Pubblicazioni

Latitude, elevation, and mean annual temperature predict peat organic matter chemistry at a global scale.

Verbeke B. A., Lamit L. J., Lilleskov E. A., Hodgkins S. B., Basiliko N., Kane E. S., Andersen R., Artz R. R. E., Benavides J. C., Benscoter B. W., Borken W., Bragazza L., Brandt S. M., Bräuer S. L., Carson M. A., Charman D., Chen X., Clarkson B. R., Cobb A. R., Convey P., del Águila Pasquel J., Enriquez A. S., Griffiths H., Grover S. P., Harvey C. F., Harris L. I., Hazard C., Hodgson D., Hoyt A. M., Hribljan J., Jauhiainen J., Juutinen S., Knorr K.-H., Kolka R. K., Könönen M., Larmola T., McCalley C. K., McLaughlin J., Moore T. R., Mykytczuk N., Normand A. E., Rich V., Roulet N., Royles J., Rutherford J., Smith D. S., Svenning M. M., Tedersoo L., Thu P. Q., Trettin C. C., Tuittila E.-S., Urbanová Z., Varner R. K., Wang M., Warren M., Wiedermann M. M., Williams S., Yavitt J. B., Yu Z.-G., Yu Z., Chanton J. P.

Latitude, elevation, and mean annual temperature predict peat organic matter chemistry at a global scale.

Global Biogeochemical Cycles, 36, (2), 2022, 1-17.

ISSN Print: 0886-6236
ISSN Online: 1944-9224
Digital Object Identifier (DOI): https://doi.org/10.1029/2021GB007057
Publication-ID (Web Code): 49476 Sending by e-mail

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