He, T.; Lei, J.; Peng, Y.; Wang, R.; Chen, X.; Liu, Z.; Gao, X.; Dang, P.; Yan, W.
Thinning Intensity Enhances Soil Multifunctionality and Microbial Residue Contributions to Organic Carbon Sequestration in Chinese Fir Plantations. Plants 2025, 14, 579.
https://doi.org/10.3390/plants14040579
AMA Style
He T, Lei J, Peng Y, Wang R, Chen X, Liu Z, Gao X, Dang P, Yan W.
Thinning Intensity Enhances Soil Multifunctionality and Microbial Residue Contributions to Organic Carbon Sequestration in Chinese Fir Plantations. Plants. 2025; 14(4):579.
https://doi.org/10.3390/plants14040579
Chicago/Turabian Style
He, Ting, Junjie Lei, Yuanying Peng, Ruihui Wang, Xiaoyong Chen, Zongxin Liu, Xiaoqian Gao, Peng Dang, and Wende Yan.
2025. "Thinning Intensity Enhances Soil Multifunctionality and Microbial Residue Contributions to Organic Carbon Sequestration in Chinese Fir Plantations" Plants 14, no. 4: 579.
https://doi.org/10.3390/plants14040579
APA Style
He, T., Lei, J., Peng, Y., Wang, R., Chen, X., Liu, Z., Gao, X., Dang, P., & Yan, W.
(2025). Thinning Intensity Enhances Soil Multifunctionality and Microbial Residue Contributions to Organic Carbon Sequestration in Chinese Fir Plantations. Plants, 14(4), 579.
https://doi.org/10.3390/plants14040579