Wade, A.J.; Skeffington, R.A.; Couture, R.-M.; Erlandsson Lampa, M.; Groot, S.; Halliday, S.J.; Harezlak, V.; Hejzlar, J.; Jackson-Blake, L.A.; Lepistö, A.;
et al. Land Use Change to Reduce Freshwater Nitrogen and Phosphorus will Be Effective Even with Projected Climate Change. Water 2022, 14, 829.
https://doi.org/10.3390/w14050829
AMA Style
Wade AJ, Skeffington RA, Couture R-M, Erlandsson Lampa M, Groot S, Halliday SJ, Harezlak V, Hejzlar J, Jackson-Blake LA, Lepistö A,
et al. Land Use Change to Reduce Freshwater Nitrogen and Phosphorus will Be Effective Even with Projected Climate Change. Water. 2022; 14(5):829.
https://doi.org/10.3390/w14050829
Chicago/Turabian Style
Wade, Andrew J., Richard A. Skeffington, Raoul-Marie Couture, Martin Erlandsson Lampa, Simon Groot, Sarah J. Halliday, Valesca Harezlak, Josef Hejzlar, Leah A. Jackson-Blake, Ahti Lepistö,
and et al. 2022. "Land Use Change to Reduce Freshwater Nitrogen and Phosphorus will Be Effective Even with Projected Climate Change" Water 14, no. 5: 829.
https://doi.org/10.3390/w14050829
APA Style
Wade, A. J., Skeffington, R. A., Couture, R.-M., Erlandsson Lampa, M., Groot, S., Halliday, S. J., Harezlak, V., Hejzlar, J., Jackson-Blake, L. A., Lepistö, A., Papastergiadou, E., Riera, J. L., Rankinen, K., Shahgedanova, M., Trolle, D., Whitehead, P. G., Psaltopoulos, D., & Skuras, D.
(2022). Land Use Change to Reduce Freshwater Nitrogen and Phosphorus will Be Effective Even with Projected Climate Change. Water, 14(5), 829.
https://doi.org/10.3390/w14050829