffen oder Teerkomponenten entgegen. Bei Fragen stehen wir Ihnen gerne zur Verfügung: Hildegard Stork

Solid Phase Adsorption (SPA) for tar analysis

Contact: Hildegard Stork

Fuel analysis

Measurements to determine the moisture content, heat of combustion and ash composition
Contact: Hildegard Stork

Gas analyser (Siemens, ABB)

There are three different gas analysers available at the EVT for the online detection of gases. Two of them are equipped with modules to determine typical gases in SNG, such as H2, O2, CO2 and CH4.

contact: Thomas Trabold (M. Sc.)

Flue gas from the gasification of biogas with relevant trace substances can be analysed. These gases contain CO2, CO, NOx, SO2.

Contact: Dr.-Ing. Dominik Müller

Gas chromatograph

Contact: Hildegard Stork

µ-Gas chromatograph

Our chair is equipped with two Agilent µGC 490.  Permanent gases are analysed with a MolSieve5A column whilst CO2, H2S and hydrocarbons are measured with a PoraPlotQ/U column. The CP Sil column detects hydrocarbons and molecules containing sulphur.

Contact: Dr.-Ing. Fabian Grimm

Ash melting microscope

Contact: Dr.-Ing. Fabian Grimm

STA Linseis PT 1750 – Thermogravimetry and Differential Scanning Calorimetry

The STA Linseis PT 1750 facilitates the experimental investigation of mass changes and reaction enthalpies under different gas atmospheres. It is well suited for the analysis of pyrolysis characteristics and quantification of carbonaceous deposits on catalysts. Furthermore, the DSC allows for the analysis of ash properties and gives the possibility to gain insight to the behavior of bed material in the carbonate-looping process.

Contact: Christoph Lange (M. Sc.)

Muffle furnace

Contact: Hildegard Stork

Thermal imaging camera

isothermal2_3

Set up for fine dust analysis (testo)

Contact: Dr.-Ing. Dominik Müller

Set up for flue gas analysis (testo)

Friedrich-Alexander-Universität
Erlangen-Nürnberg

Schlossplatz 4
91054 Erlangen
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