Hier finden Sie alle Publikationen von ATB-Mitarbeiter*innen, die wir seit 2004 in unseren Datenbank erfasst haben. Ein Teil dieser Publikationen ist offen zugänglich (open access).
Die Farbcodierung zeigt die Zuordnung der Publikation zu einem oder mehreren ATB-Programbereichen.
Publikationen suchen
Publikationen
- Wang, Y.; Mandø, M.; Pecenka, R.; Yin, C. (2026): Modelling of self-heating in open-air woodchip storage piles: an ambient humidity-sensitive approach to predict moisture migration and temperature dynamics. Energy Conversion and Management. (1 March 2026): p. 121034. Online: https://doi.org/10.1016/j.enconman.2026.121034 1.0
- Hoffmann, T.; Sonawane, A.; Jedermann, R.; Praeger, U.; Büchele, F.; Neuwald, D.; Sturm, B.; Mahajan, P. (2026): Heat and mass transfer dynamics during loading in industrial-scale controlled atmosphere storage of apples. In: Torres, C.(eds.): XIV International Controlled and Modified Atmosphere Research Conference. XIV International Controlled and Modified Atmosphere Research Conference (CAMA2025). Wenatchee, USA, (2406-6168; 978-94-62614-56-7), p. 103-110. Online: https://doi.org/10.17660/ActaHortic.2026.1456.13 1.0
- Schulz-Nielsen, L.; Burmeister, J.; Fiege, C.; Richter, R.; Pecenka, R. (2026): Management Effects on Biomass Partitioning in Fast-Growing Poplar in Brandenburg. Forests. (3): p. 395. Online: https://doi.org/10.3390/f17030395 1.0
- Sarlaki, E.; Ghafarian Nia, S.; Hu, S.; Marzban, N.; Ischia, G.; Jia, M.; Rezaei, M.; Ahmadi, M.; Mohammad Javaheri, P.; Malekian, A.; Tabatabaei, M.; Aghbashlo, M. (2026): Progress and challenges in thermochemical technologies for biomass humification: A comprehensive review. Renewable & Sustainable Energy Reviews. (May 2026): p. 116775. Online: https://doi.org/10.1016/j.rser.2026.116775 1.0
- Sonawane, A.; Hoffmann, T.; Jedermann, R.; Linke, M.; Mahajan, P. (2026): Uncertainty analysis and validation of an IoT-based condensation model for apples in the storage bin. In: Torres, C.(eds.): XIV International Controlled and Modified Atmosphere Research Conference. XIV International Controlled and Modified Atmosphere Research Conference (CAMA2025). Wenatchee, USA, (2406-6168; 978-94-62614-56-7), p. 111-118. Online: https://doi.org/10.17660/ActaHortic.2026.1456.14 1.0
- Marzban, N.; Sarlaki, E. (2026): Can hydrothermal biomass processing serve as an analogue of millennia-scale natural carbon maturation? A unified perspective on carbonisation, humification, and fulvification. Planetary Sustainability. (1): p. 22-47. Online: https://journal.umt.edu.my/index.php/planetsust/article/view/880 1.0
- Kalnar, Y.; Jalali, A.; Weltzien, C.; Mahajan, P. (2026): Minimal-data respiration modelling combined with CO2 removal for dual-gas control in modified-atmosphere storage. In: Torres, C.(eds.): XIV International Controlled and Modified Atmosphere Research Conference. XIV International Controlled and Modified Atmosphere Research Conference (CAMA2025). Wenatchee, USA, (2406-6168; 978-94-62614-56-7), p. 251-260. Online: https://doi.org/10.17660/ActaHortic.2026.1456.33 1.0
- Shafizadeh, A.; Khounani, Z.; Shahbeik, H.; Mohammad Javaheri, P.; Sajadi, S.; Golvirdizadeh, M.; Tajuddin, S.; Marzban, N.; Abdul Razak, N.; Tabatabaei, M.; Aghbashlo, M. (2026): Leveraging machine learning for sustainable biochar and hydrochar production: Advances, challenges, and perspectives in thermochemical processes. Renewable & Sustainable Energy Reviews. (May 2026): p. 116819. Online: https://doi.org/10.1016/j.rser.2026.116819 1.0
- Mahajan, P.; Sonawane, A.; Hoffmann, T.; Kalnar, Y.; Jedermann, R. (2026): Sensors and modelling applied to fresh produce packaging and storage. In: Torres, C.(eds.): XIV International Controlled and Modified Atmosphere Research Conference. XIV International Controlled and Modified Atmosphere Research Conference (CAMA2025). Wenatchee, USA, (2406-6168; 978-94-62614-56-7), p. 261-268. Online: https://doi.org/10.17660/ActaHortic.2026.1456.34 1.0
- Ghobadian, S.; Ischia, G.; Romero Romero, O.; Rossi, G.; Hoffmann, T.; Kraume, M.; Marzban, N. (2026): Hydrothermal Humification and Fulvification of Grass for Artificial Humic Substance Production and By-product Applications. Environmental Technology & Innovation. (March 2026): p. 104836. Online: https://doi.org/10.1016/j.eti.2026.104836 1.0