Projects per year
Organisation profile
Organisation profile
The Professorship of Sustainable Chemistry of Renewable Organic Resources at the Institute of Sustainable Chemistry at Leuphana University Lüneburg focuses on research involving bio-based materials and related products, their flows and processes, attempting to understand and incorporate the most recent advances also from other fields, including options that do not involve chemical processes when they can potentially offer a more sustainable alternative to current products, procedures and services.
Emphasis is given to the sustainable food systems framework, based on critical thinking to generate more resilient, regenerative, and healthier structures. In this context, the research lines cover the design, development, and application of sustainable separation, especially extraction, to obtain and/or determine bioactive and other high-value compounds, from lab to larger scales, aiming at the production, distribution, consumption and management of biomass and / or agro-industrial chain “wastes”, considering the UN sustainable development goals.
Main research areas
As well-known, there is an urgent need for optimised and renewable organic resource use for greener and more sustainable production and processing systems worldwide. Many of the current food, beverage, nutraceutical, plant product and raw material production technologies for these sectors are responsible for various socio and environmental problems, encompassing soil and water impact, contamination at several levels and even generating an excess of biomass or other products which are called “waste“, a material culturally considered wrong in place and time.
To face such challenges and produce more inclusive, accessible and fairer, healthier food for everyone around the globe, new approaches focusing on sustainable agriculture, bioindustries and biorefineries have emerged, such as those created and developed by our research group based in Lüneburg, Germany, involving research lines such as:
- Foundation and application of Green and Sustainable Chemistry (taking into account circular economy and bioeconomy), focusing on Analytical Chemistry.
- Sustainable Separation (sample preparation, determination of compounds of interest, as well as traditional and alternative processes on different scales).
- Design, development and application of greener and more sustainable analytical methods.
- Extraction and transformation of bioactive compounds obtained from biomass.
- Determination of endogenous and exogenous compounds in complex matrices (e.g., food and environmental ones, packaging, toys).
- Case studies considering integrated aspects of the Sustainable Food and related Systems framework.
- And any other very good idea that emerges…
Regarding our teaching and outreach activities, we encompass the key elements designed and applied at Leuphana, where the sense of contemporary education crosses the boundaries of a purely subject-specific course of study, combining specific knowledge with interdisciplinary skills, qualifying our students for constantly changing demands in the world in realistic and positive ways. In doing so, topics related to green and sustainable chemistry focusing on renewable compounds are presented and discussed in our lectures, seminars laboratory sessions, and supplemented by additional exercises.
Keywords
- Chemistry
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Research collaborations from the last five years
Profiles
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Adrián Fuente-Ballesteros
- Professorship of Sustainable Chemistry of Renewable Organic Resources - Research associate
Person: Academic staff
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Projects
- 1 Finished
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Dow Green Chemistry Education Award
Zuin Zeidler, V. (Project manager, academic)
25.04.25 → 31.12.25
Project: Individual grant
Research output
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Artificial Intelligence for Academic Text Generation in Analytical Chemistry: Current Risks, Indicators, and Perspectives toward Greener and More Sustainable Approaches
Fuente-Ballesteros, A. & Zuin Zeidler, V., 03.03.2026, In: Analytical Chemistry. 98, 8, p. 5854-5864 11 p.Research output: Journal contributions › Scientific review articles › Research
2 Citations (Scopus) -
Citizen analytical chemistry: building a participatory and shared science through global data generation
Fuente-Ballesteros, A., Samanidou, V. & Zuin Zeidler, V. G., 15.04.2026, In: RSC Sustainability. 4, 4, p. 1808-1821 14 p.Research output: Journal contributions › Scientific review articles › Research
Open Access1 Citation (Scopus) -
Development and validation of the knowledge of climate change subsystems instrument (KCCSI) for teachers
Krishnan, P., Karpudewan, M. & Zeidler, V. Z., 12.2026, In: Sustainable Chemistry for Climate Action. 9, 12 p., 100219.Research output: Journal contributions › Journal articles › Research › peer-review
Open Access
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Food Systems: Innovation and Resilience in a Changing World
Zuin Zeidler, V. (Speaker)
06.11.2025Activity: Talk or presentation › talk or presentation in privat or public events › Transfer
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Peter G. Mahaffy
Kümmerer, K. (Host) & Zuin Zeidler, V. (Host)
02.10.2023 → 30.11.2023Activity: Hosting a visitor › Hosting an academic visitor
Datasets
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Development and application of green and sustainable analytical methods for flavonoid extraction from Passiflora waste
Da Silva Francischini, D. (Contributor), Lopes, A. P. (Creator), Segatto, M. L. (Creator), Stahl, A. M. (Contributor) & Zuin, V. G. (Creator), figshare LLP, 2020
DOI: 10.6084/m9.figshare.c.5126861, https://springernature.figshare.com/collections/Development_and_application_of_green_and_sustainable_analytical_methods_for_flavonoid_extraction_from_Passiflora_waste/5126861
Dataset
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Development and application of green and sustainable analytical methods for flavonoid extraction from Passiflora waste
Da Silva Francischini, D. (Contributor), Lopes, A. P. (Creator), Segatto, M. L. (Creator), Stahl, A. M. (Contributor), Zuin, V. G. (Creator) & Francischini, D. D. S. (Creator), figshare LLP, 19.09.2020
DOI: 10.6084/m9.figshare.c.5126861, https://springernature.figshare.com/collections/Development_and_application_of_green_and_sustainable_analytical_methods_for_flavonoid_extraction_from_Passiflora_waste/5126861/1
Dataset