Liu, J.; Xu, H.; Dong, M.; Cheng, Z.; Mi, C.; Sun, S.; Zhu, R.; Han, P.
Adaptive Evolution of Sporosarcina pasteurii Enhances Saline–Alkali Resistance for High-Performance Concrete Crack Repair via MICP. Microorganisms 2025, 13, 1526.
https://doi.org/10.3390/microorganisms13071526
AMA Style
Liu J, Xu H, Dong M, Cheng Z, Mi C, Sun S, Zhu R, Han P.
Adaptive Evolution of Sporosarcina pasteurii Enhances Saline–Alkali Resistance for High-Performance Concrete Crack Repair via MICP. Microorganisms. 2025; 13(7):1526.
https://doi.org/10.3390/microorganisms13071526
Chicago/Turabian Style
Liu, Jieyu, Huaihua Xu, Min Dong, Zilin Cheng, Chenkai Mi, Shuai Sun, Ruiying Zhu, and Peipei Han.
2025. "Adaptive Evolution of Sporosarcina pasteurii Enhances Saline–Alkali Resistance for High-Performance Concrete Crack Repair via MICP" Microorganisms 13, no. 7: 1526.
https://doi.org/10.3390/microorganisms13071526
APA Style
Liu, J., Xu, H., Dong, M., Cheng, Z., Mi, C., Sun, S., Zhu, R., & Han, P.
(2025). Adaptive Evolution of Sporosarcina pasteurii Enhances Saline–Alkali Resistance for High-Performance Concrete Crack Repair via MICP. Microorganisms, 13(7), 1526.
https://doi.org/10.3390/microorganisms13071526