Jarecki, M.; Kariyapperuma, K.; Deen, B.; Graham, J.; Bazrgar, A.B.; Vijayakumar, S.; Thimmanagari, M.; Gordon, A.; Voroney, P.; Thevathasan, N.
The Potential of Switchgrass and Miscanthus to Enhance Soil Organic Carbon Sequestration—Predicted by DayCent Model. Land 2020, 9, 509.
https://doi.org/10.3390/land9120509
AMA Style
Jarecki M, Kariyapperuma K, Deen B, Graham J, Bazrgar AB, Vijayakumar S, Thimmanagari M, Gordon A, Voroney P, Thevathasan N.
The Potential of Switchgrass and Miscanthus to Enhance Soil Organic Carbon Sequestration—Predicted by DayCent Model. Land. 2020; 9(12):509.
https://doi.org/10.3390/land9120509
Chicago/Turabian Style
Jarecki, Marek, Kumudinie Kariyapperuma, Bill Deen, Jordan Graham, Amir Behzad Bazrgar, Sowthini Vijayakumar, Mahendra Thimmanagari, Andrew Gordon, Paul Voroney, and Naresh Thevathasan.
2020. "The Potential of Switchgrass and Miscanthus to Enhance Soil Organic Carbon Sequestration—Predicted by DayCent Model" Land 9, no. 12: 509.
https://doi.org/10.3390/land9120509
APA Style
Jarecki, M., Kariyapperuma, K., Deen, B., Graham, J., Bazrgar, A. B., Vijayakumar, S., Thimmanagari, M., Gordon, A., Voroney, P., & Thevathasan, N.
(2020). The Potential of Switchgrass and Miscanthus to Enhance Soil Organic Carbon Sequestration—Predicted by DayCent Model. Land, 9(12), 509.
https://doi.org/10.3390/land9120509