Expertises
Agricultural and Biological Sciences
- Water Footprint
- Life Cycle Engineering
- Crop Production
- Irrigation System
- Water Scarcity
Earth and Planetary Sciences
- Water Use
- Life Cycle Assessment
- Freshwater
Organisaties
Publicaties
2026
Harnessing model ensembles to assess uncertainty and provide prospective characterization factors for AWARE2.0 (2026)International journal of life cycle assessment, 31(6). Article 98. Seitfudem, G., Berger, M. & Boulay, A.-M.https://doi.org/10.1007/s11367-026-02648-7The N(itrogen)- and P(hosphorus)-Related Grey Water Footprints of Domestic and Industrial Water Use: A Global Analysis from 1990 to 2019 (2026)Water, 18(12). Article 1425. Tulp, B. J. H., Wöhler, L. & Berger, M.https://doi.org/10.3390/w18121425
2025
Prioritizing water values for decision-making in transboundary river allocation: A case study of the syr darya river basin (2025)Journal of environmental management, 393. Article 126944. Poplawsky, M., den Haan, R.-J., Hogeboom, R., Wöhler, L. & Berger, M.https://doi.org/10.1016/j.jenvman.2025.126944Evaluating the sustainability of wheat irrigation systems: Using life cycle assessment to monitor the Water-Energy-Food-Environment Nexus (2025)Agricultural water management, 315, 109521. Article 109521. Batoukhteh, F., Darzi-Naftchali, A., Motevali, A., Karandish, F. & Berger, M.https://doi.org/10.1016/j.agwat.2025.109521The updated and improved method for water scarcity impact assessment in LCA, AWARE2.0 (2025)Journal of industrial ecology, 29(3), 891-907. Seitfudem, G., Berger, M., Müller Schmied, H. & Boulay, A.https://doi.org/10.1111/jiec.70023Data and all materials for the serious game: Together We Flow: Shared Values in Transboundary River Basin Allocation (2025)[Dataset Types › Dataset]. 4TU.Centre for Research Data. Poplawsky, M., den Haan, R.-J., Hogeboom, R. J., Wöhler, L. & Berger, M.https://doi.org/10.4121/dc66c42b-c8b1-4b3f-88c0-470e46d35a72Complementary strengths of water footprint and life cycle assessments in analyzing global freshwater appropriation and its local impacts – Recommendations from an Interdisciplinary discussion series (2025)Ecological indicators, 174. Article 113458. Berger, M., Gerbens-Leenes, W., Karandish, F., Aldaya, M. M., Boulay, A. M., Hogeboom, R. J., Link, A., Manzardo, A., Mialyk, O., Motoshita, M., Nuñez, M., Pfister, S., Rosenbaum, R. K., Scherer, L., Su, H. & Wöhler, L.https://doi.org/10.1016/j.ecolind.2025.113458Does international trade help us deal with water scarcity problems? (2025)[Contribution to conference › Abstract] EGU General Assembly 2025. Su, H., Mialyk, O., J. Hogeboom, R. & Berger, M.https://doi.org/10.5194/egusphere-egu25-5651Enhancing food security while reducing environmental impacts: Life cycle assessment of cultivation-irrigation systems and yield gap closure in paddy fields (2025)Heliyon, 11(2). Article e42028. Darzi-Naftchali, A., Berger, M., Batoukhteh, F. & Motevali, A.https://doi.org/10.1016/j.heliyon.2025.e42028
2024
Evolution of global water footprints of crop production in 1990–2019 (2024)Environmental research letters, 19(11). Article 114015. Mialyk, O., Booij, M. J., Schyns, J. F. & Berger, M.https://doi.org/10.1088/1748-9326/ad78e9Spatial and temporal patterns of global crop water footprints (2024)[Thesis › PhD Thesis - Research UT, graduation UT]. University of Twente. Mialyk, O.https://doi.org/10.3990/1.9789036562058Dissipation-based life cycle impact assessment of mineral resource use—a review, case study, and implications for the product environmental footprint (2024)International journal of life cycle assessment, 29(7), 1177-1189. Berger, M.https://doi.org/10.1007/s11367-024-02318-6A Streamlined Model for Assessing Global Industrial Water Footprint with Minimal Input Requirements (2024)[Working paper › Preprint] (Submitted). Karandish, F. & Berger, M.https://doi.org/10.5194/egusphere-egu24-19357Increasing water footprints of flex crops (2024)[Contribution to conference › Abstract] EGU General Assembly 2024. Mialyk, O., Berger, M. & Booij, M. J.https://doi.org/10.5194/egusphere-egu24-1342Water footprints and crop water use of 175 individual crops for 1990–2019 simulated with a global crop model (2024)Scientific Data, 11. Article 206. Mialyk, O., Schyns, J. F., Booij, M. J., Su, H., Hogeboom, R. J. & Berger, M.https://doi.org/10.1038/s41597-024-03051-3
Onderzoeksprofielen
Vakken collegejaar 2026/2027
Vakken in het huidig collegejaar worden toegevoegd op het moment dat zij definitief zijn in het Osiris systeem. Daarom kan het zijn dat de lijst nog niet compleet is voor het gehele collegejaar.
Vakken collegejaar 2025/2026
Vakken collegejaar 2024/2025
Adres

Universiteit Twente
Horst Complex (gebouwnr. 20), kamer W208
De Horst 2
7522 LW Enschede

Universiteit Twente
Horst Complex (gebouwnr. 20), kamer W218
De Horst 2
7522 LW Enschede
Universiteit Twente
Horst Complex W208
Postbus 217
7500 AE Enschede