Kivalov, S.; Lopes de Gerenyu, V.; Khoroshaev, D.; Myakshina, T.; Sapronov, D.; Ivashchenko, K.; Kurganova, I.
Soil Temperature, Organic-Carbon Storage, and Water-Holding Ability Should Be Accounted for the Empirical Soil Respiration Model Selection in Two Forest Ecosystems. Forests 2023, 14, 1568.
https://doi.org/10.3390/f14081568
AMA Style
Kivalov S, Lopes de Gerenyu V, Khoroshaev D, Myakshina T, Sapronov D, Ivashchenko K, Kurganova I.
Soil Temperature, Organic-Carbon Storage, and Water-Holding Ability Should Be Accounted for the Empirical Soil Respiration Model Selection in Two Forest Ecosystems. Forests. 2023; 14(8):1568.
https://doi.org/10.3390/f14081568
Chicago/Turabian Style
Kivalov, Sergey, Valentin Lopes de Gerenyu, Dmitry Khoroshaev, Tatiana Myakshina, Dmitry Sapronov, Kristina Ivashchenko, and Irina Kurganova.
2023. "Soil Temperature, Organic-Carbon Storage, and Water-Holding Ability Should Be Accounted for the Empirical Soil Respiration Model Selection in Two Forest Ecosystems" Forests 14, no. 8: 1568.
https://doi.org/10.3390/f14081568
APA Style
Kivalov, S., Lopes de Gerenyu, V., Khoroshaev, D., Myakshina, T., Sapronov, D., Ivashchenko, K., & Kurganova, I.
(2023). Soil Temperature, Organic-Carbon Storage, and Water-Holding Ability Should Be Accounted for the Empirical Soil Respiration Model Selection in Two Forest Ecosystems. Forests, 14(8), 1568.
https://doi.org/10.3390/f14081568