Forschung
Projekte
Wissenschaftliche Forschung für effizientere Technologien
Wir sind Ihr Ansprechpartner für die Entwicklung neuer und innovativer Methoden.

Wissenschaftliche Forschung für effizientere Technologien
Die Fricke und Mallah Microwave Technology GmbH ist die erste Anlaufstelle für die Entwicklung neuer innovativer Methoden. Dies wird auch in der wissenschaftlichen Forschung anerkannt. Unsere erfahrenen Physiker und Hochfrequenzingenieure sind absolute Experten auf ihrem Gebiet, was in zahlreichen industriellen und wissenschaftlichen Forschungsprojekten bestätigt wurde.
- Kunststoff-Recycling
- Verbesserung der Backprozesse
- Organobleche auf Kohlefaserbasis
- Kohlefaser-Fasern
- Gefriertrocknung
- Pyrolyseverfahren
- Streckblasverfahren
- Umweltfreundlich und energieeffizient

CirProtech
Circular Production Polymer Technologies
2025
-
2030
BMBF

METAWAVE
High-temperature heating processes with breakthrough microwave and digital technologies for increased energy efficiency
2024
-
2028
EU

MIND
Microwave process technology for the silicate ceramics industry, taking into account process-relevant properties
2024
-
2027
BMBF
Flexby
Flexible and advanced Biofuel technology through an innovative microwave pYrolysis & hydrogen-free hydrodeoxygenation processList
2024
-
2027
EU

Hybrid-FIRE
Hybrid furnace process for high-temperature technologies for the thermal treatment of inorganic materials
2023
-
2027
BMWK
CITADEL
Substitution of fossil Combustion in Industrial high- Temperature processes by ADvanced ELectrical and plasma heating technologies
2023
-
2027
EU

DevEI
Development of a semiconductor-based microwave process for the devulcanization of sulphur-curing elastomers
2024
-
2026
BMBF
RE_SORT
Pyrolysis of thick-walled fiber composites as a key innovation in the recycling process for wind turbine rotor blades
2023
-
2026
BMWK

Superfaser 2
Environmentally friendly conversion processes with reduced energy input using GHz plasma in carbon fiber production - Part 2
2023
-
2025
DBU
WOPOREX
Process for the continuous production of biopolymer monomers by integration of microwave radiation
2022
-
2025
BMBF
PAMico
Phased Array Antenna for Microwave based Weed Control
2022
-
2025
BMWK
HyFiVe
High-volume variant production of plastic-metal hybrid components
2020
-
2024
BMBF

GreenFront
Sustainable façade elements made of wood foam and textile concrete
2020
-
2023
BMBF

Superfaser
More environmentally friendly spinning processes and reduced energy input through GHz plasma in carbon fiber production
2020
-
2022
DBU
ReOrgAL
Increasing the energy and resource efficiency of recycling organically contaminated aluminum scrap
2019
-
2022
BMWE

NEWWAVE
Heating and drying processes for food using microwave technology
2018
-
2021
BMEL
SuperCarbon
Carbonfaservliese mit hierarchischer Oberflächenporosität und erhöhter Energiedichte für Superkondensatorelektroden
2017
-
2021
BMBF
HIRSys
Intelligent high-frequency sensor systems for industrial food production
2017
-
2020
BMBF
Permback
Thermo-hybrid microwave conveyor oven system using semiconductor microwave technology for the production of baked goods.
2017
-
2019
BMWi
Esprit
Expanding the versatility of self-reinforced plastics (SRP)
-
HELM
High-frequency electromagnetic technologies for advanced processing of ceramic matrix and graphite expansion composites
-
NanoWave
Microwave curing of insulating and potting materials for electronic assemblies
-
Projekt FSM
Disinfection of faeces using microwaves
-
PhotoRec
Recovery of rare strategic metals from EOL thin-film PV modules
2012
-
2015
BMBF
CLEAN-HEAT
A highly efficient, intelligent industrial microwave heating system based on high-performance solid state technology
-
SULFREE
Microwave pyrolysis for the recycling of used tires
2013
-
2016
EU
DEMETO
Modulare, skalierbare und leistungsstarke Depolymerisation mittels Mikrowellentechnologie
2017
-
2021
EU

polynSPIRE
Chemical recycling of plastic waste
2017
-
2021
EU

CEM-WAVE
High-performance materials pave the way for clean production
-

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