Qiao, Y.; Huang, X.; Chen, S.; Zhang, Z.; Xu, Y.; Zhang, X.; Jia, R.; Zhang, S.; Lin, W.; Jiao, X.;
et al. Immobilized Sinirhodobacter sp. 1C5-22 for Multi-Metal Bioremediation: Molecular Resistance Mechanisms and Operational Validation in Industrial Wastewater Systems. Water 2025, 17, 3450.
https://doi.org/10.3390/w17243450
AMA Style
Qiao Y, Huang X, Chen S, Zhang Z, Xu Y, Zhang X, Jia R, Zhang S, Lin W, Jiao X,
et al. Immobilized Sinirhodobacter sp. 1C5-22 for Multi-Metal Bioremediation: Molecular Resistance Mechanisms and Operational Validation in Industrial Wastewater Systems. Water. 2025; 17(24):3450.
https://doi.org/10.3390/w17243450
Chicago/Turabian Style
Qiao, Yue, Xiaojun Huang, Si Chen, Zuye Zhang, Ying Xu, Xiaorui Zhang, Runmei Jia, Song Zhang, Wenting Lin, Xian Jiao,
and et al. 2025. "Immobilized Sinirhodobacter sp. 1C5-22 for Multi-Metal Bioremediation: Molecular Resistance Mechanisms and Operational Validation in Industrial Wastewater Systems" Water 17, no. 24: 3450.
https://doi.org/10.3390/w17243450
APA Style
Qiao, Y., Huang, X., Chen, S., Zhang, Z., Xu, Y., Zhang, X., Jia, R., Zhang, S., Lin, W., Jiao, X., Chen, H., Guo, Z., Ye, X., Wu, Z., & Lin, Z.
(2025). Immobilized Sinirhodobacter sp. 1C5-22 for Multi-Metal Bioremediation: Molecular Resistance Mechanisms and Operational Validation in Industrial Wastewater Systems. Water, 17(24), 3450.
https://doi.org/10.3390/w17243450