Wang, E.; Yuan, N.; Lv, S.; Tang, X.; Wang, G.; Wu, L.; Zhou, Y.; Zhou, G.; Shi, Y.; Xu, L.
Biochar-Based Fertilizer Decreased Soil N2O Emission and Increased Soil CH4 Uptake in a Subtropical Typical Bamboo Plantation. Forests 2022, 13, 2181.
https://doi.org/10.3390/f13122181
AMA Style
Wang E, Yuan N, Lv S, Tang X, Wang G, Wu L, Zhou Y, Zhou G, Shi Y, Xu L.
Biochar-Based Fertilizer Decreased Soil N2O Emission and Increased Soil CH4 Uptake in a Subtropical Typical Bamboo Plantation. Forests. 2022; 13(12):2181.
https://doi.org/10.3390/f13122181
Chicago/Turabian Style
Wang, Enhui, Ning Yuan, Shaofeng Lv, Xiaoping Tang, Gang Wang, Linlin Wu, Yufeng Zhou, Guomo Zhou, Yongjun Shi, and Lin Xu.
2022. "Biochar-Based Fertilizer Decreased Soil N2O Emission and Increased Soil CH4 Uptake in a Subtropical Typical Bamboo Plantation" Forests 13, no. 12: 2181.
https://doi.org/10.3390/f13122181
APA Style
Wang, E., Yuan, N., Lv, S., Tang, X., Wang, G., Wu, L., Zhou, Y., Zhou, G., Shi, Y., & Xu, L.
(2022). Biochar-Based Fertilizer Decreased Soil N2O Emission and Increased Soil CH4 Uptake in a Subtropical Typical Bamboo Plantation. Forests, 13(12), 2181.
https://doi.org/10.3390/f13122181