Yao, S.; Zhou, B.; Duan, M.; Cao, T.; Wen, Z.; Chen, X.; Wang, H.; Wang, M.; Cheng, W.; Zhu, H.;
et al. Combination of Biochar and Trichoderma harzianum Can Improve the Phytoremediation Efficiency of Brassica juncea and the Rhizosphere Micro-Ecology in Cadmium and Arsenic Contaminated Soil. Plants 2023, 12, 2939.
https://doi.org/10.3390/plants12162939
AMA Style
Yao S, Zhou B, Duan M, Cao T, Wen Z, Chen X, Wang H, Wang M, Cheng W, Zhu H,
et al. Combination of Biochar and Trichoderma harzianum Can Improve the Phytoremediation Efficiency of Brassica juncea and the Rhizosphere Micro-Ecology in Cadmium and Arsenic Contaminated Soil. Plants. 2023; 12(16):2939.
https://doi.org/10.3390/plants12162939
Chicago/Turabian Style
Yao, Shaoxiong, Beibei Zhou, Manli Duan, Tao Cao, Zhaoquan Wen, Xiaopeng Chen, Hui Wang, Min Wang, Wen Cheng, Hongyan Zhu,
and et al. 2023. "Combination of Biochar and Trichoderma harzianum Can Improve the Phytoremediation Efficiency of Brassica juncea and the Rhizosphere Micro-Ecology in Cadmium and Arsenic Contaminated Soil" Plants 12, no. 16: 2939.
https://doi.org/10.3390/plants12162939
APA Style
Yao, S., Zhou, B., Duan, M., Cao, T., Wen, Z., Chen, X., Wang, H., Wang, M., Cheng, W., Zhu, H., Yang, Q., & Li, Y.
(2023). Combination of Biochar and Trichoderma harzianum Can Improve the Phytoremediation Efficiency of Brassica juncea and the Rhizosphere Micro-Ecology in Cadmium and Arsenic Contaminated Soil. Plants, 12(16), 2939.
https://doi.org/10.3390/plants12162939