@book{7044,
  abstract     = {Der Circular Skills Guide unterstützt die praxisnahe Vermittlung von Kompetenzen im Bereich Circular Economy. Er bündelt erprobte Qualifizierungsformate und stellt diese als übertragbare Orientierungshilfen und praktische Blaupausen für unterschiedliche Bildungs- und Anwendungskontexte bereit. Anhand konkreter Beispiele werden Lernformate, Methoden und Werkzeuge vorgestellt, die den Aufbau von Circular-Economy-Kompetenzen fördern und flexibel an verschiedene Zielgruppen und Rahmenbedingungen angepasst werden können.
Die Publikation richtet sich an Multiplikator:innen, Unternehmen, Bildungseinrichtungen, Kammern sowie weitere Organisationen, die Qualifizierungsangebote im Bereich Circular Economy gestalten, auswählen oder weiterentwickeln möchten. Sie unterstützt die Entwicklung praxisnaher Bildungsangebote in Schule, Hochschule, beruflicher Bildung und Weiterbildung.
Alle beschriebenen Qualifizierungsformate folgen einem einheitlichen Aufbau. Neben Zielgruppen, Lernzielen sowie geeigneten Methoden und Werkzeugen enthält der Guide Hinweise zur Übertragbarkeit der Formate, Empfehlungen für deren Umsetzung sowie eine grobe Zeitplanung. Dadurch bietet die Publikation eine praxisorientierte Grundlage für die Konzeption und Durchführung von Qualifizierungsmaßnahmen im Kontext der Circular Economy.
},
  author       = {Diel, Leon and David, Friederike and Kleinhans, Sarah and Kolkmann, Beate and Meyer, Rolf Olaf and Penner, Anna and Remberg, Joy and Schoden, Fabian and Schmidt, Kerstin and Schwenzfeier-Hellkamp, Eva},
  keywords     = {Circular Economy, Kreislaufwirtschaft, Circular Skills, Qualifizierung, Kompetenzentwicklung, Hochschullehre, Nachhaltige Produktentwicklung, Zirkuläre Wertschöpfung, Weiterbildung, Wissenstransfer, Lehr-Lern-Formate, Nachhaltigkeit},
  pages        = {40},
  title        = {{Circular Skills Guide}},
  year         = {2026},
}

@article{7037,
  abstract     = {The development of resource-efficient products based on a comprehensive assessment of the R-principles is becoming increasingly important in the context of the Eco-Design Regulation. However, there is no basis for assessing c-Si photovoltaic modules in the context of REpair, REfurbish, and REmanufacture. The aim of this study is therefore to create an assessment basis including a definition framework and a selection of priority parts. The results are a basic functional and structural analysis, an initial catalog of criteria for a semi-quantitative assessment method, and a weighting of priority parts. It becomes clear that individual cells and connection components are particularly relevant for REpair and REfurbish. For REmanufacture, attention should be paid to the entirety of the cells, the frame, and the glass. Overall, a method is created that, in application, lays the foundation for a sustainable product design of photovoltaic modules improved for the circular economy and can be further optimized.              },
  author       = {Schnatmann, Anna Katharina and Wulf, Heike and Schoden, Fabian and Schwenzfeier-Hellkamp, Eva},
  issn         = {2071-1050},
  journal      = {Sustainability},
  keywords     = {assessment method, circular economy, c-Si photovoltaics, refurbish, remanufacture, repair, R-principles},
  number       = {11},
  publisher    = {MDPI AG},
  title        = {{REpair-, REfurbish- and REmanufacture-Ability Assessment of c-Si PV Modules—Method Development}},
  doi          = {10.3390/su18115612},
  volume       = {18},
  year         = {2026},
}

@techreport{6893,
  author       = {Schoden, Fabian},
  pages        = {S. 18--19},
  title        = {{KI in Prüfungen: Kontrollverlust oder Chance?}},
  year         = {2026},
}

@techreport{6473,
  author       = {Schoden, Fabian and Knefelkamp, Dörthe and Kolkmann, Beate and Schwenzfeier-Hellkamp, Eva},
  title        = {{Circular Economy – Innovationsökosystem Studie (CirQuality OWL)}},
  year         = {2024},
}

@article{4278,
  author       = {Schnatmann, Anna Katharina and Reimers, Tobi and Hüdepohl, Erik and Umlauf, Jonah and Kleinebekel, Pia and Schoden, Fabian and Schwenzfeier-Hellkamp, Eva},
  issn         = {2071-1050},
  journal      = {Sustainability},
  keywords     = {circular economy, crystalline photovoltaics, degradation, quality management, reuse, second-life PV, electroluminescence},
  number       = {3},
  publisher    = {MDPI AG},
  title        = {{Investigating the Technical Reuse Potential of Crystalline Photovoltaic Modules with Regard to a Recycling Alternative}},
  doi          = {10.3390/su16030958},
  volume       = {16},
  year         = {2024},
}

@article{4285,
  author       = {Schnatmann, Anna Katharina and Schoden, Fabian and Ehrmann, Andrea and Schwenzfeier-Hellkamp, Eva},
  issn         = {2701-939X},
  journal      = {Communications in Development and Assembling of Textile Products},
  keywords     = {circular economy, R principles, textile industry, waste prevention, resilience},
  number       = {2},
  pages        = {294--305},
  publisher    = {Sachsische Landesbibliothek, Staats- und Universitatsbibliothek Dresden},
  title        = {{R principles for circular economy in the textile industry – a mini-review}},
  doi          = {10.25367/cdatp.2023.4.p295-305},
  volume       = {4},
  year         = {2023},
}

@article{2091,
  author       = {Schnatmann, Anna Katharina and Schoden, Fabian and Schwenzfeier-Hellkamp, Eva},
  issn         = {2071-1050},
  journal      = {Sustainability},
  keywords     = {circular economy, encapsulation, crystalline photovoltaic, sustainability},
  number       = {16},
  publisher    = {MDPI AG},
  title        = {{Sustainable PV Module Design—Review of State-of-the-Art Encapsulation Methods}},
  doi          = {10.3390/su14169971},
  volume       = {14},
  year         = {2022},
}

@article{2228,
  author       = {Schoden, Fabian and Schnatmann, Anna Katharina and Blachowicz, Tomasz and Manz-Schumacher, Hildegard and Schwenzfeier-Hellkamp, Eva},
  issn         = {2071-1050},
  journal      = {Sustainability},
  number       = {22},
  publisher    = {MDPI AG},
  title        = {{Circular Design Principles Applied on Dye-Sensitized Solar Cells}},
  doi          = {10.3390/su142215280},
  volume       = {14},
  year         = {2022},
}

@article{1918,
  author       = {Schoden, Fabian and Detzmeier, Joscha and Schnatmann, Anna Katharina and Blachowicz, Tomasz and Schwenzfeier-Hellkamp, Eva},
  issn         = {2071-1050},
  journal      = {Sustainability},
  keywords     = {circular economy, remanufacturing, dye-sensitized solar cell, sustainability},
  number       = {9},
  publisher    = {MDPI AG},
  title        = {{Investigating the Remanufacturing Potential of Dye-Sensitized Solar Cells}},
  doi          = {10.3390/su14095670},
  volume       = {14},
  year         = {2022},
}

@techreport{6469,
  author       = {Schoden, Fabian and Knefelkamp, Dörthe and Schnatmann, Anna Katharina and Schwenzfeier-Hellkamp, Eva},
  pages        = {24},
  title        = {{Circular Economy – Mehrwerte für Unternehmen, Bericht CirQuality OWL}},
  year         = {2022},
}

@techreport{6471,
  author       = {Schoden, Fabian and Schnatmann, Anna Katharina and Schwenzfeier-Hellkamp, Eva},
  pages        = {19},
  title        = {{CirQuality OWL - Lösungen für eine Circular Economy}},
  year         = {2022},
}

@article{1412,
  author       = {Schoden, Fabian and Dotter, Marius and Knefelkamp, Dörthe and Blachowicz, Tomasz and Schwenzfeier-Hellkamp, Eva},
  issn         = {1996-1073},
  journal      = {Energies},
  number       = {13},
  publisher    = {MDPI AG},
  title        = {{Review of State of the Art Recycling Methods in the Context of Dye Sensitized Solar Cells}},
  doi          = {10.3390/en14133741},
  volume       = {14},
  year         = {2021},
}

@article{1513,
  author       = {Schoden, Fabian and Schnatmann, Anna Katharina and Davies, Emma and Diederich, Dirk and Storck, Jan Lukas and Knefelkamp, Dörthe and Blachowicz, Tomasz and Schwenzfeier-Hellkamp, Eva},
  issn         = {1996-1944},
  journal      = {Materials},
  number       = {21},
  publisher    = {MDPI AG},
  title        = {{Investigating the Recycling Potential of Glass Based Dye-Sensitized Solar Cells—Melting Experiment}},
  doi          = {10.3390/ma14216622},
  volume       = {14},
  year         = {2021},
}

@article{2170,
  author       = {Brockhagen, Bennet and Schoden, Fabian and Storck, Jan Lukas and Grothe, Timo and Eßelmann, Christian and Böttjer, Robin and Rattenholl, Anke and Gudermann, Frank},
  issn         = {2375-1495},
  journal      = {AIMS Bioengineering},
  number       = {2},
  pages        = {173--191},
  publisher    = {American Institute of Mathematical Sciences (AIMS)},
  title        = {{Investigating minimal requirements for plants on textile substrates in low-cost hydroponic systems}},
  doi          = {10.3934/bioeng.2021016},
  volume       = {8},
  year         = {2021},
}

@inbook{1130,
  author       = {Schoden, Fabian},
  booktitle    = {Nanosensors and Nanodevices for Smart Multifunctional Textiles},
  isbn         = {9780128207772},
  pages        = {287--320},
  publisher    = {Elsevier},
  title        = {{Ecological and sustainable smart nanotextile}},
  doi          = {10.1016/B978-0-12-820777-2.00017-0},
  year         = {2021},
}

@article{1128,
  author       = {Schoden, Fabian and Siebert, Alina and Keskin, Alparslan and Herzig, Konstantin and Straus, Majkel and Schwenzfeier-Hellkamp, Eva},
  issn         = {2071-1050},
  journal      = {Sustainability},
  number       = {1},
  publisher    = {MDPI AG},
  title        = {{Building a Wind Power Plant from Scrap and Raising Public Awareness for Renewable Energy Technology in a Circular Economy}},
  doi          = {10.3390/su12010090},
  volume       = {12},
  year         = {2020},
}

@inproceedings{1708,
  author       = {Schoden, Fabian},
  location     = {Bremen},
  title        = {{ A Technology Matrix for Bird and Bat Collision Avoidance at Wind Turbines}},
  year         = {2017},
}

