Aarhus Universitets segl

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Jucherski, A., Walczowski, A., Bugajski, P., Jóźwiakowski, K., Rodziewicz, J., Janczukowicz, W., Wu, S., Kasprzyk, M., Gajewska, M. & Mielcarek, A. (2022). Long-term operating conditions for different sorption materials to capture phosphate from domestic wastewater. Sustainable Materials and Technologies, 31, Artikel e00385. https://doi.org/10.1016/j.susmat.2021.e00385
Estévez, V., Beucher, A. M., Mattbäck, S., Boman, A., Auri, J., Björk, K.-M. & Österholm, P. (2022). Machine learning techniques for acid sulfate soil mapping in southeastern Finland. Geoderma, 406, Artikel 115446. https://doi.org/10.1016/j.geoderma.2021.115446
Børgesen, C. D., (2022). Månedsfordeling af modelberegnet nitratudvaskning for dyrkningsåret 2017 med klimadata fra 1990-2010, Nr. 2022-0373731, 11 s., nov. 01, 2022. Rådgivningsnotat fra DCA - Nationalt Center for Fødevarer og Jordbrug
Zhu, X., Chen, J., Huang, S., Li, W., Penuelas, J., Chen, J., Zhou, F., Zhang, W., Li, G., Liu, Z., Ding, Y., Wang, S., van Groenigen, K. J. & Jiang, Y. (2022). Manure amendment can reduce rice yield loss under extreme temperatures. Communications Earth & Environment, 3, Artikel 147. https://doi.org/10.1038/s43247-022-00481-y
Wang, P., Wang, X., Nie, J., Wang, Y., Zang, H., Peixoto, L., Yang, Y. & Zeng, Z. (2022). Manure Application Increases Soil Bacterial and Fungal Network Complexity and Alters Keystone Taxa. Journal of Soil Science and Plant Nutrition, 22(1), 607-618. https://doi.org/10.1007/s42729-021-00673-z