Enabling the recycling of metals from the shredder light fraction derived from waste of electrical and electronic equipment via continuous pyrolysis process F Diaz, D Latacz, B Friedrich Waste Management 172, 335-346, 2023 | 5 | 2023 |
WEEE Recycling at IME–RWTH Aachen: From Basic Metal Recovery to Resource Efficiency D Latacz, F Diaz, A Birich, B Flerus, B Friedrich | 5 | 2020 |
A Review on Prerequisites of a Set-Up for Particle Detection by Ultrasonic Waves in Aluminium Melts M Gökelma, D Latacz, B Friedrich Open Journal of Metal 6 (1), 13-24, 2016 | 4 | 2016 |
Circular E-Cars–Kreislaufkonzepte für die Mobilität der Zukunft P Dräger, B Friedrich, D Joest, A Kampker, K Kreisköther, D Latacz, ... Making Connected Mobility Work: Technische und betriebswirtschaftliche …, 2021 | 2 | 2021 |
Thermische Konditionierung (Pyrolyse) zur Verbesserung der Rückgewinnbarkeit kritischer Metalle aus Elektro-und Elektronik-Altgeräten F Diaz, A Trentmann, D Latacz, B Friedrich Recycling und Rohstoffe 9, 373-389, 2016 | 2* | 2016 |
Circular economy-challenges and opportunities B Friedrich, D Latacz, A Birich Rudy i Metale Nieżelazne Recykling 65, 2020 | | 2020 |
Process concept for the integration of shredder residue in the recycling of Waste Electrical and Electronic Equipment F Diaz, D Latacz, B Friedrich | | |
Scaling Up the Pyrolysis Process for Integration of Shredder Light Fraction (Slf) in the Recycling of Waste Electrical and Electronic Equipment (WEEE) F Diaz, D Latacz, B Friedrich Available at SSRN 4196894, 0 | | |
Circular Economy Strategy at RWTH Aachen University–A Raw Materials Perspective B Friedrich, D Latacz, A Birich, K Greiff | | |