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Dr. Ann-Kathrin Amsel, M.Sc.

21335 Lüneburg, Universitätsallee 1, C13.231
Fon +49.4131.677-2905, ann-kathrin.amsel@leuphana.de

Werdegang

  • seit 01/2019: Wissenschaftliche Mitarbeiterin, Institut für Nachhaltige Chemie, Leuphana Universität Lüneburg
  • 08/2021–07/2023: Koordinatorin des berufsbegleitenden Studiengangs M.Sc. Sustainable Chemistry, Leuphana Professional School, Lüneburg
  • 03/2019–12/2024: Promotionsstudium, Leuphana Universität Lüneburg, Titel der Dissertation: Methoden zur Anwendbarkeit des Benign by Design Konzepts für die biologische Abbaubarkeit in der Umwelt am Beispiel der ionischen Flüssigkeiten 
  • 10/2016-12/2018: Masterstudium in Nachhaltigkeitswissenschaft, Leuphana Universität Lüneburg
  • 10/2013–09/2016: Bachelorstudium in Umweltwissenschaften, Leuphana Universität Lüneburg

Forschungsgebiete

Nachhaltige Chemie, Grüne Chemie, Benign by Design, Ionische Flüssigkeiten, (Q)SAR, Bioabbaubarkeit in der Umwelt

Publikationen

Beiträge in Zeitschriften

  1. Modelling biodegradability based on OECD 301D data for the design of mineralising ionic liquids
    Ann-Kathrin Amsel (Autor*in) , Suman Chakravarti (Autor*in) , Oliver Olsson (Autor*in) , Klaus Kümmerer (Autor*in) , 22.05.2024 , in: Green Chemistry, 26, 12 , S. 7363-7376 , 14 S.

    Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungbegutachtet

  2. Identification of structure-biodegradability relationships for ionic liquids - clustering of a dataset based on structural similarity
    Ann-Kathrin Amsel (Autor*in) , Oliver Olsson (Autor*in) , Klaus Kümmerer (Autor*in) , 29.09.2023 , in: Green Chemistry, 25, 22 , S. 9226-9250 , 25 S.

    Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungbegutachtet

  3. Inventory of biodegradation data of ionic liquids
    Ann-Kathrin Amsel (Autor*in) , Oliver Olsson (Autor*in) , Klaus Kümmerer (Autor*in) , 01.07.2022 , in: Chemosphere, 299

    Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungbegutachtet

  4. Toward Application and Implementation of in Silico Tools and Workflows within Benign by Design Approaches
    Ann-Kathrin Amsel (Autor*in) , Marco Reich (Autor*in) , Oliver Olsson (Autor*in) , Klaus Kümmerer (Autor*in) , Stefanie Lorenz (Autor*in) , Neele Puhlmann (Autor*in) , 20.09.2021 , in: ACS Sustainable Chemistry and Engineering, 9, 37 , S. 12461-12475 , 15 S.

    Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungbegutachtet

  5. Abiotic and biotic degradation of five aromatic organosilicon compounds in aqueous media: Structure degradability relationships
    Oliver Olsson (Autor*in) , Ann-Kathrin Amsel (Autor*in) , Britta Rummel (Autor*in) , Norbert W. Mitzel (Autor*in) , Klaus Kümmerer (Autor*in) , Elisa Grabitz (Autor*in) , 15.06.2020 , in: Journal of Hazardous Materials, 392 , 15 S.

    Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungbegutachtet

Lehrveranstaltungen

The planetary boundary for novel entities has been exceeded due to the global increase in the production, use of chemicals and lack of capacities for their hazard assessment. Furthermore, some chemicals have adverse side effects on humans and the environment due to their environmental persistence, bioaccumulation potential and (eco)toxicity. In this seminar and exercise, different concepts and tools in green and sustainable chemistry for the design and assessment of chemicals are introduced to discuss how chemistry can contribute to sustainable development. Experimental and computer-based methods are applied to demonstrate the advantageous possibilities of their combination in the assessment of chemicals but also challenges on the way to sustainability.

Concepts:
• Benign by Design
• 12 principles of green chemistry
• Key characteristics of sustainable chemistry

Laboratory techniques:
• Ion chromatography
• Solid Phase Extraction
• LC-MS-MS
• NMR spectroscopy
• UV/vis spectroscopy
• Melting point

Tools & computer-based methods:
• Data set creation and analysis (e.g. Clustering)
• QSAR
• ChemSelect
• Green Chemistry Metrics
Nächster Termin:
Dienstag, 13.10.2026 um 08:15 Uhr