Peng, Y.; Jiang, L.; Wu, J.; Yang, J.; Guo, Z.; Miao, M.; Peng, Z.; Chang, M.; Miao, B.; Liu, H.;
et al. Red Mud Potentially Alleviates Ammonia Nitrogen Inhibition in Swine Manure Anaerobic Digestion by Enhancing Phage-Mediated Ammonia Assimilation. Microorganisms 2025, 13, 690.
https://doi.org/10.3390/microorganisms13030690
AMA Style
Peng Y, Jiang L, Wu J, Yang J, Guo Z, Miao M, Peng Z, Chang M, Miao B, Liu H,
et al. Red Mud Potentially Alleviates Ammonia Nitrogen Inhibition in Swine Manure Anaerobic Digestion by Enhancing Phage-Mediated Ammonia Assimilation. Microorganisms. 2025; 13(3):690.
https://doi.org/10.3390/microorganisms13030690
Chicago/Turabian Style
Peng, Yulong, Luhua Jiang, Junzhao Wu, Jiejie Yang, Ziwen Guo, Manjun Miao, Zhiyuan Peng, Meng Chang, Bo Miao, Hongwei Liu,
and et al. 2025. "Red Mud Potentially Alleviates Ammonia Nitrogen Inhibition in Swine Manure Anaerobic Digestion by Enhancing Phage-Mediated Ammonia Assimilation" Microorganisms 13, no. 3: 690.
https://doi.org/10.3390/microorganisms13030690
APA Style
Peng, Y., Jiang, L., Wu, J., Yang, J., Guo, Z., Miao, M., Peng, Z., Chang, M., Miao, B., Liu, H., Liang, Y., Yin, H., He, Q., & Liu, X.
(2025). Red Mud Potentially Alleviates Ammonia Nitrogen Inhibition in Swine Manure Anaerobic Digestion by Enhancing Phage-Mediated Ammonia Assimilation. Microorganisms, 13(3), 690.
https://doi.org/10.3390/microorganisms13030690