Organisation profile

Sustainability has many facets. Inter- and transdisciplinary research and teaching characterize the School of Sustainability. Scientists in our research projects work together in the laboratory, on the heath, in the grassland, in the classroom, with the city administration, with farmers, with non-governmental organizations, with companies, with students in the lecture hall and of course at their desks.

Furthermore, we work with regional and national political actors, e.g. ministries, as well as international organizations, e.g. UNEP, UNESCO, EU. We are part of national and international bodies, e.g. sustainability advisory boards of companies, member of the German Sustainability Award, World Biodiversity Council (IPBES), in order to contribute to social change with scientific findings.

Main research areas

Vision
Sustainability science investigates on a theoretical, conceptual and empirical level how to promote sustainable development and how to find and implement effective solutions for current social and ecological challenges. The aim is to create a more sustainable future.

Sustainability researchers are called upon to take responsibility for their research, which is anchored in existing scientific knowledge and methods and serves to make the world a better place for everyone.

Mission
We promote change towards a sustainable future by developing theories, concepts and practices of inclusive education for sustainability, research, governance and management.

We acknowledge the diversity and dynamics of values, norms and behaviour and contribute with transdisciplinary methods to ensuring that tensions and differences between different disciplines, methods, topics and standards are fruitfully taken up and used with productive compromises and further developments towards sustainable development.

Principles
The School of Sustainability is guided by the normative concepts of ecological system integrity and social and economic justice.

Ecological system integrity refers to the safeguarding of life-support systems, as well as the maintenance of the well-being of life on Earth.

With social and economic justice we strive for a world in which all people can fulfil their potential without endangering system integrity and the well-being of others.

Information about the School
The School of Sustainability includes...
... ca. 25 professors
... ca. 100 research assistants
... ca. 1000 students in Bachelor and Master courses

In various inter- and transdisciplinary projects we are constantly researching and working together on changes and solutions for current challenges.

  1. 2025
  2. Published

    From consumers to pioneers: insights from thermal energy communities in Denmark, Germany and the Netherlands

    Herreras Martínez, S., Mesman, J., Sneum, D. M., Holstenkamp, L., Harmsen, R., Menkveld, M., Akerboom, S. & Faaij, A., 12.2025, In: Energy, Sustainability and Society. 15, 1, 31 p., 5.

    Research output: Journal contributionsJournal articlesResearchpeer-review

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Publications

  1. Curriculum Hannover – webbasierte vs. analoge Durchführung der psychosomatischen Nachsorge und vs. Care as usual
  2. Lyapunov stability analysis to set up a PI controller for a mass flow system in case of a non-saturating input
  3. Mit Textprozeduren am (Fach-)Wortschatz arbeiten – sprachliche Mittel in Sachtexten sammeln, entwickeln und anwenden.
  4. Bodenentwicklungen und Bodenbelastungen der Mäanderschleife Wehninger Werder an der niedersächsischen Mittelelbe
  5. The cuticular profiles of Australian stingless bees are shaped by resin of the eucalypt tree Corymbia torelliana
  6. Business Model Experimentation for Circularity: Driving sustainability in a large international clothing retailer
  7. Lohnsteuer- und sozialversicherungsrechtliche Aspekte der Beschäftigung von Auftragnehmern für einen Auftraggeber
  8. Die individuell präferierte bezugsnormorientierung und das selbstkonzept von grundschulkindern im fach mathematik
  9. Impact of climate change and pollution driven land use changes on Elbe river (Northern Germany) floodplain vegetation.
  10. Determination of Pentachlorophenol and Hexachlorobenzene in Natural Waters Affected by Industrial Chemical Residues
  11. Lerngelegenheiten zum Thema Redoxreaktionen und zur Handlungsdimension 'Schlüsse ziehen' / 'Konsequenzen ziehen' schaffen
  12. The Settlement of EEZ Fisheries Access Disputes under UNCLOS: Limitations to Jurisdiction and Compulsory Conciliation
  13. Phosphorus status, use and recycling in a Chinese peri-urban region with intensive animal husbandry and cropping systems
  14. Psychometric properties of the German narcissism inventory 90 (NI-90) in a clinical and non-clinical sample of adolescents
  15. Relations between idle time, exhaustion, and engagement at work