Vitali, R.; Chadburn, S.E.; Keuper, F.; Harper, A.B.; Burke, E.J.
Simulating Increased Permafrost Peatland Plant Productivity in Response to Belowground Fertilisation Using the JULES Land Surface Model. Nitrogen 2022, 3, 260-283.
https://doi.org/10.3390/nitrogen3020018
AMA Style
Vitali R, Chadburn SE, Keuper F, Harper AB, Burke EJ.
Simulating Increased Permafrost Peatland Plant Productivity in Response to Belowground Fertilisation Using the JULES Land Surface Model. Nitrogen. 2022; 3(2):260-283.
https://doi.org/10.3390/nitrogen3020018
Chicago/Turabian Style
Vitali, Rayanne, Sarah E. Chadburn, Frida Keuper, Anna B. Harper, and Eleanor J. Burke.
2022. "Simulating Increased Permafrost Peatland Plant Productivity in Response to Belowground Fertilisation Using the JULES Land Surface Model" Nitrogen 3, no. 2: 260-283.
https://doi.org/10.3390/nitrogen3020018
APA Style
Vitali, R., Chadburn, S. E., Keuper, F., Harper, A. B., & Burke, E. J.
(2022). Simulating Increased Permafrost Peatland Plant Productivity in Response to Belowground Fertilisation Using the JULES Land Surface Model. Nitrogen, 3(2), 260-283.
https://doi.org/10.3390/nitrogen3020018