Sun, H.; Li, J.; Zhuang, L.; Zhang, Y.; Zhou, Z.; Sun, J.; Wang, D.; Ren, Y.; Xu, X.; He, J.;
et al. Ultrasonic Cavitation Transforms Organic Matter to Achieve Reduction of Excess Sludge and Recycling of Carbon Sources. Toxics 2025, 13, 941.
https://doi.org/10.3390/toxics13110941
AMA Style
Sun H, Li J, Zhuang L, Zhang Y, Zhou Z, Sun J, Wang D, Ren Y, Xu X, He J,
et al. Ultrasonic Cavitation Transforms Organic Matter to Achieve Reduction of Excess Sludge and Recycling of Carbon Sources. Toxics. 2025; 13(11):941.
https://doi.org/10.3390/toxics13110941
Chicago/Turabian Style
Sun, Haohao, Jie Li, Lu Zhuang, Yunian Zhang, Zhou Zhou, Jiayue Sun, Di Wang, Yanfang Ren, Xia Xu, Junyu He,
and et al. 2025. "Ultrasonic Cavitation Transforms Organic Matter to Achieve Reduction of Excess Sludge and Recycling of Carbon Sources" Toxics 13, no. 11: 941.
https://doi.org/10.3390/toxics13110941
APA Style
Sun, H., Li, J., Zhuang, L., Zhang, Y., Zhou, Z., Sun, J., Wang, D., Ren, Y., Xu, X., He, J., & Xue, Y.
(2025). Ultrasonic Cavitation Transforms Organic Matter to Achieve Reduction of Excess Sludge and Recycling of Carbon Sources. Toxics, 13(11), 941.
https://doi.org/10.3390/toxics13110941