Razzaq, S.; Zhou, B.; Zia-ur-Rehman, M.; Aamer Maqsood, M.; Hussain, S.; Bakhsh, G.; Zhang, Z.; Yang, Q.; Altaf, A.R.
Cadmium Stabilization and Redox Transformation Mechanism in Maize Using Nanoscale Zerovalent-Iron-Enriched Biochar in Cadmium-Contaminated Soil. Plants 2022, 11, 1074.
https://doi.org/10.3390/plants11081074
AMA Style
Razzaq S, Zhou B, Zia-ur-Rehman M, Aamer Maqsood M, Hussain S, Bakhsh G, Zhang Z, Yang Q, Altaf AR.
Cadmium Stabilization and Redox Transformation Mechanism in Maize Using Nanoscale Zerovalent-Iron-Enriched Biochar in Cadmium-Contaminated Soil. Plants. 2022; 11(8):1074.
https://doi.org/10.3390/plants11081074
Chicago/Turabian Style
Razzaq, Sehar, Beibei Zhou, Muhammad Zia-ur-Rehman, Muhammad Aamer Maqsood, Saddam Hussain, Ghous Bakhsh, Zhenshi Zhang, Qiang Yang, and Adnan Raza Altaf.
2022. "Cadmium Stabilization and Redox Transformation Mechanism in Maize Using Nanoscale Zerovalent-Iron-Enriched Biochar in Cadmium-Contaminated Soil" Plants 11, no. 8: 1074.
https://doi.org/10.3390/plants11081074
APA Style
Razzaq, S., Zhou, B., Zia-ur-Rehman, M., Aamer Maqsood, M., Hussain, S., Bakhsh, G., Zhang, Z., Yang, Q., & Altaf, A. R.
(2022). Cadmium Stabilization and Redox Transformation Mechanism in Maize Using Nanoscale Zerovalent-Iron-Enriched Biochar in Cadmium-Contaminated Soil. Plants, 11(8), 1074.
https://doi.org/10.3390/plants11081074